Fluid properties and phase equilibria calculation using STARS library
STARS [2] calculates the required thermophysical properties of individual substances, oil fractions, and their mixtures in liquid and gas phases with or without considering the phase equilibrium. The methodology and database are catered to petrochemical and petroleum refining substances. The program’s database contains 1606 fluid components. The component categories included in the database are listed in table below:
Component categories
Fluid component category |
Category designation |
Number of components in the category |
|
Saturated hydrocarbons - alkanes (paraffins) |
C1 |
180 |
|
Unsaturated hydrocarbons - alkenes (olefins) |
C2 |
149 |
|
Diene hydrocarbons |
C3 |
41 |
|
Hydrocarbons of the acetylene series (alkynes) |
C4 |
50 |
|
Alcohols |
C5 |
136 |
|
Simple ethers |
C6 |
27 |
|
Thioalcohols |
C7 |
25 |
|
Thioethers |
C8 |
23 |
|
Disulfides |
C9 |
2 |
|
Aldehydes |
C10 |
23 |
|
Ketones |
C11 |
17 |
|
Carboxylic acids |
C12 |
14 |
|
Complex ethers of carboxylic acids (esters) |
C13 |
40 |
|
Amines |
C14 |
41 |
|
Naphthenes (cycloalkanes) |
C15 |
92 |
|
Unsaturated alicyclic hydrocarbons (cycloalkenes) |
C16 |
22 |
|
Aromatic hydrocarbons |
C17 |
99 |
|
Unsaturated aromatic hydrocarbons |
C18 |
7 |
|
Phenols |
C19 |
13 |
|
Polynuclear aromatic hydrocarbons with condensed nuclei |
C20 |
23 |
|
Polynuclear aromatic hydrocarbons with uncondensed nuclei |
C21 |
4 |
|
Heterocyclic aromatic compounds |
C22 |
21 |
|
Halogens of hydrocarbons |
saturated unsaturated cyclic aromatic |
C23 C24 C25 C26 |
121 79 21 11 |
Cyclic ethers |
C27 |
7 |
|
Nitriles |
C28 |
18 |
|
Organic nitro compounds |
C29 |
16 |
|
Organic compounds with different functional groups |
C30 |
89 |
|
Polyols |
C31 |
2 |
|
Petroleum |
C98 |
164 |
|
Inorganic compounds |
C99 |
29 |
|
The methodologies forming the foundation of STARS software were designed and recommended for use in automated design system of the Thermodynamic Center (TDC) of the Russian research and structural design institute of the oil and gas industry (VNDIPKnaftokhim) [3-5].
Density, enthalpy, isobaric and isochoric (for gases) heat capacity of liquid and gaseous phases of individual substances and their mixtures, as well as mixtures with oil fractions, are calculated according to a TDC modified Hirschfelder’s method [1] given temperatures between Tf = 0.5 – 10 and pressure Pf up to 25 MPa with an average error of 2 – 3% for individual substances and 3 – 4% for mixtures. For polar substances and in the critical region nominally limited to Tf = 0.95 – 1.15 and Pf = 0.95 – 2.0, average error can reach 5% and higher. A pseudocritical hypothesis is used as the foundation for mixture analysis, i.e. pseudocritical constants of mixture are calculated according to the Joffe-Stewart, Burkhardt,Voo rule [1], after which the mixture is considered a separate substance with these constants. Liquid density of individual substances at critical point is calculated according to a modified Rackett equation [5] within a temperature range from critical to triple point. The average error is up to 1%. Vapor density of individual substances at cricital point is calculated according to [5] within the same temperature range. The average error is no greater than 2% for both polar and nonpolar subtances.
Oil fraction properties are calculated according to [3]. For the most part, the analysis is performed according to methodologies developed by the American Petroleum Institute (API) [6], tested on USSR oils and recommended by TDC with some modifications. The density of liquid oil fractions [6] is calculated given a temperature range of 100° to 400° C, pressure range of 1 to 700 ata and relative density from 0.6 to 1.0. The average error is ±2.5%. The density of oil fraction vapors is calculated according to Hirschfelder’s equation [1] given a temperature range of -20° to 650° C, pressure range of 0 to 700 ata and relative density from 0.65 to 1.05. The average error is up to 4%. The enthalpy of liquid and vaporous oil fractions is calculated according to [6] given a temperature range of -200° to 650° C, pressure range of 1 to 700 ata and relative density from 0.65 to 1.05. Enthalpy is calculated relative to the saturated liquid given a temperature of -129° C with an average error for of 3% for liquid and 5% for gas. Liquid enthalpy does not depend on pressure. The isobaric heat capacity of liquid oil fractions is calculated according to [6] given a temperature range of -15° to 650° C, pressure of 15 ata and relative density from 0.73 to 1.0. The average error is 4%. The isobaric heat capacity of oil fraction vapors is calculated according to [6] given a temperature range of -15° to 650° C and pressure of up to 4 ata. The average error is ±7%. The maximum error of up to 20% can occur in the oil fraction vapor analysis when aromatic hydrocarbons and olefins are predominant in the composition and the temperature is higher than 500° C. Surface tension coefficient for liquid oil fractions is calculated according to [6].
The Engler distillation (GOST 2177-66) is adjusted for the TBP distillation (GOST 11011-64) using original equations, obtained through an adjustment of Edmister’s graph [6, 8]
The properties of the liquid water phase are calculated according to Ya. Yuz’s equations [7] given a temperature range of 0° – 650° C and pressure up to 400 ata. The analysis accuracy is at the level of standard water property tables. Steam properties are calculated using general methodologies [3-5]. The density of liquid and vapor water phases, as well as pressure and temperature of saturated vapors, at critical point is calculated according to [7] with the accuracy of standard tables. The pressure and temperature of saturated vapors for individual substances are calculated according to a modified Zia-Thodos method [5] with an average error of 2%.
The dynamic viscosity coefficient of the liquid phase of individual substances and their mixtures is calculated according to Stiel’s method using the acentricity factor [4-5] given a temperature range of 0.45*Tpcr (pcr – pseudocritical) and pressure up to 16*Ppcr with an average error of 8% and maximum error of 30% (for the mixture of nonpolar substances). The error grows when polar substances are present. The dynamic viscosity coefficient of the gas phase of individual substances and their mixtures is calculated according to the Dean-Stiel methodology [3] given temperature of up to 1000° C and pressure where the reduced density does not exceed 2.6 with an average error of 5% and maximum error of 20%.
The surface tension coefficient of the liquid phase of individual substances and their mixtures is calculated according to Hakim’s method [9].
Kinematic and dynamic viscosity of oil fraction liquid phase is determined by methods described in [10]. Average error in calculating fractions with volume-average boiling temperature up to 500°C at pressure 1.5 MPa, temperature up to 400 °C and molecular weight up to 455 kg/mol is less than 10%, maximum error is 25%.
The dynamic viscosity coefficient of oil fraction vapors is calculated according to [3, 6] given a temperature range of -50° to 500° C, pressure lower than 0.6*Ppcr and molecular mass from 16 to 200 with an average error of 6% and maximum error of 22%.
The dynamic viscosity coefficient of water and water vapor is calculated according to equations given in [7] with the accuracy of standard tables.
The thermal conductivity coefficient of the liquid phase of individual substances and their mixtures is calculated according to [3-5]. For low pressures, P < 35 ata, the analysis is done according to the Robbins-Kingrea method. For high pressures, P > 35 ata, a correction using the Lenoir method is entered. The pseudocritical hypothesis is used for mixtures in both cases. The temperature range is 0.4 < tf < 1.0. The average error is 4% and maximum error is 20%.
The thermal conductivity coefficient of the gas phase of individual substances and their mixtures is calculated according to [3-5]. For low pressure, P < 3.0 ata, the analysis is performed based on Wassiljewa’s equation and Lindsay and Bromley’s correction. For high pressure, P > 3.0 ata, a correction based on the Stiel-Thodes method is entered. The pseudocritical hypothesis is used for mixtures in both cases. The analysis is possible for the temperature range corresponding to the gas phase under current pressure. The average error is 8% and maximum error is 20%. For polar molecules, the average error is 13% and maximum error is 30%.
The thermal conductivity coefficient of hydrogen gas is calculated according to separate methodology [3] given a temperature range of -190° to 300° C and pressure up to 600 ata, with an average error of 6%.
The thermal conductivity coefficient for the liquid phase of oil fractions is calculated using Vyrodov, Magomadov and Demichev vormula [10]. Average calculation error is 5%, maximum error is 46%.
The thermal conductivity coefficient for oil fraction vapors is calculated given a temperature range of 0° to 550°C under pressure of up to 3.5 ata according to [3, 6].
Density, heat capacity, heat conductivity and kinematic viscocity of mazuts are calculated by [11] as functions of temperature at fixed pressure of P=1 ata.
The phase of the fluid can be checked at each stage of the thermal analysis. Phase equilibrium can be calculated according to ideal and non-ideal models. The ideal model does not consider the mutual influence of components when determining the constants of the phase equilibrium. The non-ideal model considers mutual influence when determining the constants of the phase equilibrium. The ideal model is intended for analyzing oil fractions, oil fraction mixtures with hydrocarbons, as well as hydrocarbon mixtures with close boiling temperatures. The mixture can contain water. Table below lists the methodologies of the ideal model and their limitations:
Methodologies used for analyzing the phase equilibrium using the ideal model
Methodology |
Mixture content |
Limitations for |
||
content |
temperature, ° C |
pressure, ata |
||
Maxwell |
Oil fractions with a boiling temperature of up to 800° C, heavy hydrocarbons. Water can be present. |
Heavy hydro-carbons and oil fractions |
0 - 700 |
1 - 20 |
Maxwell-Bonnell |
Heavy hydrocarbons and oil fractions with a boiling temperature of 150° – 980° C. Water can be present. |
Heavy hydro-carbons and oil fractions |
0 - 560 |
0,01 - 1,0 |
Ashworth |
Oil fractions with a boiling temperature of up to 800° C and saturated and unsaturated hydrocarbons with a low boiling point. |
Oil fractions, saturated and unsaturated hydrocarbons with a low boiling point |
0 - 700 |
1 - 3,5 |
Methodologies used for analyzing the phase equilibrium using the non-ideal model
Methodology |
Mixture content |
Limitations for |
||
content |
temperature, ° C |
pressure, ata |
||
Chao-Seader |
Substances belonging to C1, C2, C3, C4, C15, C16, C17, C18, C20, C21 categories (table 2), oil fractions, as well as inorganic compounds: H2, CO2, CO, N2, NH3, SO2, H2S |
Mole fraction in liquid phase: H2, less than 10%, CH4, less than 70%. Water cannot be present. |
-120 - 100 |
1 - 100 |
Greyson-Streed |
Substances belonging to C1, C2, C3, C4, C15, C16, C17, C18, C20, C21 categories (table 2), oil fractions, as well as inorganic compounds: H2, CO2, CO, N2, NH3, SO2, H2S |
Mole fraction of liquid phase: H2, less than 90%, non-hydrocarbon gases, less than 2%. Water cannot be present. |
100 - 500 |
1 - 150 |
References
1. Reed R., Prausnitz J., Sherwood T. The properties of gases and liquids. L., Chemistry, 1982, 591 p.
2. STARS Program. User Manual. NTP «Truboprovod», Moscow, 2010.
3. Methods and algorithms for Computer Calculation of Thermophysical Properties for Pure Substances, Their Mixtures and Petroleum Fluids. VNDIPKnaftokhim, Kiev, 1978, (in Russian, restricted usage).
4. Thermodymanic Properties Calculation Methods Library, Parts I and III, VNDIPKnaftokhim, Kiev, 1979, (in Russian, restricted usage).
5. Report by VNDIPKnaftokhim, Book III, Kiev, 1985, (in Russian, restricted usage).
6. Technical Data Book - Petroleum Refining, 2nd Edition. Washington, API, 1970.
7. Yuz, Ya., Equations of Thermodynamic Properties of Water and Steam for Computing Machines. Teploeneryetika 1, 8, 1967. (in Russian).
8. Abrosimov V.F. In the collection “Thermophysical properties of hydrocarbons, their mixtures, oils and oil fractions”, issue 1, 1973
9. D.I. Hakim, D. Steinberg, L.I. Stiel, Industrial & Engineering Chemistry Fundamentals, 1971, Vol.10, pp. 174-175.
10. Grigoriev B.A., Bogatov G.F., Gerasimov A.A. Thermophysical Properties of Oils, Petroleum Products, Gas Condensates and Their Fractions (in Russian). MPEI Publisher, Moscow, 1999, 372 pp.
11. Nazmeev Y.G. Heat transfer and Hydrodynamics in the Systems of Liquid Organic Fuel and Petroleum Product Storage (in Russian). MPEI Publisher, Moscow, 2005.
The list of substances and media available in the STARS library is given below:
Code |
Name |
1 |
METHANE |
2 |
ETHANE |
3 |
PROPANE |
4 |
BUTHANE |
5 |
2- METHYLPROPANE (ISOBUTANE) |
6 |
PENTANE |
7 |
2- METHYLBUTANE (ISOPENTANE) |
8 |
2,2- DIMETHYLPROPANE (NEOPENTAN) |
9 |
HEXANE |
10 |
2- METHYLPENTANE(ISOHEXANE) |
11 |
3- METHYLPENTANE |
12 |
2,2- DIMETHYLBUTANE |
13 |
2,3- DIMETHYLBUTANE |
14 |
HEPTANE |
15 |
2- METHYLHEXANE |
16 |
3- METHYLHEXANE |
17 |
3- ETHYLPENTANE |
18 |
2,2- DIMETHYLPENTANE |
19 |
2,3- DIMETHYLPENTANE |
20 |
2,4- DIMETHYLPENTANE |
21 |
3,3- DIMETHYLPENTANE |
22 |
2,2,3- TRIMETHYLBUTANE |
23 |
OCTANE |
24 |
2- METHYLHEPTANE |
25 |
3- METHYLHEPTANE |
26 |
4- METHYLHEPTANE |
27 |
3- ETHYLHEXANE |
28 |
2,2- DIMETHYLHEXANE |
29 |
2,3- DIMETHYLHEXANE |
30 |
2,4- DIMETHYLHEXANE |
31 |
2,5- DIMETHYLHEXANE |
32 |
3,3- DIMETНYLHEXANE |
33 |
3,4- DIMETHYLHEXANE |
34 |
2- METHYL-3-ETHYLPENTANE |
35 |
3- METHYL-3-ETHYLPENTANE |
36 |
2,2,3- TRIMETHYLPENTANE |
37 |
2,2,4- TRIMETHYLPENTANE |
38 |
2,3,3- TRIMETHYLPENTANE |
39 |
2,3,4- TRIMETHYLPENTANE |
40 |
2,2,3,3- TETRAMETHYLBUTANE |
41 |
NONANE |
42 |
2- METHYLOCTANE |
43 |
3- METHYLOCTANE |
44 |
4- METHYLOCTANE |
45 |
3- ETHYLHEPTANE |
46 |
4- ETHYLHEPTANE |
47 |
2,2- DIMETHYLHEPTANE |
48 |
2,3- DIMETHYLHEPTANE |
49 |
2,4- DIMETHYLHEPTANE |
50 |
2,5- DIMETHYLHEPTANE |
51 |
2,6- DIMETHYLHEPTANE |
52 |
3,3- DIMETHYLHEPTANE |
53 |
3,4- DIMETHYLHEPTANE |
54 |
3,5- DIMETHYLHEPTANE |
55 |
4,4- DIMETHYLHEPTANE |
56 |
2- METHYL-3-ETHYLHEXANE |
57 |
2- METHYL-4-ETHYLHEXANE |
58 |
3- METHYL-3-ETHYLHEXANE |
59 |
3- METHYL-4-ETHYLHEXANE |
60 |
2,2,3- TRIMETHYLHEXANE |
61 |
2,2,4- TRIMETHYLHEXANE |
62 |
2,2,5- TRIMETHYLHEXANE |
63 |
2,3,3- TRIMETHYLHEXANE |
64 |
2,3,4- TRIMETHYLHEXANE |
65 |
2,3,5- TRIMETHYLHEXANE |
66 |
2,4,4- TRIMETHYLHEXANE |
67 |
3,3,4- TRIMETHYLHEXANE |
68 |
3,3- DIETHYLPENTANE |
69 |
2,2- DIMETHYL-3-ETHYLPENTANE |
70 |
2,3- DIMETHYL-3-ETHYLPENTANE |
71 |
2,4- DIMETHYL-3-ETHYLPENTANE |
72 |
2,2,3,3- TETRAMETHYLPENTANE |
73 |
2,2,3,4- TETRAMETHYLPENTANE |
74 |
2,2,4,4- TETRAMETHYLPENTANE |
75 |
2,3,3,4- TETRAMETHYLPENTANE |
76 |
DECANE |
77 |
2- METHYLNONANE |
78 |
3- METHYLNONANE |
79 |
4- METHYLNONANE |
80 |
5- METHYLNONANE |
81 |
3- ETHYLOCTANE |
82 |
4- ETHYLOCTANE |
83 |
2,2- DIMETHYLOCTANE |
84 |
2,3- DIMETHYLOCTANE |
85 |
2,4- DIMETHYLOCTANE |
86 |
2,5- DIMETHYLOCTANE |
87 |
2,6- DIMETHYLOCTANE |
88 |
2,7- DIMETHYLOCTANE |
89 |
3,3- DIMETHYLOCTANE |
90 |
3,4- DIMETHYLOCTANE |
91 |
3,5- DIMETHYLOCTANE |
92 |
3,6- DIMETHYLOCTANE |
93 |
4,4- DIMETHYLOCTANE |
94 |
4,5- DIMETHYLOCTANE |
95 |
4- PROPYLHEPTANE |
96 |
4- ISOPROPYLHEPTANE |
97 |
2- METHYL-3-ETHYLHEPTANE |
98 |
2- METHYL-4-ETHYLHEPTANE |
99 |
2- METHYL-5-ETHYLHEPTANE |
100 |
3- METHYL-3-ETHYLHEPTANE |
101 |
3- METHYL-4-ETHYLHEPTANE |
102 |
3- METHYL-5-ETHYLHEPTANE |
103 |
4- METHYL-3-ETHYLHEPTANE |
104 |
4- METHYL-4-ETHYLHEPTANE |
105 |
2,2,3- TRIMETHYLHEPTANE |
106 |
2,2,4- TRIMETHYLHEPTANE |
107 |
2,2,5- TRIMETHYLHEPTANE |
108 |
2,2,6- TRIMETHYLHEPTANE |
109 |
2,3,3- TRIMETHYLHEPTANE |
110 |
2,3,4- TRIMETHYLHEPTANE |
111 |
2,3,5- TRIMETHYLHEPTANE |
112 |
2,3,6- TRIMETHYLHEPTANE |
113 |
2,4,4- TRIMETHYLHEPTANE |
114 |
2,4,5- TRIMETHYLHEPTANE |
115 |
2,4,6- TRIMETHYLHEPTANE |
116 |
2,5,5- TRIMETHYLHEPTANE |
117 |
3,3,4- TRIMETHYLHEPTANE |
118 |
3,3,5- TRIMETHYLHEPTANE |
119 |
3,4,4- TRIMETHYLHEPTANE |
120 |
3,4,5- TRIMETHYLHEPTANE |
121 |
2- METHYL-3-ISOPROPYLHEXANE |
122 |
3,3- DIETHYLHEXANE |
123 |
3,4- DIETHYLHEXANE |
124 |
2,2- DIMETHYL-3-ETHYLHEXANE |
125 |
2,2- DIMETHYL-4-ETHYLHEXANE |
126 |
2,3- DIMETHYL-3-ETHYLHEXANE |
127 |
2,3- DIMETHYL-4-ETHYLHEXANE |
128 |
2,4- DIMETHYL-3-ETHYLHEXANE |
129 |
2,4- DIMETHYL-4-ETHYLHEXANE |
130 |
2,5- DIMETHYL-3-ETHYLHEXANE |
131 |
3,3- DIMETHYL-4-ETHYLHEXANE |
132 |
3,4- DIMETHYL-3-ETHYLHEXANE |
133 |
2,2,3,3- TETRAMETHYLHEXANE |
134 |
2,2,3,4- TETRAMETHYLHEXANE |
135 |
2,2,3,5- TETRAMETHYLHEXANE |
136 |
2,2,4,4- TETRAMETHYLHEXANE |
137 |
2,2,4,5- TETRAMETHYLHEXANE |
138 |
2,2,5,5- TETRAMETHYLHEXANE |
139 |
2,3,3,4- TETRAMETHYLHEXANE |
140 |
2,3,3,5- TETRAMETHYLHEXANE |
141 |
2,3,4,4- TETRAMETHYLHEXANE |
142 |
2,3,4,5- TETRAMETHYLHEXANE |
143 |
3,3,4,4- TETRAMETHYLHEXANE |
144 |
2,4- DIMETHYL-3-ISOPROPYLPENTANE |
145 |
2- METHYL-3,3-DIETHYLPENTANE |
146 |
2,2,3-TRIMETHYL-3- ETHYLPENTANE |
147 |
2,2,4- TRIMETHYL-3-ETHYLPENTANE |
148 |
2,3,4- TRIMETHYL-3-ETHYLPENTANE |
149 |
2,2,3,3,4- PENTAMETHYLPENTANE |
150 |
2,2,3,4,4- PENTAMETHYLPENTANE |
151 |
UNDECANE |
152 |
DODECANE |
153 |
TRIDECANE |
154 |
TETRADECANE |
155 |
PENTADECANE |
156 |
HEXADECANE |
157 |
HEPTADECANE |
158 |
OCTADECANE |
159 |
NONADECANE |
160 |
EICOSANE |
161 |
HENEICOSANE |
162 |
DOCOSANE |
163 |
TRICOSANE |
164 |
TETRACOSANE |
165 |
PENTACOSANE |
166 |
HEXACOSANE |
167 |
HEPTACOSANE |
168 |
OCTACOSANE |
169 |
NONACOSANE |
170 |
TRIACOACONTANE |
171 |
UNTRIACONTANE |
172 |
ETHENE |
173 |
PROPENE |
174 |
BUTENE-1 |
175 |
CIS- BUTENE-2 |
176 |
TRANS- BUTENE-2 |
177 |
2- METHYLPROPENE |
178 |
PENTENE-1 |
179 |
CIS- PENTENE-2 |
180 |
TRANS- PENTENE-2 |
181 |
2- METHYLBUTENE-1 |
182 |
3- METHYLBUTENE-1 |
183 |
2- METHYLBUTENE-2 |
184 |
HEXENE-1 |
185 |
CIS- HEXENE-2 |
186 |
TRANS- HEXENE-2 |
187 |
CIS- HEXENE-3 |
188 |
TRANS- HEXENE-3 |
189 |
2- METHYLPENTENE-1 |
190 |
3- METHYLPENTENE-1 |
191 |
4- METHYLPENTENE-1 |
192 |
2- METHYLPENTENE-2 |
193 |
3- METHYL-CIS-PENTENE-2 |
194 |
3- METHYL-TRANS-PENTENE-2 |
195 |
4- METHYL-CIS-PENTENE-2 |
196 |
4- METHYL-TRANS-PENTENE-2 |
197 |
2,3- DIMETHYLBUTENE-1 |
198 |
3,3- DIMETHYLBUTENE-1 |
199 |
2,3- DIMETHYLBUTENE-2 |
200 |
2- ETHYLBUTENE-1 |
201 |
HEPTENE-1 |
202 |
CIS-HEPTENE-2 |
203 |
TRANS- HEPTENE-2 |
204 |
CIS- HEPTENE-3 |
205 |
TRANS- HEPTENE-2 |
206 |
2- METHYLHEXENE-1 |
207 |
3- METHYLHEXENE-1 |
208 |
4- METHYLHEXENE-1 |
209 |
5- METHYLHEXENE-1 |
210 |
2- METHYLHEXENE-2 |
211 |
3- METHYL-CIS-HEXENE-2 |
212 |
3- METHYL-TRANS-HEXENE-2 |
213 |
4- METHYL-CIS-HEXENE-2 |
214 |
4- METHYL-TRANS-HEXENE-2 |
215 |
5- METHYL-CIS-HEXENE-2 |
216 |
5- METHYL-TRANS-HEXENE-2 |
217 |
2- METHYL-CIS-HEXENE-2 |
218 |
2- METHYL-TRANS-HEXENE-3 |
219 |
3- METHYL-CIS-HEXENE-3 |
220 |
3- METHYL-TRANS-HEXENE-3 |
221 |
2- ETHYLPENTENE-1 |
222 |
3- ETHYLPENTENE-1 |
223 |
2-3- DIMETHYLPENTENE-1 |
224 |
2,4- DIMETHYLPENTENE-1 |
225 |
3-3- DIMETHYLPENTENE-1 |
226 |
3,4- DIMETHYLPENTENE-1 |
227 |
4,4- DIMETHYLPENTENE-1 |
228 |
3- ETHYLPENTENE-2 |
229 |
2,3- DIMETHYLPENTENE-2 |
230 |
2,4- DIMETHYLPENTENE-2 |
231 |
3,4- DIMETHYL-CIS-PENTENE-2 |
232 |
3,4- DIMETHYL-TRANS-PENTENE-2 |
233 |
4,4- DIMETHYL-CIS-PENTENE-2 |
234 |
4,4- DIMETHYLTRANS-PENTENE-2 |
235 |
2- ETHYL-3-METHYL-BUTENE-1 |
236 |
2,3,3- TRIMETHYLBUTENE-1 |
237 |
OCTENE -1 |
238 |
CIS- OCTENE-2 |
239 |
TRANS- OCTENE-2 |
240 |
CIS- OCTENE-3 |
241 |
TRANS- OCTENE-3 |
242 |
CIS- OCTENE-4 |
243 |
TRANS- OCTENE-4 |
244 |
2- METHYLHEPTENE-1 |
245 |
3- METHYLHEPTENE-1 |
246 |
4- METHYLHEPTENE-1 |
247 |
5- METHYLHEPTENE-1 |
248 |
6- METHYLHEPTENE-1 |
249 |
2- METHYLHEPTENE2 |
250 |
3- METHYL-CIS-HEPTENE-2 |
251 |
3- METHYL-TRANS-HEPTENE-2 |
252 |
2- ETHYLHEXENE-1 |
253 |
3- ETHYLHEXENE-1 |
254 |
4- ETHYLHEXENE-1 |
255 |
3,5- DIMETHYLHEXENE-1 |
256 |
4,4- DIMETHYLHEXENE-1 |
257 |
4,5- DIMETHYLHEXENE-1 |
258 |
5,5- DIMETHYLHEXENE-1 |
259 |
3- ETHYL-CIS-HEXENE-2 |
260 |
3- ETHYL-TRANS-HEXENE-2 |
261 |
4- ETHYL-CIS-HEXENE-2 |
262 |
4- ETHYL-TRANS-HEXENE-2 |
263 |
2,3- DIMETHYLHEXENE-2 |
264 |
2,4- DIMETHYLHEXENE-2 |
265 |
2,5- DIMETHYLHEXENE-2 |
266 |
3,4- DIMETHYL-CIS-HEXENE-2 |
267 |
3,4- DIMETHYL-TRANS-HEXENE-2 |
268 |
3,5- DIMETHYL-CIS-HEXENE-2 |
269 |
3,5- DIMETHYL-TRANS-HEXENE-2 |
270 |
4,4- DIMETHYL-CIS-HEXENE-2 |
271 |
4,4- DIMETHYL-TRANS-HEXENE-2 |
272 |
4,5- DIMETHYL-CIS-HEXENE-2 |
273 |
4,5- DIMETHYL-TRANS-HEXENE-2 |
274 |
5,5- DIMETHYL-CIS-HEXENE-2 |
275 |
5,5- DIMETHYL-TRANS-HEXENE-2 |
276 |
2,2- DIMETHYL-CIS-HEXENE-3 |
277 |
2,2- DIMETHYL-TRANS-HEXENE-3 |
278 |
2,3- DIMETHYL-CIS-HEXENE-3 |
279 |
2,3- DIMETHYL-TRANS-HEXENE-3 |
280 |
2,4- DIMETHYL-CIS-HEXENE-3 |
281 |
2,4= DIMETHYL-TRANS-HEXENE-3 |
282 |
2,5- DIMETHYL-CIS-HEXENE-3 |
283 |
2,5- DIMETHYL-TRANS-HEXENE-3 |
284 |
3,4- DIMETHYL-CIS-HEXENE-3 |
285 |
3,4- DIMETHYL-TRANS-HEXENE-3 |
286 |
3- ETHYLHEXENE-3 |
287 |
2-N- PROPYLPENTENE-1 |
288 |
2- ISOPROPYLPENTENE-1 |
289 |
3- METHYL-2-ETHYLPENTENE-1 |
290 |
4- METHYL-2-ETHYLPENTENE-1 |
291 |
2- METHYL-3-ETHYLPENTENE-1 |
292 |
3- METHYL-3-ETHYLPENTENE-1 |
293 |
4- METHYL-3-ETHYLPENTENE-1 |
294 |
2,3,3- TRIMETHYLPENTENE-1 |
295 |
2,3,4- TRIMETHYLPENTENE-1 |
296 |
2,4,4- TRIMETHYLPENTENE-1 |
297 |
3,3,4- TRIMETHYLPENTENE-1 |
298 |
3,4,4- TRIMETHYLPENTENE-1 |
299 |
2- METHYL-3-ETHYLPENTENE |
300 |
4- METHYL-3-ETHYL-CIS-PENTENE-2 |
301 |
4- METHYL-3-ETHYL-TRANS-PENTENE2 |
302 |
2,3,4- TRIMETHYLPENTENE-2 |
303 |
2,4,4- TRIMETHYLPENTENE-2 |
304 |
3,4,4- TRIMETHYL-CIS-PENTENE-2 |
305 |
3,4,4- TRIMETHYL-TRANS-PENTENE-2 |
306 |
2- ISOPROPYL-3-METHYL-BUTENE-1 |
307 |
2- ETHYL-3,3-DIMETHYLBUTENE-1 |
308 |
NONENE-1 |
309 |
2,3- DIMETHYLHEPTENE-2 |
310 |
DECENE-1 |
311 |
UNDECENE-1 |
312 |
DODECENE-1 |
313 |
TRIDECENE-1 |
314 |
TETRADECENE-1 |
315 |
PENTADECENE-1 |
316 |
PROPADIENE-1,2 (ALLENE) |
317 |
BUTADIENE-1,3 (DIVINIL) |
318 |
2- METHYLBUTADIENE-1,3 (ISOPRENE |
319 |
ETHYNE (ACETYLENE) |
320 |
PROPYNE (METHYLACETYLENE) |
321 |
BUTYNE-1 (ETHYLACETYLENE) |
322 |
BUTYNE-2 (DIMETHYLACETYLENE) |
323 |
VINYLACETYLENE |
324 |
PENTYNE-1 |
325 |
PENTYNE-2 |
326 |
HEXYNE-1 |
327 |
HEXYNE-3 |
328 |
3- ETHYLBUTYNE -1 |
329 |
HEPTYNE-1 |
330 |
OCTYNE-1 |
331 |
OCTYNE-2 |
332 |
OCTYNE-3 |
333 |
OCTYNE-4 |
334 |
NONYNE-1 |
335 |
TETRAFLUOROMETHANE |
336 |
HEXAFLUOROETHANE |
337 |
TETRAFLUOROPROPANE |
338 |
TETRAFLUOROBUTANE |
339 |
PERFLUOROPENTAN |
340 |
TETRAFLUOROCYCLOBUTANE |
341 |
TETRAFLUOROETHANE |
342 |
FLUOROMETHANE |
343 |
DIFLUOROMEHANE |
344 |
1,1- DIFLUOROETHANE |
345 |
TRIFLUOROMETHANE (FLUOROFОRМ) |
346 |
1,1,1- TRIFLUOROETHANE |
347 |
1,1- DIFLUOROETHENE |
348 |
CHLOROMETHANE (METHYL CHLORIDE) |
349 |
ETHYL CHLORIDE |
350 |
VINYL CHLORIDE |
351 |
CHLOROPROPANE |
352 |
DICHLOROMETHANE |
353 |
1,1- DICHLOROETHANE |
354 |
1,2- DICHLOROETHANE |
355 |
1,2- DICHLOROPROPANE |
356 |
CIS-1,2- DICHLOROETHYLENE |
357 |
TRANS-1,2- DICHLOROETHYLENE |
358 |
TRICHLOROМЕТНANE (CHLOROFОRМ) |
359 |
1,1,1- TRICHLOROETHANE |
360 |
TRICHLOROETHYLENE |
361 |
TETRACHLOROМЕТНANE |
362 |
1,1,2,2- TETRACHLOROETHANE |
363 |
1,1,1,2- TETRACHLOROPROPANE |
364 |
TETRACHLOROPENTANE |
365 |
CHLOROBENZENE |
366 |
CHLOROМЕТYLBENZENE |
367 |
O- CHLOROТOLUENE |
368 |
N- DICHLOROBENZENE |
369 |
2,5- DICHLOROТOLUENE |
370 |
1,2,4- TRICHLOROBENZENE |
371 |
2,3,6- TRICHLOROTOLUENE |
372 |
2,3,5,6- TETRACHLOROTOLUENE |
373 |
1,1- DICHLOROETHENE |
374 |
BROМОМЕТНANE |
375 |
MONOСLОRODIFLUOROMETHANE |
376 |
MONOCHLOROTRIFLUOROMETHANE |
377 |
DICHLOROMONOFLUOROMETHANE |
378 |
DICHLORODIFLUOROMETHANE |
379 |
TRIСHLOROFLUOROMETHANE |
380 |
METHANOL (METHYL ALCOHOL) |
381 |
ETHANOL (ETHYL ALCOHOL) |
382 |
PROPANOL-1 (PROPYL ALCONOL) |
383 |
PROPANOL-2 (ISOPROPYL ALCOHOL) |
384 |
BUTANOL-1 (BUTYL ALCOHOL-1) |
385 |
BUTANOL-2 |
386 |
2- METHYL-PROPANOL-1 |
387 |
2- METHYL-PROPANOL-2 |
388 |
PENTANOL-1 (AMYL-ALCOHOL) |
389 |
HEXANOL-1 (HEXYL ALCOHOL) |
390 |
HEXANOL-2 |
391 |
HEXANOL-3 |
392 |
HEPTANOL-1 (HEPTYL ALCOHOL) |
393 |
HEPTANOL-2 |
394 |
HEPTANOL-3 |
395 |
OCTANOL-1 |
396 |
NONANOL-1 |
397 |
DECANOL-1 |
398 |
UNDECANOL-1 |
399 |
DODECANOL-1 |
400 |
TRIDECANOL-1 |
401 |
TETRADECANOL |
402 |
PENTADECANOL-1- |
403 |
HEXADECANOL-1 |
404 |
HEPTADECANOL-1 |
405 |
OCTADECANOL-1 |
406 |
NONADECANOL-1 |
407 |
EICOSANOL-1 |
408 |
HENEICOSANOL-1 |
409 |
PROPEN-1-ОL (ALLYL ALCOHOL) |
410 |
DIMETHYL ETHER |
411 |
METHYLETHYL ETHER |
412 |
DIETHYL ETHER |
413 |
ETHYL PROPYL ETHER |
414 |
METHANETHIOL |
415 |
ETHANETHIOL |
416 |
1- BUTANETHIOL |
417 |
1- PENTANETHIOL |
418 |
DIMETHYL SULPHIDE |
419 |
METHYL ETHYL SULPHIDE |
420 |
METHYL PROPYL SULPHIDE |
421 |
DIETHYL SULPHIDE |
422 |
METHYL ISOPROPYL SULPHIDE |
423 |
ETHYLPROPYLSULPHIDE |
424 |
METHYL DISULPHIDE |
425 |
2,2- DIMETHYL HEPTANAL |
426 |
2- ISOPROPYL BUTANAL |
427 |
2,4- DIMETHYLPENTANAL |
428 |
3- METHYLHEXANAL |
429 |
5- METHYLHEXANAL |
430 |
PROPANONE-2 (ACEТОNE) |
431 |
BUTANONE-2 |
432 |
PENTANONE-2 |
433 |
PENTANONE-3 |
434 |
3- METHYLBUTANONE-2 |
435 |
ETHANOIC ACID |
436 |
PROPANOIC ACID |
437 |
BUTANOIC ACID |
438 |
2- METHYL-PROPANOIC ACID |
439 |
PENTANOIC ACID |
440 |
HEXANOIC ACID |
441 |
HEPTANOIC ACID |
442 |
OCTANOIC ACID |
443 |
NONANOIC ACIDE |
444 |
DECANOIC ACID |
445 |
UNDECANOIC ACID |
446 |
DODECANOIC ACID |
447 |
METHYL FОRMIATE |
448 |
ETHYL FОRMIATE |
449 |
PROPYL FОRMIATE |
450 |
METHYL ACETATE |
451 |
ETHYL ACETATE |
452 |
PROPYL ACETATE |
453 |
METHYL PROPIONATE |
454 |
ETHYL PROPIONATE |
455 |
METHYL BUTANOATE |
456 |
METHYL-2-METHYL PROPANOATE |
457 |
METHYLAMINE |
458 |
DIETHYL AMINE |
459 |
TRIMETHYLAMINE |
460 |
TRIETHYLAMINE |
461 |
CYCLOPROPANE |
462 |
CYCLOBUTANE |
463 |
CYCLOPENTANE |
464 |
CYCLOHEXANE |
465 |
METHYLCYCLOPENTANE |
466 |
CYCLOHEPTANE |
467 |
METHYLCYCLOHEXANE |
468 |
ETHYLCYCLOPENTANE |
469 |
1,1- DIMETHYLCYCLOPENTANE |
470 |
CIS-1,2- DIMETHYLCYCLOPENTANE |
471 |
TRANS-1,2- DIMETHYLCYCLOPENTANE |
472 |
CIS-1,3- DIMETHYLCYCLOPENTANE |
473 |
TRANS-1,3- DIMETHYLCYCLOPENTANE |
474 |
CYCLOOCTANE |
475 |
ETHYLCYCLOHEXAНE |
476 |
1,1- DIMETHYLCYCLOHEXANE |
477 |
CIS-1,2- DIMETHYLCYCLOHEXANE |
478 |
TRANS-1,2- DIMETHYLCYCLOHEXANE |
479 |
CIS-1,3- DIMETHYLCYCLOHEXANE |
480 |
TRANS-1,3- DIMETHYLCYCLOHEXANE |
481 |
CIS-1,4- DIMETHYLCYCLOHEXANE |
482 |
TRANS-1,4- DIMETHYLCYCLOHEXANE |
483 |
PROPYLCYCLOPENTANE |
484 |
ISOPROPYLCYCLOPENTANE |
485 |
1- METHYL-1-ETHYLCYCLOPENTANE |
486 |
CIS-1- METHYL-2ETHYLCYCLOPENTANE |
487 |
TRANS-1- METHYL-2-ETHYLCYCLOPENT |
488 |
CIS-1- METHYL-3-ETHYLCYCLOPENTAN |
489 |
TR.-1 METHYL-3-ETHYLCYCLOPENTAN |
490 |
1,1,2- TRIMETHYLCYCLOPENTANE |
491 |
1,1,3- TRIMETHYLCYCLOPENTANE |
492 |
1-C.-2-C.-3 TRIMETHYLCYCLOPENTA |
493 |
1-C.-2-T.-3 TRIMETHYLCYCLOPENTA |
494 |
1-T.-2-C.-3 TRIMETHYLCYCLOPENTA |
495 |
1-C.-2-C.-4 TRIMETHYLCYCLOPENTA |
496 |
1-C.-2-T.-4 TRIMETHYLCYCLOPENTA |
497 |
1-T.-2-C.-4 TRIMETHYLCYCLOPENTA |
498 |
CYCLONONANE |
499 |
BUTYLCYCLOPENTANE |
500 |
ISOBUTYLCYCLOPENTANE |
501 |
2- BUTYLCYCLOPENTANE |
502 |
3- BUTYLCYCLOPENTANE |
503 |
C.1- METHYL-2-PROPYLCYCLOPENTAN |
504 |
TR-1- METHYL-2-PROPYLCYCLOPENTA |
505 |
C-1 METHYL-3-ISOPROP.CYCLOPENTAN |
506 |
T-1 METHYL-3ISOPROPYLCYCLOPENTA |
507 |
CIS-1,2- DIETHYLCYCLOPENTANE |
508 |
TRANS-1,2- DIETHYLCYCLOPENTANE |
509 |
PROPYLCYCLOHEXANE |
510 |
ISOPROPYLCYCLOHEXANE |
511 |
1,1,2- TRIMETHYLCYCLOHEXANE |
512 |
1,1,3- TRIMETHYLCYCLOHEXANE |
513 |
1,2,4- TRIMETHYLCYCLOHEXANE |
514 |
CYCLODECANE |
515 |
BUTYLCYCLOHEXANE |
516 |
ISOBUTYLCYCLOHEXANE |
517 |
2- BUTYLCYCLOHEXANE |
518 |
3- BUTYLCYCLOHEXANE |
519 |
1- METHYL-4ISOPROPYLCYCLOHEXANE |
520 |
1,3- CYCLOPENTADIENE |
521 |
DICYCLOPENTADIENE |
522 |
CYCLOPENTENE |
523 |
1- METHYLCYCLOPENTENE |
524 |
3- METHYLCYCLOPENTENE |
525 |
4- METHYLCYCLOPENTENE |
526 |
1- ETHYLCYCLOPENTENE |
527 |
3- ETHYLCYCLOPENTENE |
528 |
4- ETHYLCYCLOPENTENE |
529 |
1,2- DIMETHYLCYCLOPENTENE |
530 |
1,3- DIMETHYLCYCLOPENTENE |
531 |
1,4- DIMETHYLCYCLOPENTENE |
532 |
1,5- DIМЕТNYLCYCLOPENTENE |
533 |
CYCLOHEXENE |
534 |
1- METHYLCYCLOHEXENE |
535 |
3- METHYLCYCLOHEXENE |
536 |
4- METHYLCYCLOHEXENE |
537 |
1- ETHYLCYCLOHEXENE |
538 |
3- ETHYLCYCLOHEXENE |
539 |
4- ETHYLCYCLOHEXENE |
540 |
1,2- DIMETHYLCYCLOHEXENE |
541 |
1,3- DIMETHYLCYCLOHEXENE |
542 |
BENZENE |
543 |
METHYLBENZENE (TOLUENE) |
544 |
VINYLBENZENE |
545 |
ETHYLBENZENE |
546 |
1,2- DIMETHYLBENZENE (O-XYLENE) |
547 |
1,3- DIMETHYLBENZENE (M-XYLENE) |
548 |
1,4- DIMETHYLBENZENE (P-XYLENE) |
549 |
PROPYLBENZENE |
550 |
ISOPROPYLBENZENE |
551 |
1- METHYL-2-ETHYLBENZENE |
552 |
1- METHYL-3-ETHYLBENZENE |
553 |
1- METHYL-4-ETHYLBENZENE |
554 |
1,2,3- TRIMETHYLBENZENE |
555 |
1,2,4- TRIMETHYLBENZENE |
556 |
1,3,5- TRIMETHYLBENZENE |
557 |
BUTYLBENZENE |
558 |
ISOBUTYLBENZENE |
559 |
2- BUTYLBENZENE |
560 |
3- BUTYLBENZENE |
561 |
1- METHYL-2-PROPYLBENZENE |
562 |
1- METHYL-3-PROPYLBENZENE |
563 |
1- METHYL-4-PROPYLBENZENE |
564 |
1- METHYL-2-ISOPROPYLBENZENE |
565 |
1- METHYL-3-ISOPROPYLBENZENE |
566 |
1- METHYL-4-ISOPROPYLBENZENE |
567 |
1,2- DIETHYLBENZENE |
568 |
1,3- DIETHYLBENZENE |
569 |
1,4- DIETHYLBENZENE |
570 |
2- ETHYL-1,3-DIMETHYLBENZENE |
571 |
2- ETHYL-1,4-DIMETHYLBENZENE |
572 |
3- ETHYL-1,2-DIMETHYLBENZENE |
573 |
4- ETHYL-1,2-DIMETHYLBENZENE |
574 |
4- ETHYL-1,3-DIMETHYLBENZENE |
575 |
5- ETHYL-1,3-DIMETHYLBENZENE |
576 |
1,2,3,4- TETRAMETHYLBENZENE |
577 |
1,2,3,5- TETRAMETHYLBENZENE |
578 |
1,2,4,5- TETRAMETHYLBENZENE |
579 |
PENTYLBENZENE |
580 |
ISOPENTYLBENZENE |
581 |
1,1- DIMETHYLPROPYLBENZENE |
582 |
2,2- DIMETHYLPROPYLBENZENE |
583 |
1-PRIMARY BUTYL-2- METHYLBENZENE |
584 |
1-PRIMARY- BUTYL-3-METHYLBENZENE |
585 |
1-PRIMARY- BUTYL-4-METHYLBENZENE |
586 |
1- SECONDАRY BUTYL-2- METHYLBENZ |
587 |
1-SECOND.- BUTYL-3-METHYLBENZENE |
588 |
1-SECOND- BUTYL-4-METHYLBENZENE |
589 |
O- ISOBUTYLTOLUENE |
590 |
P-TRET- ISOBUTYLTOLUENE |
591 |
1- ISOBUTYL-3-METHYLBENZENE |
592 |
1- ISOBUTYL-4-METHYLBENZENE |
593 |
1-TRET.- BUTYL-2-METHYLBENZENE |
594 |
1-TRET.- BUTYL-3-METHYLBENZENE |
595 |
1-TRET.- BUTYL-4-METHYLBENZENE |
596 |
1- ETHYL-2-PRIM.-PROPYLBENZENE |
597 |
1- ETHYL-3-PRIM.-PROPYLBENZENE |
598 |
1- ETHYL-4-PRIM -PROPYLBENZENE |
599 |
1- ETHYL-2-ISOPROPYLBENZENE |
600 |
1- ETHYL-3-ISOPROPYLBENZENE |
601 |
1- ETHYL-4-ISOPROPYLBENZENE |
602 |
1,2- DIMETHYL-3-PRIM. PROPYLBEN |
603 |
1,2- DIMETHYL-4-PR.-PROPYLBENZE |
604 |
1,3- DIMETHYL-2-PR.-PROPYLBENZE |
605 |
1,3- DIMETHYL-4-PR.-PROPYLBENZE |
606 |
1,3- DIMETHYL-5-PR.-PROPYLBENZE |
607 |
1,4- DIMETHYL-2-PR.-PROPYLBENZE |
608 |
1,2- DIMETHYL-3-ISOPROPYLBENZENE |
609 |
1,2- DIMETHYL-4-ISOPROPYLBENZENE |
610 |
1,3- DIMETHYL-2-ISOPROPYLBENZENE |
611 |
1,3- DIMETHYL-4-ISOPROPYLBENZENE |
612 |
1,3- DIMETHYL-5-ISOPROPYLBENZENE |
613 |
1,4- DIMETHYL-2-ISOPROPYLBENZENE |
614 |
2,3- DIETHYL-1-METHYLBENZENE |
615 |
2,4- DIETHYL-1-METHYLBENZENE |
616 |
2,5- DIETHYL-1-ETHYLBENZENE |
617 |
2,6- DIETHYL-1-METHYLBENZENE |
618 |
3,4- DIETHYL-1-METHYLBENZENE |
619 |
3,5- DIETHYL-1-METHYLBENZENE |
620 |
2- ETHYL-1,3,5-TRIMETHYLBENZENE |
621 |
3- ETHYL-1,2,4-TRIMETHYLBENZENE |
622 |
4- ETHYL-1,2,3-TRIMETHYLBENZENE |
623 |
5- ETHYL-1,2,3-TRIMETHYLBENZENE |
624 |
5- ETHYL-1,2,4-TRIMETHYLBENZENE |
625 |
6- ETHYL-1,2,4-TRIMETHYLBENZENE |
626 |
PENTAMETHYLBENZENE |
627 |
O- DIISOPROPYLBENZENE |
628 |
M- DIISOPROPYLBENZENE |
629 |
P- DIISOPROPYLBENZENE |
630 |
HEXYLBENZENE |
631 |
HEPTYLBENZENE |
632 |
OCTYLBENZENE |
633 |
NONYLBENZENE |
634 |
DECYLBENZENE |
635 |
UNDECYLBENZENE |
636 |
DODECYLBENZENE |
637 |
TRIDECYLBENZENE |
638 |
TETRADECYLBENZENE |
639 |
PENTADECYLBENZENE |
640 |
HEXADECYLBENZENE |
641 |
PHENOL |
642 |
2- METHYLPHENOL (O-CRESOL) |
643 |
3- METHYLPHENOL |
644 |
4- METHYLPHENOL |
645 |
2,3- DIMETHYLPHENOL |
646 |
2,4- DIMETHYLPHENOL |
647 |
2,5- DIMETHYLPHENOL |
648 |
2,6- DIMETHYLPHENOL |
649 |
3,4- DIMETHYLPHENOL |
650 |
3,5- DIMETHYLPHENOL |
651 |
NAPHTHANE |
652 |
1,2,3,4- TETRAHYDRONAPHTHALENE |
653 |
1- METHYLNAPHTHALENE |
654 |
2- METHYLNAPHTHALENE |
655 |
1- ETHYLNAPHTHALENE |
656 |
2- ETHYLNAPHTHALENE |
657 |
1,2- DIMETHYLNAPHTHALENE |
658 |
1,3- DIMETHYLNAPHTHALENE |
659 |
1,4- DIMETHYLNAPHTHALENE |
660 |
1,5- DIMETHYLNAPHTHALENE |
661 |
PIRROLIDINE |
662 |
PYRIDINE |
663 |
2- METHYLPYRIDINE |
664 |
4- METHYLPYRIDINE |
665 |
2- VINYLPYRIDINE |
666 |
4- VINYLPYRIDINE |
667 |
2- PYRIDINEETHANOL |
668 |
4- PYRIDINEETHANOL |
669 |
OXYGEN |
670 |
HYDROGEN |
671 |
WАТER |
672 |
HELIUМ |
673 |
NEОN |
674 |
ARGОN |
675 |
KRIPTON |
676 |
XENON |
677 |
RADON |
678 |
FLUORINE |
679 |
OXYGEN DIFLUORIDE |
680 |
HYDROGEN FLUORIDE |
681 |
CHLORINE |
682 |
HYDROGEN CHLORIDE |
683 |
FLUORIDE ОF CHLORIC ACID |
684 |
BROМINE |
685 |
SULPHUR DIOXIDE |
686 |
SULPHUR TRIOXIDE |
687 |
HYDROGEN SULPHIDE |
688 |
NITROGEN |
689 |
NITROGEN OXIDE |
690 |
NITROGEN MONOXIDE |
691 |
NITROGEN TETROXIDE |
692 |
AMMONIA |
693 |
NITROSYL CHLORIDE |
694 |
CARBON DIOXIDE |
695 |
CARBON MONOXIDE |
696 |
DOTRIACONTANE |
697 |
TRITRIACONTANE |
698 |
TETRATRIACONTANE |
699 |
PENTATRIACONTANE |
700 |
HEXATRIACONTANE |
701 |
HEPTATRIACONTANE |
702 |
OCTATRIACONTANE |
703 |
NONATRIACONTANE |
704 |
TETRACONTANE |
705 |
HEXADECENE -1 |
706 |
HEPTADIENE -1 |
707 |
OCTADECENE -1 |
708 |
NONADECENE -1 |
709 |
EICOSENE -1 |
710 |
BUTADIENE -1,2 |
711 |
PENTADIENE -1,2 |
712 |
CIS- PENTADIENE -1,3 |
713 |
TRANS- PENTADIENE -1,3 |
714 |
PENTADIENE -1,4 |
715 |
PENTADIENE -2,3 |
716 |
3- METHYLBUTADIENE -1,2 |
717 |
HEXADIENE -1,2 |
718 |
HEXADIENE 1,CIS-3 |
719 |
HEXADIENE -1,TRANS-3 |
720 |
HEXADIENE -1,CIS-4 |
721 |
HEXADIENE -1,TRANS-4 |
722 |
HEXADIENE -1,5 |
723 |
HEXADIENE -2,3 |
724 |
HEXADIENE CIS-2,CIS-4 |
725 |
HEXADIENE -CIS-2,TRANS-4 |
726 |
HEXADIENE -TRANS-2,TRANS-4 |
727 |
2- METHYLPENTADIENE -1,TRANS-3 |
728 |
2- METHYLPENTADIENE-1,CIS-3 |
729 |
3- METHYLPENTADIENE -1,2 |
730 |
4- METHYLPENTADIENE -1,2 |
731 |
3- METHYLPENTADIENE -1,CIS-3 |
732 |
3- METHYLPENTADIENE -1,TRANS-3 |
733 |
4- METHYLPENTADIENE -1,3 |
734 |
2- METHYLPENTADIENE -1,4 |
735 |
2- METHYLPENTADIENE -2,3 |
736 |
2- ETHYLBUTADIENE -1,3 |
737 |
2,3- DIMETHYLBUTADIENE -1,3 |
738 |
2- METHYLHEXADIENE -1,5 |
739 |
2- METHYLHEXADIENE -2,4 |
740 |
2,4- DIMETHYLPENTADIENE -1,3 |
741 |
OCTADIENE -2,6 |
742 |
3- METHYLHEPTADIENE -1,5 |
743 |
2,5- DIMETHYLHEXADIENE-1,5 |
744 |
2,5- DIMETHYLHEXADIENE-2,4 |
745 |
2,6- DIMETHYLHEPTADIENE -1,5 |
746 |
2- METHYL-3-ETHYLHEXADIENE -1,5 |
747 |
3,7- DIMETHYLOCTADIENE -1,6 |
748 |
3- METHYLBUTYNE -1 |
749 |
HEXYNE -2 |
750 |
3- METHYLPENTYNE -1 |
751 |
4- METHYLPENTYNE -1 |
752 |
4- METHYLPENTYNE -2 |
753 |
3,3- DIMETHYLBUTYNE -1 |
754 |
HEPTYNE -2 |
755 |
HEPTYNE -3 |
756 |
3- METHYLHEXYNE -1 |
757 |
4- METHYLHEXYNE -1 |
758 |
5- METHYLHEXYNE -1 |
759 |
4- METHYLHEXYNE -2 |
760 |
5- METHYLHEXYNE -2 |
761 |
2- METHYLHEXYNE -3 |
762 |
3- ETHYLPENTYNE -2 |
763 |
3,3- DIMETHYLPENTYNE -1 |
764 |
3,4- DIMETHYLPENTYNE -1 |
765 |
4,4- DIMETHYLPENTYNE -1 |
766 |
4,4- DIMETHYLPENTYNE -2 |
767 |
NONYNE -2 |
768 |
NONYNE -3 |
769 |
DECYNE -1 |
770 |
DECYNE -2 |
771 |
DECYNE -3 |
772 |
UNDECYNE -1 |
773 |
DODECINE -1 |
774 |
TRIDECYNE -1 |
775 |
TETRADECYNE -1 |
776 |
PENTADECYNE -1 |
777 |
HEXADECYNE -1 |
778 |
HEPTADECYNE -1 |
779 |
OCTADECYNE -1 |
780 |
NONADECYNE -1 |
781 |
EICOSYNE -1 |
782 |
FLUOROETHANE |
783 |
1- FLUROPROPANE |
784 |
2- FLUOROPROPANE |
785 |
1,1,1,2,2- PENTAFLUOROPROPANE |
786 |
1N- UNDECAFLUOROPENTANE |
787 |
PERFLULROHEXANE |
788 |
1N- TRIDECAFLUOROHEXANE |
789 |
PERFLUOROHEPTANE |
790 |
1N- PENTADECAFLUOROHEPTANE |
791 |
PERFLUOROOCTANE |
792 |
РERFLUORONONANE |
793 |
PERFLUORODECANE |
794 |
1,1,2- TRICHLOROETHANE |
795 |
1,1,1,2- TETRACHLOROETHANE |
796 |
PENTACHLOROETHANE |
797 |
2- CHLOROPROPANE |
798 |
1,1- DICHLOROPROPANE |
799 |
1,3- DICHLOROPROPANE |
800 |
2,2- DICHLOROPROPANE |
801 |
1,2,3- TRICHLOROPROPANE |
802 |
1- CHLOROBUTANE |
803 |
2- CHLOROBUTANE |
804 |
1- CHLORO-2-METHYLPROPANE |
805 |
2- CHLORO-2-METHYLPROPANE |
806 |
1- CHLOROPENTANE |
807 |
1- CHLORO-3-METHYLBUTANE |
808 |
2- CHLORO-2-METHYLBUTANE |
809 |
BROMOMETHANE |
810 |
DIBROMOMETHANE |
811 |
1,2- DIBROMOETHANE |
812 |
1- BROMOPROPANE |
813 |
2- BROMOPROPANE |
814 |
1,2- DIBROMOPROPANE |
815 |
1- BROMOBUTANE |
816 |
2- BROMOMETHANE |
817 |
2- BROM-2-METHYLPROPANE |
818 |
1,2- DIBROMOBUTANE |
819 |
2,3- DIBROMOBUTANE |
820 |
1- BROMOPENTANE |
821 |
2,3- DIBROMO-2-METHYLBUTANE |
822 |
IODOMETHANE |
823 |
DIIODOMETHANE |
824 |
IODOETHANE |
825 |
1,1- DIIODOETHANE |
826 |
1,2- DIIODOETHANE |
827 |
1- IODOPROPANE |
828 |
2- IODOPROPANE |
829 |
BROMOTRIFLUOROMETHANE |
830 |
1- CHLORO-1,1-DIFLUOROETHANE |
831 |
CHLOROPENTAFLUOROETHANE |
832 |
1,1 CHLORO-1,2,2,2FLUOROETHANE |
833 |
1,2 CHLORO-1,1,2,2FLUOROETHANE |
834 |
)1,1,2,2 CHLORO-1,2FLUOROETHANE |
835 |
1,2,2 CHLORO-1,1,2-FLUOROETHANE |
836 |
TRIFLUOROETHYLENE |
837 |
PERFLUOROHEXENE -1 |
838 |
PERFLUOROHEPTENE -1 |
839 |
CHLOROACETYLENE |
840 |
TETRACHLOROETHYLENE |
841 |
2- CHLOROPROPENE -1 |
842 |
3- CHLOROPROPENE -1 |
843 |
CIS-1- CHLOROPROPENE -1 |
844 |
TRANS-1- CHLOROPROPENE -1 |
845 |
CIS-1,3- DICHLOROPROPENE -1 |
846 |
TRANS-1,3- DICHLOROPROPENE -1 |
847 |
2,3- DICHLOROPROPENE -1 |
848 |
2- CHLOROBUTADIENE -1,3 |
849 |
BROMOETHYLENE |
850 |
3- IODOPROPENE -1 |
851 |
CHLOROTRIFLUOROETHYLENE |
852 |
2- CHLORO-1,1-DIFLUOROETHYLENE |
853 |
FLUOROBENZENE |
854 |
ORTHO- DIFLUOROBENZENE |
855 |
PARA- DIFLUOROBENZENE |
856 |
PENTAFLUOROBENZENE |
857 |
PERFLUOROBENZENE |
858 |
PARA- FLUOROTOLUENE |
859 |
ORTHO- DICHLOROBENZENE |
860 |
METHA- DICHLOROBENZENE |
861 |
HEXACHLOROBENZENE |
862 |
BROMOBENZENE |
863 |
IODOBENZENE |
864 |
CHLOROPENTAFLUOROBENZENE |
865 |
BROMOPENTAFLUOROBENZENE |
866 |
1N- UNDECAFLUOROCYCLOHEXANE |
867 |
PERFLUOROCYCLOHEXANE |
868 |
PERFLUOROMETHYLCYCLOHEXANE |
869 |
PENTANOL -2 |
870 |
PENTANOL -3 |
871 |
2- METHYLBUTANOL -1 |
872 |
3- METHYLBUTANOL -1 |
873 |
2- METHYLBUTANOL -2 |
874 |
3- METHYLBUTANOL -2 |
875 |
2- METHYLPENTANOL -1 |
876 |
3- METHYLPENTANOL -1 |
877 |
4- METHYLPENTANOL -1 |
878 |
2- METHYLPENTANOL -2 |
879 |
3- METHYLPENTANOL -2 |
880 |
4- METHYLPENTANOL -2 |
881 |
2- METHYLPENTANOL -3 |
882 |
3- METHYLPENTANOL -3 |
883 |
2- ETHYLBUTANOL -1 |
884 |
2,2- DIMETHYLBUTANOL -1 |
885 |
2,3- DIMETHYLBUTANOL -1 |
886 |
3,3- DIMETHYLBUTANOL -1 |
887 |
2,3- DIMETHYLBUTANOL -2 |
888 |
3,3- DIMETHYLBUTANOL -2 |
889 |
HEPTANOL -4 |
890 |
2- METHYLHEXANOL -1 |
891 |
3- METHYLHEXANOL -1 |
892 |
4- METHYLHEXANOL -1 |
893 |
5- METHYLHEXANOL -1 |
894 |
2- METHYLHEXANOL -2 |
895 |
3- METHYLHEXANOL -2 |
896 |
4- METHYLHEXANOL -2 |
897 |
5- METHYLHEXANOL -2 |
898 |
2- METHYLHEXANOL -3 |
899 |
3- METHYLHEXANOL -3 |
900 |
4- METHYLHEXANOL -3 |
901 |
5- METHYLHEXANOL -3 |
902 |
2- ETHYLPENTANOL -1 |
903 |
3- ETHYLPENTANOL -1 |
904 |
2,2- DIMETHYLPENTANOL -1 |
905 |
2,3- DIMETHYLPENTANOL -1 |
906 |
2,4- DIMETHYLPENTANOL -1 |
907 |
3,3- DIMETHYLPENTANOL -1 |
908 |
3,4- DIMETHYLPENTANOL -1 |
909 |
4,4- DIMETHYLPENTANOL -1 |
910 |
3- ETHYLPENTANOL -2 |
911 |
2,3- DIMETHYLPENTANOL -2 |
912 |
2,4- DIMETHYLPENTANOL -2 |
913 |
3,3- DIMETHYLPENTANOL -2 |
914 |
3,4- DIMETHYLPENTANOL -2 |
915 |
4,4- DIMETHYLPENTANOL -2 |
916 |
2- ETHYLPENTANOL -3 |
917 |
2,2- DIMETHYLPENTANOL -3 |
918 |
2,3- DIMETHYLPENTANOL -3 |
919 |
2,4- DIMETHYLPENTANOL -3 |
920 |
2- METHYL-2-ETHYLBUTANOL -1 |
921 |
3- METHYL-2-ETHYLBUTANOL-1 |
922 |
2,2,3- TRIMETHYLBUTANOL -1 |
923 |
2,3,3- TRIMETHYLBUTANOL -1 |
924 |
2,3,3- TRIMETHYLBUTANOL -2 |
925 |
OCTANOL -2 |
926 |
OCTANOL -3 |
927 |
OCTANOL -4 |
928 |
2- METHYLHEPTANOL-1 |
929 |
3- METHYLHEPTANOL-1 |
930 |
4- METHYLHEPTANOL-1 |
931 |
5- METHYLHEPTANOL -1 |
932 |
6- METHYLHEPTANOL-1 |
933 |
2- METHYLPENTANOL-2 |
934 |
3- METHYLHEPTANOL-2 |
935 |
4- METHYLHEPTANOL-2 |
936 |
5- METHYLHEPTANOL-2 |
937 |
6- METHYLHEPTANOL-2 |
938 |
2- METHYLHEPTANOL-3 |
939 |
3- METHYLHEPTANOL-3 |
940 |
4- METHYLHEPTANOL-3 |
941 |
5- METHYLHEPTANOL-3 |
942 |
2- METHYLHEPTANOL-4 |
943 |
3- METHYLHEPTANOL-4 |
944 |
4- METHYLHEPTANOL-4 |
945 |
2- ETHYLHEXANOL-1 |
946 |
2,2- DIMETHYLHEXANOL-1 |
947 |
2,5- DIMETHYLHEXANOL-1 |
948 |
3,5- DIMETHYLHEXANOL-1 |
949 |
2,3- DIMETHYLHEXANOL-2 |
950 |
2,4- DIMETHYLHEXANOL-2 |
951 |
2,5- DIMETHYLHEXANOL-2 |
952 |
3- ETHYLHEXANOL-3 |
953 |
4- ETHYLHEXANOL-3 |
954 |
2,2- DIMETHYLHEXANOL-3 |
955 |
2,3- DIMETHYLHEXANOL-3 |
956 |
2,5- DIMETHYLHEXANOL-3 |
957 |
3,4- DIMETHYLHEXANOL-3 |
958 |
3,5- DIMETHYLHEXANOL-3 |
959 |
4,4- DIMETHYLHEXANOL-3 |
960 |
4- METHYL-1-ETHYLPENTANOL-1 |
961 |
2,2,4- TRIMETHYLPENTANOL-1 |
962 |
2,3,4- TRIETHYLPENTANOL-1 |
963 |
2,4,4- TRIMETHYLPENTANOL-1 |
964 |
2- METHYL-3-ETHYLPENTANOL-2 |
965 |
2,3,3- TRIMETHYLPENTANOL-2 |
966 |
2,3,4- TRIMETHYLPENTANOL-2 |
967 |
2,4,4- TRIMETHYLPENTANOL-2 |
968 |
3,3,4- TRIMETHYLPENTANOL-2 |
969 |
3,4,4- TRIMETHYLPENTANOL-2 |
970 |
2- METHYL-3-ETHYLPENTANOL-3 |
971 |
2,2,3- TRIMETHYLPENTANOL-3 |
972 |
2,2,4- TRIMETHYLPENTANOL-3 |
973 |
2,3,4- TRIMETHYLPENTANOL-3 |
974 |
3- METHYL-2-ISOPROPYLBUTANOL-1 |
975 |
ETHER METHYLPROPYL |
976 |
ETHER METHYLISOPROPYL |
977 |
ETHER METHYLBUTYL |
978 |
ETHER METHYL-SEС-BUTYL |
979 |
ETHER METHYLISOBUTYL |
980 |
ETHER METHYL-TERT BUTYL |
981 |
ETHER ETHYLISOPROPYL |
982 |
ETHER METHYLPENTYL |
983 |
ETHER METHYL-1-METHYLBUTYL |
984 |
ETHER METHYL-2-METHYLBUTYL |
985 |
ETHER METHYL-3-METHYLBUTYL |
986 |
ETHER METHYL-1-ETHYLPROPYL |
987 |
ETHER METHYL-1,1-DIMETHYLPROPYL |
988 |
ETHER METHYL-2,2-DIMETHYLPROPYL |
989 |
ETHER ETHYLBUTYL |
990 |
ETHER ETHYL-SEС-BUTYL |
991 |
ETHER ETHYLISOBUTYL |
992 |
ETHER ETHYL-TERT-BUTYL |
993 |
ETHER DIPROPYL |
994 |
ETHER PROPYLISOPROPYL |
995 |
ETHER DIISOPROPYL |
996 |
ETHER DIBUTYL |
997 |
ETHER BUTYLISOBUTYL |
998 |
PROPANETHIOL-1 |
999 |
PROPANETHIOL-2 |
1000 |
BUTANETHIOL-2 |
1001 |
2- METHYLPROPANETHIOL-1 |
1002 |
2- METHYLPROPANETHIOL-2 |
1003 |
2- METHYLBUTANETHIOL-2 |
1004 |
HEXANETHIOL-1 |
1005 |
HEPTANETHIOL-1 |
1006 |
OCTANETHIOL-1 |
1007 |
NONANETHIOL-1 |
1008 |
DECANETHIOL-1 |
1009 |
UNDECANETHIOL-1 |
1010 |
DODECANETHIOL-1 |
1011 |
TRIDECANETHIOL-1 |
1012 |
TETRADECANETHIOL-1 |
1013 |
PENTADECANETHIOL-1 |
1014 |
HEXADECANETHIOL-1 |
1015 |
HEPTADECANETHIOL-1 |
1016 |
OCTADECANETHIOL-1 |
1017 |
NONADECANETHIOL-1 |
1018 |
EICOSANETHIOL-1 |
1019 |
METHYLBUTYLSULFIDE |
1020 |
METHYL-SEС-BUTYLSULPHIDE |
1021 |
METHYLISOBUTYLSULPHIDE |
1022 |
ISOPROPYLETHYLSULPHIDE |
1023 |
METHYL-TRET-ISOBUTYLSULPHIDE |
1024 |
METHYLPENTYLSULFIDE |
1025 |
METHYLHEXYLSULFIDE |
1026 |
METHYLHEPTYLSULFIDE |
1027 |
METHYLOСТYLSULFIDE |
1028 |
METHYLNONYLSULFIDE |
1029 |
METHYLDECYLSULFIDE |
1030 |
METHYLUNDECYLSULFIDE |
1031 |
METHYLDODECYLSULFIDE |
1032 |
METHYLTRIDECYLSULFIDE |
1033 |
METHYLTETRADECYLSULFIDE |
1034 |
DIALLYLSULFIDE |
1035 |
DIETHYLDISULFIDE |
1036 |
METHANAL (FОRМALDЕHYDE) |
1037 |
ETHANAL (ACETALDEHYDE) |
1038 |
PROPANAL (PROPIONALDEHYDE) |
1039 |
BUTANAL (BUTYRALDEHYDE) |
1040 |
PENTANAL (VALERALDEHYDE) |
1041 |
HEXANAL (САPROALDEHYDE) |
1042 |
HEPTANAL |
1043 |
OCTANAL |
1044 |
NONANAL |
1045 |
DECANAL |
1046 |
UNDECANAL |
1047 |
DODECANAL |
1048 |
TRIDECANAL |
1049 |
TETRADECANAL |
1050 |
PENTADECANAL |
1051 |
HEXADECANAL |
1052 |
HEXANONE-2 |
1053 |
HEXANONE-3 |
1054 |
3- METHYLPENTANONE-2 |
1055 |
4- METHYLPENTANONE-2 |
1056 |
2- METHYLPENTANONE-3 |
1057 |
3,3- DIMETHYLBUTANONE-2 |
1058 |
HEPTANONE-2 |
1059 |
OCTANONE-2 |
1060 |
NONANONE-2 |
1061 |
DECANONE-2 |
1062 |
KETENE |
1063 |
CYCLOHEXANONE |
1064 |
ACID METHANOIC |
1065 |
ACID -3-METHYLBUTANOIC |
1066 |
BUTYL METHANOATE |
1067 |
ISOBUTYL METHANOATE |
1068 |
SEС- BUTYL.METHANOATE |
1069 |
TRET- BUTYL.METHANOATE |
1070 |
PENTYL.METHANOATE |
1071 |
ISOPENTYL.METHANOATE |
1072 |
1,1- DIMETHYLPROPYL.METHANOATE |
1073 |
ISOPROPYL.ETHANOATE |
1074 |
BUTYL.ETHANOATE |
1075 |
ISOBUTYL.ETHANOATE |
1076 |
SEС- BUTYL.ETHANOATE |
1077 |
TRET- BUTYL.ETHANOATE |
1078 |
PENTYL.ETHANOATE |
1079 |
ISOPENTYL.ETHANOATE |
1080 |
PROPYL.PROPANOATE |
1081 |
BUTYL.PROPANOATE |
1082 |
ISOBUTYL.PROPANOATE |
1083 |
PENTYL.PROPANOATE |
1084 |
ISOPENTYL.PROPANOATE |
1085 |
ETHYL.BUTANOATE |
1086 |
ETHYL.ISOBUTANOATE |
1087 |
BUTYL.BUTANOATE |
1088 |
PROPYL.ISOBUTANOATE |
1089 |
ISOBUTYL.BUTANOATE |
1090 |
ISOBUTYL.ISOBUTANOATE |
1091 |
ISOPENTYL.BUTANOATE |
1092 |
METHYL.PENTANOATE |
1093 |
ETHYL.PENTANOATE |
1094 |
PROPYL.PENTANOATE |
1095 |
BUTYL.PENTANOATE |
1096 |
ETHYLAMINE |
1097 |
PROPYLAMINE |
1098 |
ISOPROPYLAMINE |
1099 |
BUTYLAMINE |
1100 |
SEС- BUTYLAMINE |
1101 |
ISOBUTYLAMINE |
1102 |
TRET- BUTYLAMINE |
1103 |
PENTYLAMINE |
1104 |
1- METHYLBUTYLAMINE |
1105 |
1- ETHYLPROPYLAMINE |
1106 |
2- METHYLBUTYLAMINE |
1107 |
3- METHYLBUTYLAMINE |
1108 |
1,1- DIMETHYLPROPYLAMINE |
1109 |
1,2- DIMETHYLPROPYLAMINE |
1110 |
2,2- DIMETHYLPROPYLAMINE |
1111 |
DIMETHYLAMINE |
1112 |
METHYLETHYLAMINE |
1113 |
METHYLPROPYLAMINE |
1114 |
METHYLBUTYLAMINE |
1115 |
METHYL-SEС-BUTYLAMINE |
1116 |
METHYLISOBUTYLAMINE |
1117 |
METHYL-TERT-BUTYLAMINE |
1118 |
ETHYLPROPYLAMINE |
1119 |
ETHYLISOPROPYLAMINE |
1120 |
DIPROPYLAMINE |
1121 |
DIMETHYLETHYLAMINE |
1122 |
DIMETHYLPROPYLAMINE |
1123 |
DIMETHYLISOPROPYLAMINE |
1124 |
METHYLDIETHYLAMINE |
1125 |
DIMETHYLBUTYLAMINE |
1126 |
DIMETHYL-SEС-BUTYLAMINE |
1127 |
DIMETHYLISOBUTYLAMINE |
1128 |
DIMETHYL-TERT-BUTYLAMINE |
1129 |
METHYLETHYLPROPYLAMINE |
1130 |
METHYLETHYLISOPROPYLAMINE |
1131 |
METHANENITRILE |
1132 |
ETHANENITRILE |
1133 |
PROPANENITRILE |
1134 |
BUTANENITRILE |
1135 |
2- METHYLPROPANENITRILE |
1136 |
PENTANENITRILE |
1137 |
2- METHYLBUTANONITRILE |
1138 |
3- METHYLBUTANENITRILE |
1139 |
2,2- DIMETHYLPROPANENITRILE |
1140 |
HEXANENITRILE |
1141 |
2- METHYLPENTANENITRILE |
1142 |
2- ETHYLBUTANONITRILE |
1143 |
3- METHYLPENTANONITRILE |
1144 |
4- METHYLPENTANENITRILE |
1145 |
2,2- DIMETHYLBUTANENITRILE |
1146 |
2,3- DIMETHYLBUTANENITRILE |
1147 |
3,3- DIMETHYLBUTANENITRILE |
1148 |
HEPTANENITRILE |
1149 |
NITROMETHANE |
1150 |
NITROETHANE |
1151 |
1- NITROPROPANE |
1152 |
2- NITROPROPANE |
1153 |
1- NITROBUTANE |
1154 |
2- NITROBUTANE |
1155 |
1- NITRO-2-METHYLPROPANE |
1156 |
2- NITRO-2-METHYLPROPANE |
1157 |
1- NITROPENTANE |
1158 |
2- NITROPENTANE |
1159 |
3- NITROPENTANE |
1160 |
1- NITRO-2-METHYLBUTANE |
1161 |
1- NITRO-3-METHYLBUTANE |
1162 |
2- NITRO-2-METHYLBUTANE |
1163 |
2- NITRO-3-METHYLBUTANE |
1164 |
1- NITRO-2,2-DIMETHYLPROPANE |
1165 |
ETHYLCYCLOPROPANE |
1166 |
1,1- DIMETHYLCYCLOPROPANE |
1167 |
1,CIS-2- DIMETHYLCYCLOPROPANE |
1168 |
1,TRANS-2- DIMETHYLCYCLOPROPANE |
1169 |
N- PROPYLCYCLOPROPANE |
1170 |
ISOPROPYLCYCLOPROPANE |
1171 |
1-METHYL-1- ETHYLCYCLOPROPANE |
1172 |
1-METHYL-CIS-2- ETHYLCYCLOPROPAN |
1173 |
1-METHYL-TRANS-2 ETHYLCYCLOPROPA |
1174 |
1,1,2- TRIMETHYLCYCLOPROPANE |
1175 |
1,CIS-2,TERT-3- TRIMETHYLCYCLOPR |
1176 |
1,CIS-2,CIS3- TRIMETHYLCYCLOPROP |
1177 |
METHYLCYCLOBUTANE |
1178 |
ETHYLCYCLOBUTANE |
1179 |
1,1- DIMETHYLCYCLOBUTANE |
1180 |
1,CIS-2- DIMETHYLCYCLOBUTANE |
1181 |
1,TRANS-2- DIMETHYLCYCLOBUTANE |
1182 |
1,CIS-3- DIMETHYLCYCLOBUTANE |
1183 |
1,TRANS-3- DIMETHYLCYCLOBUTANE |
1184 |
1- PENTYLCYCLOPENTANE |
1185 |
1- PENTYLCYCLOHEXANE |
1186 |
1- HEXYLCYCLOPENTANE |
1187 |
1- HEXYLCYCLOHEXANE |
1188 |
1- HEPTYLCYCLOHEXANE |
1189 |
1- OCTYLCYCLOHEXANE |
1190 |
1- NONYLCYCLOHEXANE |
1191 |
1- DECYLCYCLOHEXANE |
1192 |
1- UNDECYLCYCLOHEXANE |
1193 |
1- DODECYLCYCLOHEXANE |
1194 |
1- TRIDECYLCYCLOHEXANE |
1195 |
1- TETRADECYLCYCLOHEXANE |
1196 |
1- PENTADECYLCYCLOHEXANE |
1197 |
1- HEXADECYLHEXANE |
1198 |
HEXAMETHYLBENZENE |
1199 |
ISOPROPENYLBENZENE |
1200 |
CIS-1- PROPENYLBENZENE |
1201 |
TRANS-1- PROPENYLBENZENE |
1202 |
1- METHYL-2-ETHENYLBENZENE |
1203 |
1- METHYL-3-ETHENYLBENZENE |
1204 |
1- METHYL-4-ETHENYLBENZENE |
1205 |
O- ETHYLPHENOL |
1206 |
M- ETHYLPHENOL |
1207 |
P- ETHYLPHENOL |
1208 |
CIS- DECAHYDRONAPHTHALENE |
1209 |
1,6- DIMETHYLNAPHTHALENE |
1210 |
1,7- DIMETHYLNAPHTHALENE |
1211 |
2,3- DIMETHYNAPHTHALENE |
1212 |
2,6- DIMETHYLNAPHTHALENE |
1213 |
2,7- DIMETHYLNAPHTHALENE |
1214 |
1- PROPYLNAPHTHALENE |
1215 |
2- PROPYLNAPHTHALENE |
1216 |
2- ETHYL-3-METHYLNAPHTHALENE |
1217 |
2- ETHYL-6-METHYLNAPHTHALENE |
1218 |
2- ETHYL-7-METHYLNAPHTHALENE |
1219 |
1- BUTYLNAPHTHALENE |
1220 |
2- BUTYLNAPHTHALENE |
1221 |
DIPHENYL |
1222 |
O- TERPHENYL |
1223 |
M- TERPHENYL |
1224 |
P- TERPHENYL |
1225 |
ETHYLENE.OXIDE |
1226 |
PROPYLENE-OXIDE |
1227 |
FURAN |
1228 |
1,4- DIOXANE |
1229 |
TETRAHYDROFURAN |
1230 |
ETHER VINYLETHYL |
1231 |
2- METHYLTETRAHYDROFURAN |
1232 |
2- METHYLFURAN |
1233 |
PYRROLE |
1234 |
PIPERIDINE |
1235 |
2,3- DIMETHYLPYRIDINE |
1236 |
2,4- DIMETHYLPYRIDINE |
1237 |
2,5- DIMETHYLPYRIDINE |
1238 |
2,6- DIMETHYLPYRIDINE |
1239 |
3,4- DIMETHYLPYRIDINE |
1240 |
3,5- DIMETHYLPYRIDINE |
1241 |
QUINOLINE |
1242 |
ISOQUINOLINE |
1243 |
METHYLHYDRASINE |
1244 |
ACID TRIFLUOROACETIC |
1245 |
ACETYLCHLORIDE |
1246 |
PERFLUOROACETОNE |
1247 |
ACRYLONITRILE |
1248 |
3- CHLORO-1,2-EPOXYPROPANE |
1249 |
1,3- DICHLOROPROPANOL-2 |
1250 |
2,3- DICHLOROPROPANOL -1 |
1251 |
DIMETHOXYMETHANE |
1252 |
1,2- DIMETHOXYETHANE |
1253 |
2,4,6,- TRIMETHYL-SEС-TRIOXANE |
1254 |
ANILINE |
1255 |
CYCLOHEXANOL |
1256 |
1,1- DIETHOXYETHANE |
1257 |
BENZONITRILE |
1258 |
BENZALDEHYDE |
1259 |
МЕТOXYBENZENE |
1260 |
ETHOXYBENZENE |
1261 |
DICHLOROETHYNE |
1262 |
HEXACHLOROPROPENE |
1263 |
OCTACHLOROPROPANE |
1264 |
1,1,2,3,3- PENTACHLOROPROPENE |
1265 |
1,2,3,3,3- PENTACHLOROPROPENE |
1266 |
1,1,1,2,2,3,3- HEPTACHLOROPROPAN |
1267 |
1,1,1,2,3,3,3- HEPTACHLOROPROPAN |
1268 |
1,1,2,3- TETRACHLOROPROPENE |
1269 |
TRANS-1,2,3,3- TETRACHLOROPROPEN |
1270 |
1,1,1,2,2,3- HEXACHLOROPROPANE |
1271 |
CIS-1,2,3,3- TETRACHLOROPROPENE |
1272 |
1,1,1,2,3,3- HEXACHLOROPROPANE |
1273 |
1,1,1,3,3,3- HEXACHLOROPROPANE |
1274 |
1,1,2,2,3,3- HEXACHLOROPROPANE |
1275 |
1,1,2- TRICHLOROPROPENE |
1276 |
1,1,3- TRICHLOROPROPENE |
1277 |
1,2,3- TRICHLOROPROPENE |
1278 |
3,3,3- TRICHLOROPROPENE |
1279 |
1,1,2,2,3- PENTACHLOROPROPANE |
1280 |
3- CHLOROPROPYNE |
1281 |
1,1- DICHLOROPROPENE |
1282 |
CIS-1,2- DICHLOROPROPENE |
1283 |
3,3- DICHLOROPROPENE |
1284 |
1,1,1,3- TETRACHLOROPROPANE |
1285 |
1,1,2,2- TETRACHLOROPROPANE |
1286 |
1,1,2,3- TETRACHLOROPROPANE |
1287 |
1,2,2,3- TETRACHLOROPROPANE |
1288 |
1,1,1- TRICHLOROPROPANE |
1289 |
2,3- DICHLOROBUTENE-1 |
1290 |
1,1,2- TRICHLOROPROPANE |
1291 |
1,1,3- TRICHLOROPROPANE |
1292 |
1,2,2- TRICHLOROPROPANE |
1293 |
1,2- DICHLOROBUTENE-2 |
1294 |
1,2,3,4-ТЕТРАCHLOROBUTADIENE-1,3 |
1295 |
HEXACHLOROBUTADIENE-1,3 |
1296 |
1,4- DICHLOROBUTYNE-2 |
1297 |
2,3- DICHLOROBUTADIENE-1,3 |
1298 |
1- CHLOROBUTYNE-2 |
1299 |
4- CHLOROBUTADIENE-1,2 |
1300 |
1- CHLOROBUTADIENE-1,3 |
1301 |
1,1,3- TRICHLOR-2-METHYLPROPENE |
1302 |
3,3,3- TRICHLORO-2-METHYLPROPENE |
1303 |
1,1,2,3,4- PENTACHLOROBUTANE |
1304 |
1,3- DICHLOROBUTENE-1 |
1305 |
3,4- DICHLOROBUTENE-1 |
1306 |
1,1- DICHLOROBUTENE-2 |
1307 |
1,2- DICHLOROBUTENE-2 |
1308 |
1,1- DICHLORO-2-METHYLPROPENE |
1309 |
1,3- DICHLORO-2-METHYLPROPENE |
1310 |
3,3- DICHLORO-2-METHYLPROPENE |
1311 |
3- CHLORO-2-CHLOROMETHYLPROPENE |
1312 |
1,2,2,3- TETRACHLOROBUTANE |
1313 |
1,1,2,3-TETRACHLOR-2-METHYLPROP |
1314 |
1,2,3-TRICHLORO-2-CHLORMETHYLPR |
1315 |
CIS-1- CHLOROBUTENE-1 |
1316 |
TRANS-1- CHLOROBUTENE-1 |
1317 |
2- CHLOROBUTENE-1 |
1318 |
3- CHLOROBUTENE-1 |
1319 |
CIS-1- CHLOROBUTENE-2 |
1320 |
TRANS- CHLOROBUTENE-2 |
1321 |
CIS-2- CHLOROBUTENE-2 |
1322 |
TRANS-2- CHLOROBUTENE-2 |
1323 |
1- CHLORO-2-METHYLPROPENE |
1324 |
3- CHLORO-2-METHYLPROPENE-1 |
1325 |
1,2,3- TRICHLOROBUTANE |
1326 |
2,2,3- TRICHLOROBUTANE |
1327 |
1,1,2- TRICHLORO-2-METHYLPROPANE |
1328 |
1,2,3- TRICHLORO-2-METHYLPROPANE |
1329 |
1,1,2,3,3- PENTACHLOROPROPANE |
1330 |
TRANS-1,2- DICHLOROPROPENE |
1331 |
DICHLOROBUTADIENE-1,3 |
1332 |
DICHLOROACETIC ACID |
1333 |
PHOSGENE |
1334 |
2- CHLORLETHANOL |
1335 |
1- CHLORO-1-METHOXYMETHANE |
1336 |
CHLOROACETIC ACID |
1337 |
ACETYL CHLORIDE |
1338 |
TRICHLOROACETAL DЕHYDE |
1339 |
TRICHLOROACETIC ACID |
1340 |
1- CHLOROPROPANOL-2 |
1341 |
GLYCEROL |
1342 |
2,2,- DICHLOROPROPANOIC ACID |
1343 |
HEXACHLOROACETОN |
1344 |
1,1,3- TRICHLOROACETОN |
1345 |
3-CHLORO-2-METHYLPROPENE-1 |
1346 |
HEXACHLOROCYCLOPENTADIENE |
1347 |
3,4- DICHLORONITROBENZENE |
1348 |
1,2,4- TRICHLOROBENZENE |
1349 |
DICHLORODIMETHYL ETHER |
1350 |
1,1- DICHLORODIMETHYL ETHER |
1351 |
ОIL-SАМОТLOR,FR.220-230 |
1352 |
ОIL-SАМОТLOR,FR.230-240 |
1353 |
TRICHLOROACETALDЕHYDE HYDRAТE |
1354 |
ETHYLMONOCHLOROACETAT |
1355 |
ETHYL DICHLOROACETAT |
1356 |
2- CHLOROPROPENE-3-OL-1 |
1357 |
3- СLOROPROPANE DIOL-1,2 |
1358 |
BIS(1,3-DICHLOROISOPROPYL)ETHER |
1359 |
1,2- DICHLORPROP-1,3-DIСНISOPRO |
1360 |
BIS(1,2-DICHLOROPROPYL) ETHER |
1361 |
2- CHLOROPROPANOIC ACID |
1362 |
3- CHLOROPROPANOIC ACID |
1363 |
1,1- DICHLOROBUTANE |
1364 |
1,2- DICHLOROBUTANE |
1365 |
1,3- DICHLOROBUTANE |
1366 |
1,4- DICHLOROBUTANE |
1367 |
2,2- DICHLOROBUTANE |
1368 |
2,3- DICHLOROBUTANE |
1369 |
CIS-1,3- DICHLOROBUTENE-2 |
1370 |
TRANS-1,3- DICHLOROBUTENE-2 |
1371 |
CIS-1,4- DICHLOROBUTENE-2 |
1372 |
TRANS-1,4- DICHLOROBUTENE-2 |
1373 |
CIS-2,3- DICHLOROBUTENE-2 |
1374 |
TRANS-2,3- DICHLOROBUTENE-2 |
1375 |
1,2- DICHLOROBUTADIENE-1,3 |
1376 |
1,1,1,2- TETRACHLOROBUTANE |
1377 |
1,2,2,3- TETRACHLOROBUTANE |
1378 |
1,2,3,3- TETRACHLOROBUTANE |
1379 |
OCTACHLOROCYCLOPENTENE |
1380 |
2- CHLORONAPHTHALENE |
1381 |
1,2,3- TRICHLOROBENZENE |
1382 |
1,2,4,5- TETRACHLOROBENZENE |
1383 |
М- CHLOROTOLUENE |
1384 |
Р- CHLOROTOLUENE |
1385 |
CHLOROANHIDRIDEBENZOIC ACID |
1386 |
CHLOROANHIDRIDE-CHLOROBENZOIC |
1387 |
CHLOROANHIDRIDE M-CHLOROBENZOIC |
1388 |
CHLOROANIDRIDE P-CHLOROBENZOIC |
1389 |
BENZOIC ACID |
1390 |
DICHLOROMETHILBENZENE |
1391 |
2- CHLORO-1-CHLOROMETHYLBENZENE |
1392 |
3- CHLORO-1-CHLOROMETHYLBENZENE |
1393 |
4- CHLORO-1-CHLOROMETHYLBENZENE |
1394 |
TRICHLOROMETHILBENZENE |
1395 |
2- CHLORO-1-DICHLOROMETHYLBENZ. |
1396 |
3- CHLORO-1-DICHLOROMETHYLBENZ. |
1397 |
4- CHLORO-1-DICHLOROMETHYLBENZ. |
1398 |
2- CHLORO-1-TRICHLOROMETHYLBENZ. |
1399 |
3- CHLORO-1-TRICHLOROMETHYLBENZ. |
1400 |
4- CHLORO-1-TRICHLOROMETHYLBENZ. |
1401 |
2- METHYL-1-CHLOROMETHYLBENZENE |
1402 |
3- METHYL-1-CHLOROMETHYLBENZENE |
1403 |
4- METHYL-1-CHLOROMETHYLBENZENE |
1404 |
1,2- BIS(CHLOROMETHYL)BENZENE |
1405 |
1,3- BIS(CHLOROMETHYL)BENZENE |
1406 |
PHTHALIC ANHYDRIDE |
1407 |
ISOPHTHALOYL CHLORIDE |
1408 |
P- PHTHALOYL CHLORIDE |
1409 |
P- TRICHLOROBENZOILE CHLORIDE |
1410 |
HEXACHLORO-M-XYLENE |
1411 |
HEXACHLORO-P-XYLENE |
1412 |
1- CHLORONAPHTHALENE |
1413 |
OIL-MANGYSHLAK,FR.150-160 |
1414 |
OIL-MANGYSHLAK,FR.160-170 |
1415 |
OIL-MANGYSHLAK,FR.170-180 |
1416 |
OIL-MANGYSHLAK,FR.180-190 |
1417 |
OIL-MANGYSHLAK,FR.190-200 |
1418 |
OIL-MANGYSHLAK,FR.200-210 |
1419 |
OIL-MANGYSHLAK,FR.210-220 |
1420 |
OIL-MANGYSHLAK,FR.220-230 |
1421 |
OIL-MANGYSHLAK,FR.230-240 |
1422 |
OIL-MANGYSHLAK,FR.240-250 |
1423 |
OIL-MANGYSHLAK,FR.250-260 |
1424 |
OIL-MANGYSHLAK,FR.260-270 |
1425 |
OIL-MANGYSHLAK,FR.270-280 |
1426 |
OIL-MANGYSHLAK,FR.280-290 |
1427 |
OIL-MANGYSHLAK,FR.290-300 |
1428 |
OIL-MANGYSHLAK,FR.300-310 |
1429 |
OIL-MANGYSHLAK,FR.310-320 |
1430 |
OIL-MANGYSHLAK,FR.320-330 |
1431 |
OIL-MANGYSHLAK,FR.330-340 |
1432 |
OIL-MANGYSHLAK,FR.340-350 |
1433 |
OIL-MANGYSHLAK,FR.350-360 |
1434 |
OIL-MANGYSHLAK,FR.360-370 |
1435 |
OIL-MANGYSHLAK,FR.370-380 |
1436 |
OIL-MANGYSHLAK,FR.380-390 |
1437 |
OIL-MANGYSHLAK,FR.390-400 |
1438 |
OIL-MANGYSHLAK,FR.400-410 |
1439 |
OIL-MANGYSHLAK,FR.410-420 |
1440 |
OIL-MANGYSHLAK,FR.420-430 |
1441 |
OIL-MANGYSHLAK,FR.430-440 |
1442 |
OIL-MANGYSHLAK,FR.440-450 |
1443 |
OIL-MANGYSHLAK,FR.450-460 |
1444 |
OIL-MANGYSHLAK,FR.460-470 |
1445 |
OIL-MANGYSHLAK,FR.470-480 |
1446 |
OIL-MANGYSHLAK,FR.480-490 |
1447 |
OIL-MANGYSHLAK,FR.490-500 |
1448 |
OIL-MANGYSHLAK,FR.28-62 |
1449 |
OIL-MANGYSHLAK,FR.28-70 |
1450 |
OIL-MANGYSHLAK,FR.62-85 |
1451 |
OIL-MANGYSHLAK,FR.70-85 |
1452 |
OIL-MANGYSHLAK,FR.85-105 |
1453 |
OIL-MANGYSHLAK,FR.85-120 |
1454 |
OIL-MANGYSHLAK,FR.85-180 |
1455 |
OIL-MANGYSHLAK,FR.105-140 |
1456 |
OIL-MANGYSHLAK,FR.105-180 |
1457 |
OIL-MANGYSHLAK,FR.120-140 |
1458 |
OIL-MANGYSHLAK,FR.140-180 |
1459 |
OIL-MANGYSHLAK,FR.180-230 |
1460 |
OIL-MANGYSHLAK,FR.180-240 |
1461 |
OIL-MANGYSHLAK,FR.240-300 |
1462 |
OIL-MANGYSHLAK,FR.240-320 |
1463 |
OIL-MANGYSHLAK,FR.240-350 |
1464 |
OIL-MANGYSHLAK,FR.300-400 |
1465 |
OIL-MANGYSHLAK,FR.350-500 |
1466 |
OIL-MANGYSHLAK,FR.400-490 |
1467 |
OIL-MANGYSHLAK,FR.350-400 |
1468 |
OIL-MANGYSHLAK,FR.400-450 |
1469 |
OIL-MANGYSHLAK,FR.450-500 |
1470 |
OIL-ROMASHKIN,FR.30-40 |
1471 |
OIL-ROMASHKIN,FR.40-50 |
1472 |
OIL-ROMASHKIN,FR.50-60 |
1473 |
OIL-ROMASHKIN,FR.60-70 |
1474 |
OIL-ROMASHKIN,FR.70-80 |
1475 |
OIL-ROMASHKIN,FR.80-90 |
1476 |
OIL-ROMASHKIN,FR.90-100 |
1477 |
OIL-ROMASHKIN,FR.100-110 |
1478 |
OIL-ROMASHKIN,FR.110-120 |
1479 |
OIL-ROMASHKIN,FR.120-130 |
1480 |
OIL-ROMASHKIN,FR.130-140 |
1481 |
OIL-ROMASHKIN,FR.140-150 |
1482 |
OIL-ROMASHKIN,FR.150-160 |
1483 |
OIL-ROMASHKIN,FR.160-170 |
1484 |
OIL-ROMASHKIN,FR.170-180 |
1485 |
OIL-ROMASHKIN,FR.180-190 |
1486 |
OIL-ROMASHKIN,FR.190-200 |
1487 |
OIL-ROMASHKIN,FR.200-210 |
1488 |
OIL-ROMASHKIN,FR.210-220 |
1489 |
OIL-ROMASHKIN,FR.220-230 |
1490 |
OIL-ROMASHKIN,FR.230-240 |
1491 |
OIL-ROMASHKIN,FR.240-250 |
1492 |
OIL-ROMASHKIN,FR.250-260 |
1493 |
OIL-ROMASHKIN,FR.260-270 |
1494 |
OIL-ROMASHKIN,FR.270-280 |
1495 |
OIL-ROMASHKIN,FR.280-290 |
1496 |
OIL-ROMASHKIN,FR.290-300 |
1497 |
OIL-ROMASHKIN,FR.300-310 |
1498 |
OIL-ROMASHKIN,FR.310-320 |
1499 |
OIL-ROMASHKIN,FR.320-330 |
1500 |
OIL-ROMASHKIN,FR.330-340 |
1501 |
OIL-ROMASHKIN,FR.340-350 |
1502 |
OIL-ROMASHKIN,FR.350-360 |
1503 |
OIL-ROMASHKIN,FR.360-370 |
1504 |
OIL-ROMASHKIN,FR.370-380 |
1505 |
OIL-ROMASHKIN,FR.380-390 |
1506 |
OIL-ROMASHKIN,FR.390-400 |
1507 |
OIL-ROMASHKIN,FR.400-410 |
1508 |
OIL-ROMASHKIN,FR.410-420 |
1509 |
OIL-ROMASHKIN,FR.420-430 |
1510 |
OIL-ROMASHKIN,FR.430-440 |
1511 |
OIL-ROMASHKIN,FR.440-450 |
1512 |
OIL-ROMASHKIN,FR.450-460 |
1513 |
OIL-ROMASHKIN,FR.460-470 |
1514 |
OIL-ROMASHKIN,FR.470-480 |
1515 |
OIL-ROMASHKIN,FR.480-490 |
1516 |
OIL-ROMASHKIN,FR.490-500 |
1517 |
OIL-ROMASHKIN,FR.28-62 |
1518 |
OIL-ROMASHKIN,FR.28-70 |
1519 |
OIL-ROMASHKIN,FR.62-85 |
1520 |
OIL-ROMASHKIN,FR.70-85 |
1521 |
OIL-ROMASHKIN,FR.85-105 |
1522 |
OIL-ROMASHKIN,FR.85-120 |
1523 |
OIL-ROMASHKIN,FR.85-180 |
1524 |
OIL-ROMASHKIN,FR.105-140 |
1525 |
OIL-ROMASHKIN,FR.105-180 |
1526 |
OIL-ROMASHKIN,FR.120-140 |
1527 |
OIL-ROMASHKIN,FR.140-180 |
1528 |
OIL-ROMASHKIN,FR.180-230 |
1529 |
OIL-ROMASHKIN,FR.180-240 |
1530 |
OIL-ROMASHKIN,FR.240-300 |
1531 |
OIL-ROMASHKIN,FR.240-320 |
1532 |
OIL-ROMASHKIN,FR.240-350 |
1533 |
OIL-ROMASHKIN,FR.300-400 |
1534 |
OIL-ROMASHKIN,FR.350-400 |
1535 |
OIL-ROMASHKIN,FR.400-450 |
1536 |
OIL-ROMASHKIN,FR.450-500 |
1537 |
AIR |
1538 |
CARBONYL SULFIDE |
1539 |
DIETHYLENEDIAMINE |
1540 |
DIALLYL AMINE |
1541 |
TRIBUTYL AMINE |
1542 |
ETHYLENE GLYCOL |
1543 |
DIBUTYL AMINE |
1544 |
ALLYL AMINE |
1545 |
GАMMA- BUTYROLACTONE |
1546 |
ETHER METHYLMONOIDETHYL |
1547 |
N- MONOIODOPENTAFLUROETHANE |
1548 |
N- MONOIODOTRIFLUOROMETHANE |
1549 |
N- MONOIODOHEPTAFLUOROPROPANE |
1550 |
ISO- MONOIODOHEPTAFLUOROPROPANE |
1551 |
DIETHYLENEYLYСOL |
1552 |
N- METHYLPRROLIDE |
1553 |
DIMETHYLACETАМIDE |
1554 |
DIETHANOLAMIN |
1555 |
2-ETHYLHEXANAL |
1556 |
FURFUROL |
1557 |
ISOBUTYLALDЕHYDE |
1558 |
DIMETHYLFОRMAMIDE |
1559 |
ETHANOLAMIN |
1560 |
SULPHUR MONOCHLORIDE |
1561 |
OIL-U-20А |
1562 |
ETHYLBUTYLSULPHIDE |
1563 |
OIL,FR.263-300 |
1564 |
FURFUROL.ALCONOL |
1565 |
SULVANE |
1566 |
FURONITRIL |
1567 |
FURAN САRBOXYLIC АCID |
1568 |
2,3- DINYDROPURANE |
1569 |
DIPROPYL KETONE |
1570 |
OIL,FR.263-300 |
1571 |
OIL,FR.300-330 |
1572 |
OIL,FR.330-360 |
1573 |
OIL,FR.360-390 |
1574 |
OIL,FR.390-420 |
1575 |
OIL,FR.420-450 |
1576 |
OIL,FR.450-480 |
1577 |
OIL,FR.480-510 |
1578 |
OIL,FR.174-210 |
1579 |
OIL,FR.210-240 |
1580 |
OIL,FR.240-270 |
1581 |
OIL,FR.270-300 |
1582 |
OIL,FR.450-490 |
1583 |
OIL,FR.50-80 |
1584 |
OIL,FR.80-110 |
1585 |
OIL,FR.110-140 |
1586 |
OIL,FR.140-170 |
1587 |
OIL,FR.170-200 |
1588 |
OIL,FR.200-230 |
1589 |
OIL,FR.230-260 |
1590 |
OIL,FR.260-290 |
1591 |
OIL,FR.290-320 |
1592 |
OIL,FR.320-350 |
1593 |
OIL,FR.350-380 |
1594 |
OIL,FR.380-410 |
1595 |
OIL,FR.410-440 |
1596 |
OIL,FR.440-470 |
1597 |
OIL,FR.470-510 |
1598 |
GASOLINE, VAPORABILITY-CL.5 |
1599 |
GASILINE, VAPORABILITY-CL.4 |
1600 |
GASOLINE, VAPORABILITY-CL.3 |
1601 |
GASOLINE, VAPORABILITY-CL.2 |
1602 |
GASOLINE, VAPORABILITY-CL.1 |
1603 |
DIESEL FUEL (FOR SUMMER) |
1604 |
DIESEL FUEL (FOR WINTER) |
1605 |
JET FUEL |
1606 |
DIESEL FUEL (ARCTIC) |
When using the STARS library the parameters of oils and oil products are defined by TBP-curve distillation or ASTM D86 (Engler) distillation.
Mazut M40
Mazut M100
Mazut F5
Mazut F12