Tetrachloroethylene


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  • Tetrachloroethylene
  • 127-18-4
  • C2Cl4
  • 165.834
  • colourless liquid with ether-like odour
Inquiry

Manufacturer Sells Best Quality Tetrachloroethylene 127-18-4 with stock

  • Molecular Formula:C2Cl4
  • Molecular Weight:165.834
  • Appearance/Colour:colourless liquid with ether-like odour 
  • Vapor Pressure:19.3mmHg at 25°C 
  • Melting Point:-22 °C 
  • Refractive Index:1.519 
  • Boiling Point:119.1 °C at 760 mmHg 
  • Flash Point:27.4 °C 
  • PSA:0.00000 
  • Density:1.653 g/cm3 
  • LogP:3.06820 

127-18-4 Relevant articles

A novel method of CCl4 disposal by disproportionation with CH4 over Pt on various supports

Bae, Jong Wook,Lee, Jae Sung,Lee, Kyung Hee,Lee, Byeongno,Yang, Duck Joo

, p. 264 - 265 (2001)

In disproportionation of CCl4 with CH4 i...

Mechanistic modeling of the wall reactions in the pyrolysis of pentachloroethane

Huybrechts,Daniels,Van Assche,Van Mele

, p. 322 - 330 (2002)

The thermal dehydrochlorination C2HCl5 →...

Influence of amine buffers on carbon tetrachloride reductive dechlorination by the iron oxide magnetite

Danielsen, Karlin M.,Gland, John L.,Hayes, Kim F.

, p. 756 - 763 (2005)

The influence of amine buffers on carbon...

Novel photocatalytic mechanisms for CHCl3, CHBr3, and CCl3CO2 degradation and the fate of photogenerated trihalomethyl radicals on TiO2

Choi, Wonyong,Hoffmann, Michael R.

, p. 89 - 95 (1997)

The photocatalytic degradation of CHCl3,...

Dynamic behaviour of chlorofluoroethanes at fluorinated chromia aerogels and fluorinated zinc(II) or magnesium(II) doped chromia aerogels

Bozorgzadeh, Hamid,Kemnitz, Erhard,Nickkho-Amiry, Mahmood,Skapin, Toma?,Winfield, John M.

, p. 83 - 92 (2003)

The preparation and characterisation of ...

Generation of radical species in surface reactions of chlorohydrocarbons and chlorocarbons with fluorinated gallium(III) oxide or indium(III) oxide

Thomson

, p. 1881 - 1885 (1998)

The reactions of C1 and C2 chlorohydroca...

Chlorination and dehydrochlorination reactions relevant to the manufacture of trichloroethene and tetrachloroethene: Part 1. Reaction pathways

Sutherland, Iain W.,Hamilton, Neil G.,Dudman, Christopher C.,Jones, Peter,Lennon, David,Winfield, John M.

, p. 1 - 11 (2011)

Factors which affect the selectivity of ...

Hydrodechlorination of Tetrachloromethane over Supported Pt Catalysts

Kim, Sang Y.,Choi, Hyun C.,Yanga, O B.,Lee, Kyung H.,Lee, Jae S.,Kim, Young G.

, p. 2169 - 2170 (1995)

In the selective hydrodechlorination of ...

The pyrolysis of CCl4 and C2Cl6 in the gas phase. Mechanistic modeling by thermodynamic and kinetic parameter estimation

Huybrechts,Narmon,Van Mele

, p. 27 - 36 (1996)

A detailed radical reaction mechanism is...

A homoleptic tetravalent cerium silylamide

Crozier, Alan R.,Bienfait, Andre M.,Maichle-Moessmer, Caecilia,Toernroos, Karl W.,Anwander, Reiner

, p. 87 - 89 (2013)

Treatment of Ce[N(SiHMe2)2]3(thf) 2 with...

Activation of Chemical Reaction by Impact of Molecules on a Surface

Connolly, M. S.,Greene, E. F.,Gupta, C.,Marzuk, P.,Morton, T. H.,et al.

, p. 235 - 240 (1981)

Molecules of C2Cl6, Cl3CCHCl2, CCl4, and...

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Boeeseken,Schimmel

, p. 112,125 (1913)

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Dichloroketen; Gas Phase Preparation and Characterisation by Photoelectron Spectroscopy

Colbourne, David,Frost, David C.,McDowell, Charles A.,Westwood, Nicholas P. C.

, p. 250 - 251 (1980)

Dechlorination of trichloroacetyl chlori...

Effects of AgI, AuIII, and CuII on the reductive dechlorination of carbon tetrachloride by green rust

O'Loughlin, Edward J.,Kemner, Kenneth M.,Burris, David R.

, p. 2905 - 2912 (2003)

Green rusts (GRs), mixed iron(II)/iron(I...

Chlorination reactions relevant to the manufacture of trichloroethene and tetrachloroethene; Part 2: Effects of chlorine supply

Sutherland, Iain W.,Hamilton, Neil G.,Dudman, Christopher C.,Jones, Peter,Lennon, David,Winfield, John M.

, p. 149 - 156 (2014)

The behaviour of 1,1,2,2-tetrachloroetha...

MULTIPHOTON IONIZATION OF CHLOROMETHANES WITH 193-NM EXCIMER LASER RADIATION IN ARGON MATRICES

Machara, Nicholas P.,Ault, Bruce S.

, p. 1908 - 1913 (1989)

The 193-nm output of an excimer laser ha...

Conversion of 1,1,2-trichlorotrifluoroethane to 1,1,1-trichlorotrifluoroethane and 1,1-dichlorotetrafluoroethane over aluminium-based catalysts

Bozorgzadeh,Kemnitz,Nickkho-Amiry,Skapin,Winfield

, p. 45 - 52 (2001)

Conversion of CCl2FCClF2 to CCl2FCF3 is ...

Experimental study on the thermal oxidation of 1,3-hexachlorobutadiene at 500-1100°C

Baillet,Fadli,Sawerysyn

, p. 1261 - 1273 (1996)

Thermal degradation processes of 1,3-hex...

Metal-mediated chlorinated dibenzo-p-dioxin (CDD) and dibenzofuran (CDF) formation from phenols

Ryu, Jae-Yong,Mulholland, James A.

, p. 977 - 988 (2005)

Heterogeneous formation of chlorinated d...

-

West,Schmerling

, p. 3525 (1950)

-

Reductive dechlorination of carbon tetrachloride in aqueous solutions containing ferrous and copper ions

Maithreepala,Doong, Ruey-An

, p. 6676 - 6684 (2004)

Fe(II) associated with iron-containing m...

Transformation of chlorinated aliphatic compounds by ferruginous smectite

Cervini-Silva,Larson,Wu,Stucki

, p. 805 - 809 (2001)

A series of chlorinated aliphatic compou...

Kinetics and mechanism of the enhanced reductive degradation of CCl4 by elemental iron in the presence of ultrasound

Hung, Hui-Ming,Hoffmann, Michael R.

, p. 3011 - 3016 (1998)

Enhanced rates of sonolytic degradation ...

-

Weiser,Wightman

, p. 415 (1919)

-

Infrared Multiphoton Decomposition and the Possibilities of Laser-Based Heavy Water Processes

Ivanco, Michael,Evans, D. K.,McAlpine, Robert D.,McRae, Glenn A.,Yamashita, Brian

, p. 635 - 642 (1990)

The selective multiphoton decomposition ...

Kinetics and mechanism of the sonolytic degradation of CCL4: Intermediates and byproducts

Hua, Inez,Hoffmann, Michael R.

, p. 864 - 871 (1996)

The sonolytic degradation of aqueous car...

Reactions in low temperature solid co-condensates and size effects

Sergeev, Gleb B.

, p. 85 - 92 (2005)

The interaction of magnesium atoms, clus...

-

Carpenter,W.

, p. 3082 - 3084 (1965)

-

Kinetics of the reduction of hexachloroethane by juglone in solutions containing hydrogen sulfide

Perlinger, Judith A.,Angst, Werner,Schwarzenbach, Rene P.

, p. 3408 - 3417 (1996)

Hexachloroethane was converted to tetrac...

-

McBee,Hass,Pierson

, p. 181,185 (1941)

-

-

Emeleus,Payne

, p. 1590,1592 (1947)

-

Kinetics and Thermochemistry of the Cl(2PJ) + C2Cl4 Association Reaction

Nicovich, J. M.,Wang, S.,McKee, M. L.,Wine, P. H.

, p. 680 - 688 (1996)

A laser flash photolysis-resonance fluor...

-

McBee,Hatton

, p. 809 (1949)

-

Natural organic matter as reductant for chlorinated aliphatic pollutants

Kappler, Andreas,Haderlein, Stefan B.

, p. 2714 - 2719 (2003)

Humic acids (HA) are ubiquitous redox-ac...

Role of copper species in chlorination and condensation reactions of acetylene

Wehrmeier, Andreas,Lenoir, Dieter,Sidhu, Sukh S.,Taylor, Philip H.,Rubey, Wayne A.,Kettrup, Antonious,Dellinger, Barry

, p. 2741 - 2748 (1998)

We examined the thermally induced acetyl...

Reductive dehalogenation of hexachloroethane, carbon tetrachloride, and bromoform by anthrahydroquinone disulfonate and humic acid

Curtis,Reinhard

, p. 2393 - 2401 (1994)

The reductive dehalogenation of hexachlo...

Kinetics of the transformation of halogenated aliphatic compounds by iron sulfide

Hayes,Butler

, p. 422 - 429 (2000)

The transformation of nine halogenated a...

Pyrolysis of hexachloroethane in the gas phase: computer aided kinetic study

Huybrechts,Theys,Van Mele

, p. 755 - 761 (1996)

The pyrolysis of C2Cl6 has been studied ...

TRANSFORMATION OF CARBON TETRACHLORIDE ON MEMBRANE CATALYSTS

Mishchenko, A. P.,Senina, E. V.

, p. 1541 - 1542 (1987)

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Benkeser,R.A.,Smith,W.E.

, p. 5307 - 5309 (1968)

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Three-dimensionally ordered macroporous Cr2O3?CeO2: High-performance catalysts for the oxidative removal of trichloroethylene

Zhang, Xing,Liu, Yuxi,Deng, Jiguang,Zhao, Xingtian,Zhang, Kunfeng,Yang, Jun,Han, Zhuo,Jiang, Xiyun,Dai, Hongxing

, p. 200 - 209 (2019/02/14)

Three-dimensionally ordered macroporous ...

Method for eliminating hydrogen chloride by catalytic cracking of chloralkane

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Paragraph 0106-0111, (2020/08/06)

The invention discloses a method for eli...

METHOD OF PRODUCING VINYL CHLORIDE

-

Paragraph 0031; 0038; 0039, (2020/01/27)

A method of producing vinyl chloride is ...

Rational design of CrOx/LaSrMnCoO6 composite catalysts with superior chlorine tolerance and stability for 1,2-dichloroethane deep destruction

Tian, Mingjiao,Jian, Yanfei,Ma, Mudi,He, Chi,Chen, Changwei,Liu, Chao,Shi, Jian-Wen

, p. 62 - 72 (2018/11/24)

1,2-dichloroethane (1,2-DCE) is a repres...

127-18-4 Process route

tetrachloromethane
56-23-5

tetrachloromethane

1,1,2,2-tetrachloroethylene
127-18-4

1,1,2,2-tetrachloroethylene

tetrachlorosilane
10026-04-7,53609-55-5

tetrachlorosilane

1,2-bis-(trichlorosilyl)acetylene
18038-55-6

1,2-bis-(trichlorosilyl)acetylene

Conditions
Conditions Yield
at 210 - 410 ℃; Pr.5:1,2-Dichlor-1,2-bis-trichlorsilyl-aethylen; Pr.6:Tetrakis-trichlorsilyl-methan;
tetrachloromethane
56-23-5

tetrachloromethane

silicon
7440-21-3

silicon

1,1,2,2-tetrachloroethylene
127-18-4

1,1,2,2-tetrachloroethylene

tetrachlorosilane
10026-04-7,53609-55-5

tetrachlorosilane

hexa-<i>Si</i>-chloro-<i>Si</i>,<i>Si</i>'-(1,2-dichloro-ethene-1,2-diyl)-bis-silane
5926-33-0

hexa-Si-chloro-Si,Si'-(1,2-dichloro-ethene-1,2-diyl)-bis-silane

1,2-bis-(trichlorosilyl)acetylene
18038-55-6

1,2-bis-(trichlorosilyl)acetylene

hexachlorodisilane
13465-77-5

hexachlorodisilane

Conditions
Conditions Yield
copper; In neat (no solvent); reaction of Si with gaseous CCl4 (in N2) with Cu as catalyst at 110-410°C;; products and yield depend on temp.;;

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