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Significance of porous structure on degradatin of 2 2′ dichloro diethyl sulphide and 2 chloroethyl ethyl sulphide on the surface of vanadium oxide nanostructure
B. Singh, T.H. Mahato, A.K. Srivastava, G.K. Prasad, K. Ganesan, , R. Jain
Published in
2011
PMID: 21444151
Volume: 190
   
Issue: 1-3
Pages: 1053 - 1057
Abstract
Degradation of the king of chemical warfare agent, 2 2′ dichloro diethyl sulphide (HD), and its simulant 2 chloroethyl ethyl sulphide (CEES) were investigated on the surface of porous vanadium oxide nanotubes at room temperature (30±2°C). Reaction kinetics was monitored by GC-FID technique and the reaction products were characterized by GC-MS. Data indicates that HD degraded faster relative to CEES inside the solid decontaminant compared to the reported liquid phase degradation of CEES and HD. Data explores the role of hydrolysis, elimination and oxidation reactions in the detoxification of HD and CEES and the first order rate constant and t1/2 were calculated to be 0.026h-1, 26.6h for CEES and 0.052h-1, 13.24h for HD. In this report faster degradation of HD compared to CEES was explained on the basis of porous structure. © 2011 Elsevier B.V.
About the journal
JournalJournal of Hazardous Materials
ISSN03043894