1 Department of Nucleophilic Reactions Research, LM Litvinenko Institute of Physical-Organic Chemistry and Coal Chemistry of National Academy of Sciences of Ukraine, Ukraine.
2 Department of Industrial Pharmacy, Faculty of Chemical and Biopharmaceutical Technologies, Kyiv National University of Technologies and Design, Ukraine.
World Journal of Advanced Engineering Technology and Sciences, 2025, 15(03), 1381–1392
Article DOI: 10.30574/wjaets.2025.15.3.1089
Received on 05 May 2025; revised on 12 June 2025; accepted on 14 June 2025
Organophosphorus compounds (OPC) are highly toxic substances that are used as pesticides, active pharmacological ingredients, components of chemical weapons, etc. Many of them are neurotoxic agents, possible carcinogens, have acute or chronic toxic effects, suppress immunity, cause disorders of the endocrine, central and peripheral nervous systems. These compounds are inhibitors of acetylcholinesterase, a key enzyme for the regulation of central and peripheral nervous systems. The review considers mostly chemical and some physical approaches to the development of OPC decontamination methods, summarizes the preexisting and new strategies of individual decontamination of OPC. Hydrogen peroxide-based systems have been shown to be effective decontaminants for OPC, mild in nature and environmentally safe. Introduction of activators into the system tenfold increases the reactivity of hydrogen peroxide due to the formation of active peroxoanions. It has been shown that modified aluminosilicates accelerate the process of decomposition of OPC, and the relative instability of peroxoanions requires the search for alternative ways to optimize decontamination systems.
Decontamination system; Degassing; Individual decontamination; Organophosphorus compound; Hydrogen peroxide; Peroxysolvates
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Varvara Drizhd, Ramil Vakhitov, Nadiia Taran, Volodymyr Bessarabov, Mykola Korotkikh and Liubov Vakhitova. Decontamination agents for chemical neutralization of organo-phosphorous poisonous compounds: Literature Review. World Journal of Advanced Engineering Technology and Sciences, 2025, 15(03), 1381-1392. Article DOI: 10.30574/wjaets.2025.15.3.1089.