2015
DOI: 10.1134/s1070363215050497
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Contact nonequilibrium plasma as a tool for treatment of water and aqueous solutions: Theory and practice

Abstract: Theoretical and practical results of the treatment of water and aqueous solutions by lowtemperature nonequilibrium contact plasma are considered. It is shown that the liquid medium in the process of plasma treatment or thereafter undergoes significant structural and physical-chemical transformations, the use of which opens up new horizons in the modernization or improvement of technological processes to replace out-of-dated or obsolete ones.

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Cited by 27 publications
(26 citation statements)
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“…Among plasmochemical discharges, the contact nonequilibrium low-temperature plasma (CNP) is a promising option from the point of view of practical applications. Plasma discharge is generated between the electrode in a gaseous phase and a liquid surface, where another electrode is located [19]. erefore, chemical transformations on the phase boundary are conditioned by the combined effect of the electrochemical oxidation-reduction, initiated photolysis reactions, UV radiation, and a flow of charged particles from the gaseous phase to the surface of the liquid medium.…”
Section: Introductionmentioning
confidence: 99%
“…Among plasmochemical discharges, the contact nonequilibrium low-temperature plasma (CNP) is a promising option from the point of view of practical applications. Plasma discharge is generated between the electrode in a gaseous phase and a liquid surface, where another electrode is located [19]. erefore, chemical transformations on the phase boundary are conditioned by the combined effect of the electrochemical oxidation-reduction, initiated photolysis reactions, UV radiation, and a flow of charged particles from the gaseous phase to the surface of the liquid medium.…”
Section: Introductionmentioning
confidence: 99%
“…Разряды, в которых в качестве электродов (одного или обоих) используется слабопроводящая жидкость (водные рас-творы, электролиты, техническая и водопроводная вода) позволяют генерировать сильно неравновесную плазму с высокой концентрацией химически активных ради-калов при различных давлениях [12]. В свою очередь, потоки энергии и химически активных частиц разряда могут воздействовать на состояние жидкого электрода, вызывая в нем различные физико-химические процессы, что делает перспективным использование КНП для об-работки жидких сред с целью изменения их свойств [6] и получения новых соединений [11][12][13].…”
Section: анализ литературных данных и постановка проблемыunclassified
“…Использования контактной неравновесной плазмы для получения новых соединений [13] является основой для создания новых технологий, которые позволяют ис-пользовать преимущества большинства из вышеперечис-ленных методов, но при этом возникает необходимость в дополнительных данных, характеризующих частицы, полученные вышеназванным способом.…”
Section: анализ литературных данных и постановка проблемыunclassified
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“…Among plasma-chemical discharges, contact nonequilibrium low-temperature plasma (CNP) is a promising option from the practical application standpoint [4]. Plasma discharge is generated between the electrode in the gaseous phase and surface of the liquid where the other electrode is located.…”
Section: Introductionmentioning
confidence: 99%