The oxidative destruction of substandard tributyl phosphate organic solutions under mild conditions

Tatiana Volgina, Anzhelika Posvyashchennaya, Evgeniia Frantcuzskaia

Результат исследований: Материалы для книги/типы отчетовМатериалы для конференции

Выдержка

The liquid-phase oxidative destruction of 30% solution of tributyl phosphate in kerosene has been carried out under the action of oxidants generated by the electrical current which has been passed through 40% aqueous solutions of the sulfuric acid under atmospheric pressure and at temperature of 50 °C. Tributyl phosphate and its solvent have been partly destroyed due to the electrochemical processes on the lead electrodes, however, a large part of components has been subjected to deep oxidation in the volume of electrolyte. As a result of oxidation, the following final products have been formed: phosphoric acid, mono- and dicarboxylic acids, carbon dioxide and water.

Язык оригиналаАнглийский
Название основной публикацииHigh Technology
Подзаголовок основной публикацииResearch and Applications 2016 - HTRA-2016
РедакторыGeorgii E. Osokin, Ekaterina A. Kulinich
ИздательTrans Tech Publications Ltd
Страницы305-309
Число страниц5
ISBN (печатное издание)9783035711356
DOI
СостояниеОпубликовано - 1 янв 2017
Событие5th International Science and Engineering Conference on High Technology: Research and Applications, HTRA 2016 - Tomsk, Российская Федерация
Продолжительность: 5 дек 20167 дек 2016

Серия публикаций

НазваниеKey Engineering Materials
Том743 KEM
ISSN (печатное издание)1013-9826

Конференция

Конференция5th International Science and Engineering Conference on High Technology: Research and Applications, HTRA 2016
СтранаРоссийская Федерация
ГородTomsk
Период5.12.167.12.16

Отпечаток

Phosphates
Oxidation
Dicarboxylic Acids
Kerosene
Phosphoric acid
Oxidants
Sulfuric acid
Carbon Dioxide
Electrolytes
Atmospheric pressure
Carbon dioxide
Electrodes
Acids
Water
Liquids
Temperature
tributyl phosphate
phosphoric acid
sulfuric acid

ASJC Scopus subject areas

  • Materials Science(all)
  • Mechanics of Materials
  • Mechanical Engineering

Цитировать

Volgina, T., Posvyashchennaya, A., & Frantcuzskaia, E. (2017). The oxidative destruction of substandard tributyl phosphate organic solutions under mild conditions. В G. E. Osokin, & E. A. Kulinich (Ред.), High Technology: Research and Applications 2016 - HTRA-2016 (стр. 305-309). (Key Engineering Materials; Том 743 KEM). Trans Tech Publications Ltd. https://doi.org/10.4028/www.scientific.net/KEM.743.305

The oxidative destruction of substandard tributyl phosphate organic solutions under mild conditions. / Volgina, Tatiana; Posvyashchennaya, Anzhelika; Frantcuzskaia, Evgeniia.

High Technology: Research and Applications 2016 - HTRA-2016. ред. / Georgii E. Osokin; Ekaterina A. Kulinich. Trans Tech Publications Ltd, 2017. стр. 305-309 (Key Engineering Materials; Том 743 KEM).

Результат исследований: Материалы для книги/типы отчетовМатериалы для конференции

Volgina, T, Posvyashchennaya, A & Frantcuzskaia, E 2017, The oxidative destruction of substandard tributyl phosphate organic solutions under mild conditions. в GE Osokin & EA Kulinich (ред.), High Technology: Research and Applications 2016 - HTRA-2016. Key Engineering Materials, том. 743 KEM, Trans Tech Publications Ltd, стр. 305-309, Tomsk, Российская Федерация, 5.12.16. https://doi.org/10.4028/www.scientific.net/KEM.743.305
Volgina T, Posvyashchennaya A, Frantcuzskaia E. The oxidative destruction of substandard tributyl phosphate organic solutions under mild conditions. В Osokin GE, Kulinich EA, редакторы, High Technology: Research and Applications 2016 - HTRA-2016. Trans Tech Publications Ltd. 2017. стр. 305-309. (Key Engineering Materials). https://doi.org/10.4028/www.scientific.net/KEM.743.305
Volgina, Tatiana ; Posvyashchennaya, Anzhelika ; Frantcuzskaia, Evgeniia. / The oxidative destruction of substandard tributyl phosphate organic solutions under mild conditions. High Technology: Research and Applications 2016 - HTRA-2016. редактор / Georgii E. Osokin ; Ekaterina A. Kulinich. Trans Tech Publications Ltd, 2017. стр. 305-309 (Key Engineering Materials).
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