Preview

Ecology and Industry of Russia

Advanced search
Open Access Open Access  Restricted Access Subscription or Fee Access

Intensification of ions of Chrome(vi) Removal during Waste Water Treatment with Magnetic Field

https://doi.org/10.18412/1816-0395-2015-12-54-59

Abstract

The authors investigated removal of ions of Chrome(VI) during waste water treatment with prompt industrial scrap from Engels Instrument Making Association "Signal". Intensification of this process with magnetic field was studied. The authors carried out macro-structural investigation of the prompt industrial scrap, and calculated efficiency of the waste water treatment.

About the Authors

V.S. Chirkova
Engels Technological Institute (branch) Gagarin Saratov State Technical University
Russian Federation
Postgraduate Student


N.A. Sobgayda
Engels Technological Institute (branch) Gagarin Saratov State Technical University
Russian Federation
Dr. Sci. (Eng.), Associate Professor


F.A. Rzazade
Engels Technological Institute (branch) Gagarin Saratov State Technical University
Russian Federation
Postgraduate Student


References

1. Fendorf S.E., Wielinga B., Hansel C. Chromium transformations in natural environments: the role of biological and abiological processes in chromium(VI) reduction // International Geology Review. 2000. V. 42. P.691-701.

2. Грушко Я.М. Ядовитые металлы и их неорганические соединения в промышленных сточных водах. Л.: Химия. 1979. С.138-142.

3. C. Rosales-Landeros, C. E. Barrera-Dнaz, B. Bilyeu et al. A Review on Cr(VI) Adsorption Using Inorganic Materials // American Journal of Analytical Chemistry. 2013. № 4. P.8-16.

4. Gheju M., Iovi A., Balcu I. Hexavalent chromium reduction with scrap iron in continuous-flow system Part 1: effect of feed solution pH // Journal of Hazardous Materials. 2008. V. 153. P.655-662.

5. Janoš P., Hula V., Bradnová P. Reduction and immobilization of hexavalent chromium with coaland humate-based sorbents [электронный ресурс] URL: http://artec.tul.cz/index.php?content=up-load/OX-IH-Cr6-text-rev0508.pdf&lang=cs (Дата обращения 01.10.2015).

6. Mohan D., Pittman C.U. Jr. Review activated carbons and low cost adsorbents for remediation of tri- and hexavalent chromium from water // Journal of Hazardous Materials. 2006. V. 137. №. 2. P. 762- 811.

7. Чиркова В.С. Собгайда Н.А., Шайхиева К.И. Оценка эффективности очистки сточных вод от ионов хрома(VI) отходами металлообработки предприятия // Вестник Казанского технологического университета. 2014. Т. 17. № 19. С.226-229.

8. Очков В.Ф. Магнитная обработка воды: история и современное состояние // Энергосбережение и водоподготовка. 2006. № 2. С.15-18.

9. Кларссен В.И. Магнитная обработка воды и водных систем // Вопросы теории и практики магнитной обработки воды и водных систем. М.: Химия, 1971. С.3-17.

10. Сизов В.П., Королев К.М., Кузин В.Н. Снова об омагниченной воде // Бетон и железобетон. 1994. № 3. С.23-25.


Review

For citations:


Chirkova V., Sobgayda N., Rzazade F. Intensification of ions of Chrome(vi) Removal during Waste Water Treatment with Magnetic Field. Ecology and Industry of Russia. 2015;19(12):54-59. (In Russ.) https://doi.org/10.18412/1816-0395-2015-12-54-59

Views: 726


ISSN 1816-0395 (Print)
ISSN 2413-6042 (Online)