Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents

Introduction. Research in a field of new sorption materials obtaining have been presented in this article. These sorbents have magnetic properties and they can be used for water purification from ions of heavy metals (HM), petroleum and petroleum products (PP). Compositional sorption material (CSM)...

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Main Authors: Inna V. Dolbnya, Elena A. Tatarintseva, Kristina V. Kozmich, Maria V. Komissarenko, Andrey M. Zakharevich
Format: Article
Language:Russian
Published: Ural Research Institute of Metrology 2017-06-01
Series:Стандартные образцы
Subjects:
Online Access:https://www.rmjournal.ru/jour/article/view/120
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author Inna V. Dolbnya
Elena A. Tatarintseva
Kristina V. Kozmich
Maria V. Komissarenko
Andrey M. Zakharevich
author_facet Inna V. Dolbnya
Elena A. Tatarintseva
Kristina V. Kozmich
Maria V. Komissarenko
Andrey M. Zakharevich
author_sort Inna V. Dolbnya
collection DOAJ
description Introduction. Research in a field of new sorption materials obtaining have been presented in this article. These sorbents have magnetic properties and they can be used for water purification from ions of heavy metals (HM), petroleum and petroleum products (PP). Compositional sorption material (CSM) has been made with the use of ferritized galvanic sludge (FGS) as a magnetic component and paraffin as a binder substance. Materials and methods. The following objects of the research were chosen in this work: industrial waste - galvanic sludge (GS), FGS, paraffin. Modern methods of the research have been used at work implementation: photometry, IR-spectrophotometry, scanning electron microscopy. Obtaining accurate and reliable results of the experiment were provided by the use of standard methods, established in federal environmental regulatory document (PND F), verifiable measuring instruments and standard samples. Results. FGS after a thermal processing has sorption properties in relation to ions of heavy metals Fe2+, Fe3+ and Cu2+. The material CSM can adsorb petroleum and PP. Discussion and conclusions. The sorption materials on the basis of industrial waste - GS were obtained and studied. These sorbents have magnetic properties which will be useful at water treatment; a saturated material can be extracted from a purified environment by magnetic separation.
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spelling doaj.art-6cc6dddc5e1743ac993767c8c41a05942025-01-02T14:48:32ZrusUral Research Institute of MetrologyСтандартные образцы2077-11772017-06-01131435510.20915/2077-1177-2017-13-1-43-55119Modern methods of analysis and instruments measuring sorption properties of magnetic sorbentsInna V. Dolbnya0Elena A. Tatarintseva1Kristina V. Kozmich2Maria V. Komissarenko3Andrey M. Zakharevich4Engels Technological Institute (Branch) of Yuri Gagarin State Technical University of SaratovEngels Technological Institute (Branch) of Yuri Gagarin State Technical University of SaratovEngels Technological Institute (Branch) of Yuri Gagarin State Technical University of SaratovEngels Technological Institute (Branch) of Yuri Gagarin State Technical University of SaratovSaratov State University named after N.G. ChernyshevskyIntroduction. Research in a field of new sorption materials obtaining have been presented in this article. These sorbents have magnetic properties and they can be used for water purification from ions of heavy metals (HM), petroleum and petroleum products (PP). Compositional sorption material (CSM) has been made with the use of ferritized galvanic sludge (FGS) as a magnetic component and paraffin as a binder substance. Materials and methods. The following objects of the research were chosen in this work: industrial waste - galvanic sludge (GS), FGS, paraffin. Modern methods of the research have been used at work implementation: photometry, IR-spectrophotometry, scanning electron microscopy. Obtaining accurate and reliable results of the experiment were provided by the use of standard methods, established in federal environmental regulatory document (PND F), verifiable measuring instruments and standard samples. Results. FGS after a thermal processing has sorption properties in relation to ions of heavy metals Fe2+, Fe3+ and Cu2+. The material CSM can adsorb petroleum and PP. Discussion and conclusions. The sorption materials on the basis of industrial waste - GS were obtained and studied. These sorbents have magnetic properties which will be useful at water treatment; a saturated material can be extracted from a purified environment by magnetic separation.https://www.rmjournal.ru/jour/article/view/120методики анализаизмерительные приборыпогрешность измеренияпредел повторяемостигальванический шламферритизациясорбциямагнитный сорбционный материалтяжелые металлынефтепродукты
spellingShingle Inna V. Dolbnya
Elena A. Tatarintseva
Kristina V. Kozmich
Maria V. Komissarenko
Andrey M. Zakharevich
Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
Стандартные образцы
методики анализа
измерительные приборы
погрешность измерения
предел повторяемости
гальванический шлам
ферритизация
сорбция
магнитный сорбционный материал
тяжелые металлы
нефтепродукты
title Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
title_full Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
title_fullStr Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
title_full_unstemmed Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
title_short Modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
title_sort modern methods of analysis and instruments measuring sorption properties of magnetic sorbents
topic методики анализа
измерительные приборы
погрешность измерения
предел повторяемости
гальванический шлам
ферритизация
сорбция
магнитный сорбционный материал
тяжелые металлы
нефтепродукты
url https://www.rmjournal.ru/jour/article/view/120
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AT elenaatatarintseva modernmethodsofanalysisandinstrumentsmeasuringsorptionpropertiesofmagneticsorbents
AT kristinavkozmich modernmethodsofanalysisandinstrumentsmeasuringsorptionpropertiesofmagneticsorbents
AT mariavkomissarenko modernmethodsofanalysisandinstrumentsmeasuringsorptionpropertiesofmagneticsorbents
AT andreymzakharevich modernmethodsofanalysisandinstrumentsmeasuringsorptionpropertiesofmagneticsorbents