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Investigation of factors influencing sodium sulfide oxidation in the presence of polymeric heterogeneous catalysts of transition metal oxides
The activity of heterogeneous catalysts of transition metal oxides and their mixtures deposited on the polymeric matrix in the oxidation of sodium sulfide was investigated. It is shown that mixtures of manganese oxide and other transition metal oxides have high catalytic activity. It was evident tha...
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Published in: | Journal of sulfur chemistry 2014-01, Vol.35 (1), p.74-85 |
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container_title | Journal of sulfur chemistry |
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creator | Nhi, Bui Dinh Maratovich, Akhmadullin Renat Garipovna, Akhmadullina Alfiya Ivanova, Aghajanian Svetlana |
description | The activity of heterogeneous catalysts of transition metal oxides and their mixtures deposited on the polymeric matrix in the oxidation of sodium sulfide was investigated. It is shown that mixtures of manganese oxide and other transition metal oxides have high catalytic activity. It was evident that the positive synergistic effect occurred in the combined action of two or more catalytically active transition metal oxides, and the maximum effect was observed in the mixture of three catalytic agents of transition metal oxides. Catalytic mechanism of transition metal oxides for sulfide oxidation was studied. The kinetics of formation of products of sodium sulfide oxidation was studied in the presence of heterogeneous catalysts based on phthalocyanine cobalt and transition metal oxides. The dependence of the rate of formation of products of sodium sulfide oxidation on alkali concentration was investigated. Some factors influencing the oxidation rate such as sulfide, oxygen and alkaline concentrations, antioxidant and oxidation products were investigated. |
doi_str_mv | 10.1080/17415993.2013.800062 |
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It is shown that mixtures of manganese oxide and other transition metal oxides have high catalytic activity. It was evident that the positive synergistic effect occurred in the combined action of two or more catalytically active transition metal oxides, and the maximum effect was observed in the mixture of three catalytic agents of transition metal oxides. Catalytic mechanism of transition metal oxides for sulfide oxidation was studied. The kinetics of formation of products of sodium sulfide oxidation was studied in the presence of heterogeneous catalysts based on phthalocyanine cobalt and transition metal oxides. The dependence of the rate of formation of products of sodium sulfide oxidation on alkali concentration was investigated. 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It is shown that mixtures of manganese oxide and other transition metal oxides have high catalytic activity. It was evident that the positive synergistic effect occurred in the combined action of two or more catalytically active transition metal oxides, and the maximum effect was observed in the mixture of three catalytic agents of transition metal oxides. Catalytic mechanism of transition metal oxides for sulfide oxidation was studied. The kinetics of formation of products of sodium sulfide oxidation was studied in the presence of heterogeneous catalysts based on phthalocyanine cobalt and transition metal oxides. The dependence of the rate of formation of products of sodium sulfide oxidation on alkali concentration was investigated. Some factors influencing the oxidation rate such as sulfide, oxygen and alkaline concentrations, antioxidant and oxidation products were investigated.</description><subject>catalysis</subject><subject>Investigations</subject><subject>kinetics</subject><subject>Metal oxides</subject><subject>Oxidation</subject><subject>sodium sulfide oxidation</subject><subject>synergistic effect</subject><subject>transition metal oxides</subject><subject>Water pollution</subject><issn>1741-5993</issn><issn>1741-6000</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2014</creationdate><recordtype>article</recordtype><recordid>eNp9kMtOxCAUhhujiTr6Bi5IXM_IbVq6MsZ4mWQSN7omDD3MYFoYgap9CN9ZanXrCjj5_p-cryguCF4QLPAVqThZ1jVbUEzYQmCMS3pQnIzjeZlfh7_3kTkuTmN8xZhWdc1Piq-Ve4eY7FYl6x3yBhmlkw8RWWfaHpy2bouib2zfodi3xjaA_KdtJt46lHaA9gFiRmHM7307dBCsRjtIEPwWHPg-Iq2SaoeY4giloFy0PxUd5PlPJcSz4sioNsL57zkrXu7vnm8f5-unh9XtzXquGVumeSXwhjBdacEroLysN6ZqCCc1LZdUKVDUiKYWgjKgQjBekoY0ii5pqUvOmGCz4nLq3Qf_1uf95avvg8tfSsJLISrBBMkUnygdfIwBjNwH26kwSILlKF7-iZejeDmJz7HrKZYN-tCpDx_aRiY1tD6YvLe2UbJ_G74BpGWMrw</recordid><startdate>20140102</startdate><enddate>20140102</enddate><creator>Nhi, Bui Dinh</creator><creator>Maratovich, Akhmadullin Renat</creator><creator>Garipovna, Akhmadullina Alfiya</creator><creator>Ivanova, Aghajanian Svetlana</creator><general>Taylor & Francis</general><general>Taylor & Francis Ltd</general><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>20140102</creationdate><title>Investigation of factors influencing sodium sulfide oxidation in the presence of polymeric heterogeneous catalysts of transition metal oxides</title><author>Nhi, Bui Dinh ; Maratovich, Akhmadullin Renat ; Garipovna, Akhmadullina Alfiya ; Ivanova, Aghajanian Svetlana</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c335t-780b13c7c847e2469bf7d14192652aaea2f8d98823e2883461d1da2526c643383</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2014</creationdate><topic>catalysis</topic><topic>Investigations</topic><topic>kinetics</topic><topic>Metal oxides</topic><topic>Oxidation</topic><topic>sodium sulfide oxidation</topic><topic>synergistic effect</topic><topic>transition metal oxides</topic><topic>Water pollution</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Nhi, Bui Dinh</creatorcontrib><creatorcontrib>Maratovich, Akhmadullin Renat</creatorcontrib><creatorcontrib>Garipovna, Akhmadullina Alfiya</creatorcontrib><creatorcontrib>Ivanova, Aghajanian Svetlana</creatorcontrib><collection>CrossRef</collection><jtitle>Journal of sulfur chemistry</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Nhi, Bui Dinh</au><au>Maratovich, Akhmadullin Renat</au><au>Garipovna, Akhmadullina Alfiya</au><au>Ivanova, Aghajanian Svetlana</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Investigation of factors influencing sodium sulfide oxidation in the presence of polymeric heterogeneous catalysts of transition metal oxides</atitle><jtitle>Journal of sulfur chemistry</jtitle><date>2014-01-02</date><risdate>2014</risdate><volume>35</volume><issue>1</issue><spage>74</spage><epage>85</epage><pages>74-85</pages><issn>1741-5993</issn><eissn>1741-6000</eissn><abstract>The activity of heterogeneous catalysts of transition metal oxides and their mixtures deposited on the polymeric matrix in the oxidation of sodium sulfide was investigated. It is shown that mixtures of manganese oxide and other transition metal oxides have high catalytic activity. It was evident that the positive synergistic effect occurred in the combined action of two or more catalytically active transition metal oxides, and the maximum effect was observed in the mixture of three catalytic agents of transition metal oxides. Catalytic mechanism of transition metal oxides for sulfide oxidation was studied. The kinetics of formation of products of sodium sulfide oxidation was studied in the presence of heterogeneous catalysts based on phthalocyanine cobalt and transition metal oxides. The dependence of the rate of formation of products of sodium sulfide oxidation on alkali concentration was investigated. 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subjects | catalysis Investigations kinetics Metal oxides Oxidation sodium sulfide oxidation synergistic effect transition metal oxides Water pollution |
title | Investigation of factors influencing sodium sulfide oxidation in the presence of polymeric heterogeneous catalysts of transition metal oxides |
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