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ELECTROCATALYTIC REACTION, CATALYTIC AUTOXIDATION, AND SUPPORTED CATALYTIC AUTOXIDATION OF SULFUR OXOANIONS BY FETSPP AND MN(4-TMPYP)

机译:FETSPP和MN(4-TMPYP)对硫代氧阴离子的电催化反应,催化自氧化和支持的催化自氧化

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The electrocatalysis of the sulfur oxoanions SO32- and S4O62- by the catalyst FeTSPP were investigated in aqueous solution at room temperature. The water-soluble iron tetrakis(4-sulfonatophenyl) porphine (FeTSPP) uses an electrochemical process to oxidize (FeTSPP)-T-III or the iron(III) dimer (TPPS)Fe-III-O-Fe-III(TPPS) to the Fe-III(TSPP.+) species. FeTSPP can perform the electrocatalytic oxidation of sulfite to sulfate. FeTSPP shows two redox couples and can perform both electrocatalytic oxidation and reduction of sulfite when the pH is ca. 2.0, and the ratio of electrocatalytic reduction to electrocatalytic oxidation I-pcat/I-pd = 3. FeTSPP can also perform the electrocatalytic reduction of S4O62- to S2O32- through the (FeTSPP)-T-I species. Mn(4-TMPyP) can perform the electrocatalytic oxidation of sulfite only through the Mn-IV(4-TMPyP) species. NaSH can be electrocatalytically oxidized through both the Mn-III(4-TMPyP) and Mn-IV(4-TMPyP) species, but each reaction has different electrocatalytic efficiencies. Mn(4-TMPyP) acts as a catalyst in the autoxidation of SO32- to sulfate in the presence of oxygen, Mn(4-TMPyP), supported on a zeolite molecular sieve, has been used effectively as a catalyst in the autoxidation of SO32- to sulfate in the presence of oxygen at room temperature in an aqueous solution. [References: 32]
机译:研究了FeTSPP催化剂在室温下水溶液中对含氧氧阴离子SO32-和S4O62-的电催化作用。水溶性四(4-磺酰基苯基)铁卟啉(FeTSPP)使用电化学工艺氧化(FeTSPP)-T-III或铁(III)二聚体(TPPS)Fe-III-O-Fe-III(TPPS) Fe-III(TSPP。+)物种。 FeTSPP可以将亚硫酸盐电催化氧化为硫酸盐。 FeTSPP表现出两个氧化还原对,并且在pH值约为10时,可以同时进行电催化氧化和亚硫酸盐还原。 FeTSPP等于2.0,电催化还原与电催化氧化的比率I-pcat / I-pd =3。FeTSPP还可以通过(FeTSPP)-T-I物种将S4O62-转化为S2O32-。 Mn(4-TMPyP)只能通过Mn-IV(4-TMPyP)物种进行亚硫酸盐的电催化氧化。 NaSH可以通过Mn-III(4-TMPyP)和Mn-IV(4-TMPyP)物种被电催化氧化,但是每个反应具有不同的电催化效率。 Mn(4-TMPyP)在氧气存在下将SO32-自动氧化为硫酸盐时起催化剂的作用,负载在沸石分子筛上的Mn(4-TMPyP)被有效用作SO32的自氧化反应中的催化剂在室温下在氧气存在下在水溶液中转化为硫酸盐。 [参考:32]

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