首页> 外文期刊>Journal of Environmental Science and Health >Oxidative degradation of 2,4,6-trichlorophenol and pentachlorophenol in contaminated soil suspensions using a supramolecular catalyst of 5,10,15,20-tetrakis (p-hydroxyphenyl)porphine-iron(III) bound to humic acid via formaldehyde polycondensation
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Oxidative degradation of 2,4,6-trichlorophenol and pentachlorophenol in contaminated soil suspensions using a supramolecular catalyst of 5,10,15,20-tetrakis (p-hydroxyphenyl)porphine-iron(III) bound to humic acid via formaldehyde polycondensation

机译:使用甲醛缩聚反应与腐殖酸结合的5,10,15,20-四(对羟基苯基)卟啉-铁(III)的超分子催化剂在被污染的土壤悬浮液中氧化降解2,4,6-三氯苯酚和五氯苯酚

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A supramolecular catalyst consisting of 5,10,15,20-tetrakis(p-hydroxyphenyl)porphine-iron(IH) (FeTPP(OH)_4) bound to humic acid (HA) was synthesized via formaldehyde polycondensation. The catalytic system, which included the synthesized catalyst (resol) and an oxygen donor (KHSO_5), was applied to the oxidative degradation of 2,4,6-trichlorophenol (TrCP) and pentachlorophenol (PCP) in contaminated soil suspensions. The optimal conditions (catalyst, KHSO_5 and substrate concentrations) were investigated. In both FeTPP(OH)_4 and resol catalytic systems, more than 95% of TrCP (100 μM) and PCP (25 μM) degraded at pH 4, [catalyst] 20 ,μM and [KHSO_5] 1 mM. When initial concentrations of TrCP and PCP were increased to [TrCP]_0 200 μM and [PCP]_0 50 μM, the percent degradation of the CPs and the levels of dechlorination in the resol catalytic system were significantly greater than the values obtained using the FeTPP(OH)_4 system. These results show that the synthesized resol catalyst effectively enhances oxidative degradation of TrCP and PCP in contaminated soil suspensions. The resol catalysts adsorbed to contaminated soils were at levels that were significantly greater than those of FeTPP(OH)_4. Therefore, the enhanced degradation of CPs by resol catalysts can be attributed to the interactions between adsorbed CPs on the soil surface and the catalytic center of the resol catalysts.
机译:通过甲醛缩聚反应合成了由5,10,15,20-四(对羟基苯基)卟啉-铁(IH)(FeTPP(OH)_4)结合到腐殖酸(HA)的超分子催化剂。包括合成催化剂(甲阶酚醛树脂)和氧气供体(KHSO_5)在内的催化体系被用于氧化降解土壤悬浮液中的2,4,6-三氯苯酚(TrCP)和五氯苯酚(PCP)。研究了最佳条件(催化剂,KHSO_5和底物浓度)。在FeTPP(OH)_4和可熔酚醛催化体系中,超过95%的TrCP(100μM)和PCP(25μM)在pH 4时降解,[催化剂] 20,μM和[KHSO_5] 1 mM。当TrCP和PCP的初始浓度增加到[TrCP] _0 200μM和[PCP] _0 50μM时,酚醛树脂催化体系中CP的降解百分数和脱氯水平明显大于使用FeTPP获得的值(OH)_4系统。这些结果表明,合成的甲阶酚醛树脂催化剂有效地增强了被污染土壤悬浮液中TrCP和PCP的氧化降解。吸附到受污染土壤的甲阶酚醛树脂催化剂的含量明显高于FeTPP(OH)_4。因此,可熔酚醛催化剂对CPs的增强降解可归​​因于土壤表面吸附的CPs与可熔酚醛树脂催化剂的催化中心之间的相互作用。

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