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首页> 外文期刊>Catalysis science & technology >Highly efficient removal of organic contaminants based on peroxymonosulfate activation by iron phthalocyanine: mechanism and the bicarbonate ion enhancement effect
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Highly efficient removal of organic contaminants based on peroxymonosulfate activation by iron phthalocyanine: mechanism and the bicarbonate ion enhancement effect

机译:高效去除有机污染物基于peroxymonosulfate活化的铁酞菁:机制和碳酸氢盐离子增强效果

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摘要

The development of catalytic oxidation processes with high efficiency based on peroxymonosulfate (PMS) activation is a promising yet challenging research topic in the environmental catalysis field. In this work, iron tetracarboxyphthalocyanine (FeTCPc) as a homogeneous catalyst is proposed for PMS activation and construction of a novel and efficient catalytic system for the removal of Acid Orange 7 (AO7). In this system, FeTCPc exhibited extra-high catalytic activity for PMS activation, even higher than the Co2+ analogue of the catalyst which was identified as one of the most efficient PMS activators. A hybrid method that combines electron paramagnetic resonance (EPR) technology with different radical scavengers was employed for the investigation of active species, and the results indicate that superoxide radicals (HO2. /O-2(.-)) and singlet oxygen (O-1(2)) other than the sulfate radical (SO4.-) or hydroxyl radical (HO.) were the primary reactive oxygen species during the catalytic oxidation process. Moreover, this system turned the negative effect of HCO3- observed in most reported Co2+/PMS systems into a positive one, which accelerated the AO7 removal with an over 10-fold increase of the rate constant due to generation of more O-1(2). This study reports on a novel catalytic oxidation pathway for PMS activation, and paves an avenue toward developing highly efficient catalytic oxidation processes for the treatment of organic contaminants.
机译:催化氧化过程的发展基于peroxymonosulfate效率高(PMS)激活是一个有前途的挑战环境催化的研究课题字段。tetracarboxyphthalocyanine (FeTCPc)均相催化剂提出了经前综合症激活和小说和建设高效的催化系统删除酸性橙7 (AO7)。对经前综合症表现出高的催化活性激活,甚至高于二氧化碳+模拟被确认为一个的催化剂经前综合症最有效的催化剂。电子顺磁共振相结合(EPR)技术与不同的激进拾荒者是用于调查结果表明,活性物种,超氧化物自由基(HO2。氧气(1)(2)硫酸根(SO4.)或氢氧自由基(HO)期间主要活性氧催化氧化过程。系统把HCO3 -的负面影响观察到在大多数报道Co2 + / PMS系统变成一个积极,加速AO7删除超过10倍增加的速度常数由于代1(2)。新颖的催化氧化研究报告对经前综合症的激活途径,为一个大道对发展高效催化治疗有机氧化过程污染物。

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