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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Photocatalytic degradation of concentrated solutions of 2,4-dichlorophenol using low energy light Identification of intermediates
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Photocatalytic degradation of concentrated solutions of 2,4-dichlorophenol using low energy light Identification of intermediates

机译:低能光对2,4-二氯苯酚浓溶液的光催化降解中间体的鉴定

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摘要

This study reports on Fenton and photo-assisted Fenton induced oxidation of 2,4-dichlorophenol (from here on 2,4-DCP). The pre-treatment of concentrated aqueous solutions of2,4-DCP (453 mg I-I) up to bio-compatibility is shown to be possible using low energy 36 W black fluorescent mercury light. The degradation process of 2,4-DCP was observed to occur within minutes. Catalytic amounts ofFe3+ -ion (10 mg) were only necessary to obtain acceptable degradation kinetics. Degradation of the 2,4-DCP was not observed in the dark. The total organic carbon (TOC), the adsorbable organic halogen compounds (AOX) and the amount of free chloride (Cl-) were followed in time during 2,4-DCP oxidation under light irradiation. The rate of disappearance of 2,4-DCP and that of Cl--ion formation were not similar. This was ascribed to the formation of aliphatic and aromatic chlorinated long-lived intermediates. The latter intermediates were identified by liquid-liquid extra solid-liquid extraction and coupled GC/MS analysis. Based on the experimental results obtained, a mechanism for the radical intervention is suggested for the abatement of 2,4-DCP. A relatively short pre-treatment time (54min) was necessary to reduce by 97% the toxicity (ecotoxicity) of a concentrated solution of 2,4-DCP under low energy light irradiation in the photo-reactor.
机译:这项研究报道了Fenton和光辅助Fenton诱导的2,4-二氯苯酚的氧化(此处为2,4-DCP)。已显示使用低能36 W黑色荧光汞灯可以对2,4-DCP浓缩水溶液(453 mg I-I)进行预处理,直至达到生物相容性。观察到2,4-DCP的降解过程在数分钟内发生。催化量的Fe 3+离子(10 mg)仅是获得可接受的降解动力学所必需的。在黑暗中未观察到2,4-DCP的降解。在光照射下的2,4-DCP氧化过程中,及时跟踪总有机碳(TOC),可吸附的有机卤素化合物(AOX)和游离氯化物(Cl-)的量。 2,4-DCP的消失速率和Cl-离子形成的速率不相似。这归因于脂族和芳族氯化长寿命中间体的形成。后者的中间体通过液-液额外的固-液萃取和GC / MS耦合分析确定。根据获得的实验结果,提出了一种自由基干预机制,以减少2,4-DCP。为了在光反应器中的低能光照射下将2,4-DCP浓缩溶液的毒性(生态毒性)降低97%,需要相对较短的预处理时间(54分钟)。

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