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首页> 外文期刊>Journal of Hazardous Materials >Solar Photocatalytic Degradation Of Resorcinol A Model Endocrine Disrupter In Water Using Zinc Oxide
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Solar Photocatalytic Degradation Of Resorcinol A Model Endocrine Disrupter In Water Using Zinc Oxide

机译:氧化锌在水中光催化降解间苯二酚A模型内分泌干扰物

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摘要

Photocatalytic degradation (PCD) of resorcinol a potent endocrine disruptingchemical in aqueous medium was investigated by ZnO under sunlight irradiation in a batch photoreactor. The influence of various parameters such as photocatalyst amount, initial concentration of resorcinol and pH was examined for maximum PCD of resorcinol. A considerable influence of pH upon the chemical oxygen demand (COD) disappearance was observed. In general, neutral or basic pH is favorable for COD removal of resorcinol. PCD intermediates were identified using FTIR and GC/MS. Two of the initial oxidation intermediates detected were 1,2,4-trihydroxy-benzene and 1,2,3-trihydroxy-benzene. FTIR studies revealed 1,2,4-trihydroxy-benzene as the major PCD intermediate. A working photodegradation mechanism is also suggested for PCD of resorcinol. This work envisages the great potential that sunlight mediated photocatalysis has in the removal of resorcinol from waste water.
机译:在间歇式光反应器中,在阳光照射下,ZnO通过ZnO研究了间苯二酚(一种强力的内分泌干扰物)在水介质中的光催化降解(PCD)。对于间苯二酚的最大PCD,检查了各种参数的影响,例如光催化剂的量,间苯二酚的初始浓度和pH。观察到pH值对化学需氧量(COD)消失的影响很大。通常,中性或碱性pH值有利于间苯二酚的COD去除。使用FTIR和GC / MS鉴定了PCD中​​间体。检测到的两种初始氧化中间体为1,2,4-三羟基苯和1,2,3-三羟基苯。 FTIR研究表明1,2,4-三羟基苯是PCD的主要中间体。对于间苯二酚的PCD,还提出了一种有效的光降解机理。这项工作设想了阳光介导的光催化在去除废水中的间苯二酚方面的巨大潜力。

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