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Photocatalytic removal of pentachlorophenol by means of an enzyme-like molecular imprinted photocatalyst and inhibition of the generation of highly toxic intermediates

机译:通过酶样分子印迹光催化剂光催化除去五氯苯酚并抑制高毒性中间体的产生

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摘要

Pentachlorophenol (PCP) is a typical highly-toxic pollutant, and its direct photolysis and conventional photocatalysis may produce more toxic by-products such as dibenzodioxins. It is urgently needed to develop a photocatalytic process able to remove PCP without the generation of highly toxic by-products. To achieve this, enzyme-like molecular-imprinted photocatalysts were prepared by using structural analogues of PCP as pseudo templates. It was found that 2,4-dinitrophenol (DNP) was the best template among the tested analogues. The molecular imprinted polymer (MIP) coated P25 TiO2 photocatalyst DNP-P25 prepared with DNP as the template greatly accelerated the photocatalytic degradation of PCP and depressed the generation of toxic intermediates. It was confirmed that the amino groups at the footprint cavities provided a well-defined micro reaction environment, which made the benzene ring of the adsorbed PCP be better exposed to photo-generated reactive OH radicals, leading to easier cleavage of the benzene ring. Both the intermediate analysis and toxicity evaluation confirmed that the MIP-coated TiO2 can make the photocatalytic degradation a safe and green approach of removing PCP.
机译:五氯苯酚(PCP)是一种典型的剧毒污染物,其直接光解和常规光催化作用可能会产生毒性更高的副产物,例如二苯并二恶英。迫切需要开发一种能够去除PCP而又不产生高毒性副产物的光催化方法。为此,通过使用PCP的结构类似物作为伪模板制备了酶样分子印迹的光催化剂。发现2,4-二硝基苯酚(DNP)是测试的类似物中最好的模板。以DNP为模板制备的分子印迹聚合物(MIP)包覆的P25 TiO2光催化剂DNP-P25大大加速了PCP的光催化降解并抑制了有毒中间体的产生。证实了足迹腔处的氨基提供了良好定义的微反应环境,这使得被吸附的PCP的苯环更好地暴露于光生的反应性OH自由基,从而导致更容易裂解苯环。中间分析和毒性评估均证实,MIP包覆的TiO2可以使光催化降解成为去除PCP的安全绿色方法。

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