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Process design for wastewater treatment: Catalytic ozonation of organic pollutants

机译:废水处理的工艺设计:有机污染物的催化臭氧氧化

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Emerging micropollutants have been recently the target of interest for their potential harmful effects in the environment and their resistance to conventional water treatments. Catalytic ozonation is an advanced oxidation process consisting of the formation of highly reactive radicals from the decomposition of ozone promoted by a catalyst. Nanocarbon materials have been shown to be effective catalysts for this process, either in powder form or grown on the surface of a monolithic structure. In this work, carbon nanofibers grown on the surface of a cordierite honeycomb monolith are tested as catalyst for the ozonation of five selected micropollutants: atrazine (ATZ), bezafibrate, erythromycin, metolachlor, and nonylphenol. The process is tested both in laboratorial and real conditions. Later on, ATZ was selected as a target pollutant to further investigate the role of the catalytic material. It is shown that the inclusion of a catalyst improves the mineralization degree compared to single ozonation.
机译:新兴的微污染物最近因其对环境的潜在有害作用以及对常规水处理的抵抗力而成为人们关注的目标。催化臭氧化是一种先进的氧化过程,包括由催化剂促进的臭氧分解形成高反应性自由基。纳米碳材料已被证明是粉末或在整体结构表面上生长的有效催化剂。在这项工作中,对堇青石蜂窝状整体表面上生长的碳纳米纤维进行了测试,以作为五种所选微污染物臭氧化的催化剂:阿特拉津(ATZ),苯扎贝特酸盐,红霉素,异丙甲草胺和壬基酚。该过程在实验室和实际条件下均经过测试。后来,ATZ被选为目标污染物,以进一步研究催化材料的作用。结果表明,与单次臭氧化相比,包含催化剂可提高矿化度。

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