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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >N-doped titanium dioxide for mixture of parabens degradation based on ozone action and toxicity evaluation: Precursor of nitrogen and titanium effect
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N-doped titanium dioxide for mixture of parabens degradation based on ozone action and toxicity evaluation: Precursor of nitrogen and titanium effect

机译:基于臭氧作用和毒性评价的羟基苯甲酸酯降解的N-掺杂二氧化钛:氮气和钛效应的前体

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Degradation of a mixture of five parabens was evaluated using photocatalytic oxidation, photolytic ozonation and photocatalytic ozonation, being applied UVA radiation and N-TiO2 doped catalysts. Photocatalytic oxidation was not able to eliminate parabens, achieving less than 10 % of removal. The use of ozone and UVA radiation resulted in total contaminants abatement with a transferred ozone dose (TOD) of 46.2 mg L-1. Photocatalytic ozonation also totally removed parabens but with a considerable reduction of TOD required along with higher COD and TOC removals, up to 35.7 % and 34.1 %, respectively, for the best catalyst (ammonia-doped 10 % N-TiO2). Toxicity tests were conducted using three different species. Lepidium sativum seeds had higher growth indexes (GIs) when exposed to solutions treated by photocatalytic ozonation reactions. Nevertheless, Allivibrio fischeri and Corbiculafluminea demonstrated lower toxic responses to photolytic ozonation treated solution which may be related with the different by-products formed. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用光催化氧化,光溶解臭氧化和光催化臭氧化评估五种羟基苯甲酸盐混合物的降解,施用UVA辐射和N-TiO2掺杂催化剂。光催化氧化不能消除羟基苯甲酸酯,达到少于10%的去除。臭氧和UVA辐射的使用导致总污染物的总污染物与46.2mg L-1的转移的臭氧剂量(TOD)脱落。光催化臭氧化合物还完全除去羟基苯甲酸酯,但随着最高COD和TOC除去的鳕鱼和TOC除去,可分别为最佳催化剂(氨掺杂10%N-TiO 2),具有相当大的TOD减少。使用三种不同物种进行毒性测试。当暴露于光催化臭氧化反应处理的溶液暴露于溶液时,Sativum种子具有较高的生长指标(GIS)。然而,AlliGibrio Fischeri和Corbiculaflumlumlumea表现出对光解臭氧处理溶液的毒性反应较低,其可能与形成的不同的副产物有关。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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