State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, PR China.
J Contam Hydrol. 2013 Aug;151:131-9. doi: 10.1016/j.jconhyd.2013.05.006. Epub 2013 May 31.
We investigated the biodegradation of three selected benzotriazoles (BTs), namely benzotriazole (BT), 5-methyl-benzotriazole (5-TTri) and 5-chloro-benzotriazole (CBT), in aquifer materials. Biodegradation experiments were conducted in microcosms with fresh groundwater and aquifer sediment materials under aerobic and anaerobic (nitrate, sulfate, and Fe (III) reducing) conditions. All three BTs were degraded by microorganisms in aquifer materials under aerobic and anaerobic conditions. Under aerobic conditions, BT and 5-TTri were found to be degraded fastest with their half-lives of 43 days and 31 days, respectively, among the redox conditions used. Under anaerobic conditions, CBT was found to be degraded better with its half-life of 21 days under nitrate reducing conditions than under aerobic conditions with its half-life of 47 days. The two BT derivatives 5-TTri and CBT could be biotransformed into BT via demethylation and dechlorination reactions, respectively.
我们研究了三种选定的苯并三唑(BTs),即苯并三唑(BT)、5-甲基苯并三唑(5-TTri)和 5-氯苯并三唑(CBT),在含水层物质中的生物降解情况。在有氧和无氧(硝酸盐、硫酸盐和 Fe(III)还原)条件下,在带有新鲜地下水和含水层沉积物的微宇宙中进行了生物降解实验。在有氧和无氧条件下,所有三种 BTs 都被含水层物质中的微生物降解。在有氧条件下,BT 和 5-TTri 的半衰期分别为 43 天和 31 天,在使用的氧化还原条件下,它们被发现降解最快。在无氧条件下,CBT 在硝酸盐还原条件下的半衰期为 21 天,比有氧条件下的半衰期 47 天要好。两种 BT 衍生物 5-TTri 和 CBT 可以分别通过脱甲基和脱氯反应转化为 BT。