狄克洛芬雅克臭氧化产品的酶降解性:一个机械分析分析
Dorothee Schmiemann1, Florian Bicks2, Indra Bartels3
1Department of Chemistry and Institute for Coatings and Surface Chemistry, Niederrhein University of Applied Sciences, Adlerstr. 32, 47798, Krefeld, Germany; Institute of Physical Chemistry and CENIDE (Center for Nanointegration), University Duisburg-Essen, Universitätsstraße 5, 45141, Essen, Germany.
使用乳糖酶的酶处理对降解微污染物的臭氧化副产品 (如二二) 是有前途的. 然而,效率取决于激素中间体的化学途径,寡合化抑制了完全的排毒.
科学领域:
- 环境化学环境化学
- 生物技术是生物技术.
- 处理水处理水处理水处理
背景情况:
- 传统的废水处理系统在微污染物清除方面遇到了困难.
- 臭氧化有效降解微污染物,但可以产生有毒的副产品.
- 酶治疗作为臭氧化后的一步被探索.
研究的目的:
- 评估laccase在降解狄克洛芬加臭氧化产品中的有效性.
- 研究这些副产品酶降解的动力学和机制.
- 评估酶治疗作为一个可行的后臭氧化策略.
主要方法:
- 使用HPLC-HRMS和MS2.2对14种迪克洛菲纳克臭氧化产品的分析.
- 用来自Trametes versicolor的乳糖进行酶性消化实验.
- 转化产品的机械研究.
主要成果:
- 大多数臭氧化产品对化学酶治疗敏感,降解动力学不同.
- 副产品的氧化芳香结构促进了乳糖酶的识别.
- 基底基因的寡合化,而不是酶的吸收,有限的完全解毒.
结论:
- 用乳糖酶进行酶处理是微污染物副产品的潜在后臭氧化方法.
- 降解效率取决于酶形成的基因的命运.
- 控制激素通路,特别是防止寡合化,对于有效的废水处理至关重要.
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