论文标题

用versicolor污染的苯唑污染的水的修复:在非紧密条件下,在trick流的反应堆中进行表征,转换产物的识别和实施

Remediation of bentazone contaminated water by Trametes versicolor: characterization, identification of transformation products, and implementation in a trickle-bed reactor under non-sterile conditions

论文作者

Garcia-Vara, Manuel, Hu, Kaidi, Postigo, Cristina, Olmo, Lluc, Caminal, Gloria, Sarra, Montserrat, de Alda, Miren Lopez

论文摘要

本特唑是一种在水稻和谷物作物中广泛施用的除草剂,在水生环境中很普遍。这项研究评估了versicolor从水中去除便特唑的能力。三天在Erlenmeyer-Scale孵化后三天后,该真菌能够完全清除Bentazone。漆酶和细胞色素P450酶促系统都参与了宾唑降解。在此过程中,总共确定了19种转化产品(TPS)。其形成所涉及的反应包括羟基化,氧化,甲基化,氮化和二聚化。提出了TP形成的漆酶介导的自由基机制。鉴于在Erlenmeyer量表上获得的结果,建立了固定在松木木片上的T. versicolor的trick流动反应器,以评估在非抗碳酸盐条件下缩特唑去除期间其稳定性。测序批次操作30天后,获得了48%的平均去除48%,并在木质纤维素支撑材料上吸附有相当大的贡献。细菌污染是实施真菌生物反应器的瓶颈,根据该特定系统的维持性能成功解决了细菌污染。这项研究是实施真实生物修复的开创性一步。

Bentazone, an herbicide widely applied in rice and cereal crops, is widespread in the aquatic environment. This study evaluated the capacity of Trametes versicolor to remove bentazone from water. The fungus was able to completely remove bentazone after three days at Erlenmeyer-scale incubation. Both laccase and cytochrome P450 enzymatic systems were involved in bentazone degradation. A total of 19 transformation products (TPs) were identified to be formed during the process. The reactions involved in their formation included hydroxylations, oxidations, methylations, N-nitrosation, and dimerization. A laccase mediated radical mechanism was proposed for TP formation. In light of the results obtained at the Erlenmeyer scale, a trickle-bed reactor with T. versicolor immobilized on pine wood chips was set up to evaluate its stability during bentazone removal under non-sterile conditions. After 30 days of sequencing batch operation, an average bentazone removal of 48 % was obtained, with a considerable contribution of adsorption onto the lignocellulosic support material. Bacterial contamination, which is the bottleneck in the implementation of fungal bioreactors, was successfully addressed by this particular system according to its maintained performance. This research is a pioneering step forward to the implementation of fungal bioremediation on a real scale.

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