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推动光催化与生物降解体系的紧密耦合的实际应用:体系改良、环境影响和分析策略。

Propelling the practical application of the intimate coupling of photocatalysis and biodegradation system: System amelioration, environmental influences and analytical strategies.

机构信息

Key Laboratory of Integrated Regulation and Resource Development of Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Xikang Road #1, Nanjing, 210098, PR China.

Key Laboratory of Integrated Regulation and Resource Development of Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Xikang Road #1, Nanjing, 210098, PR China.

出版信息

Chemosphere. 2022 Jan;287(Pt 2):132196. doi: 10.1016/j.chemosphere.2021.132196. Epub 2021 Sep 8.

Abstract

The intimate coupling of photocatalysis and biodegradation (ICPB) possesses an enhanced ability of recalcitrant contaminant removal and energy generation, owing to the compact communication between biotic components and photocatalysts during the system operation. The photocatalysts in the ICPB system could dispose of noxious contaminants to relieve the external pressure on microorganisms which could realize the mineralization of the photocatalytic degradation products. However, due to the complex components in the composite system, the mechanism of the ICPB system has not been completely understood. Moreover, the variable environmental conditions would play a significant role in the ICPB system performance. The further development of the ICPB scheme requires clarification on how to reach an accurate understanding of the system condition during the practical application. This review starts by offering detailed information on the system construction and recent progress in the system components' amelioration. We then describe the potential influences of relevant environmental factors on the system performance, and the analytical strategies applicable for comprehending the critical processes during the system operation are further summarized. Finally, we put forward the research gaps in the current system and envision the system's prospective application. This review provides a valuable reference for future researches that are devoted to assessing the environmental disturbance and exploring the reaction mechanisms during the practical application of the ICPB system.

摘要

光催化与生物降解的紧密偶联(ICPB)具有增强的难降解污染物去除和能量产生能力,这是由于在系统运行过程中生物成分和光催化剂之间的紧密通信。在 ICPB 系统中的光催化剂可以处理有害物质以减轻微生物的外部压力,微生物可以实现光催化降解产物的矿化。然而,由于复合系统的复杂成分,ICPB 系统的机制尚未完全理解。此外,可变的环境条件将在 ICPB 系统性能中发挥重要作用。为了进一步发展 ICPB 方案,需要明确如何在实际应用中准确了解系统条件。

本综述首先详细介绍了系统结构和系统组件改进的最新进展。然后,我们描述了相关环境因素对系统性能的潜在影响,并进一步总结了适用于理解系统运行过程中关键过程的分析策略。最后,我们提出了当前系统中的研究差距,并展望了系统的未来应用。

本综述为未来的研究提供了有价值的参考,有助于评估 ICPB 系统实际应用中的环境干扰和探索反应机制。

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