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用于水和废水处理的高级氧化工艺——未来系统研究指南。

Advanced oxidation processes for water and wastewater treatment - Guidance for systematic future research.

作者信息

Hübner Uwe, Spahr Stephanie, Lutze Holger, Wieland Arne, Rüting Steffen, Gernjak Wolfgang, Wenk Jannis

机构信息

Chair of Urban Water Systems Engineering, Technical University of Munich, Am Coulombwall 3, 85748, Garching, Germany.

Xylem Services GmbH, Boschstraße 4-14, 32051, Herford, Germany.

出版信息

Heliyon. 2024 Apr 28;10(9):e30402. doi: 10.1016/j.heliyon.2024.e30402. eCollection 2024 May 15.

Abstract

Advanced oxidation processes (AOPs) are a growing research field with a large variety of different process variants and materials being tested at laboratory scale. However, despite extensive research in recent years and decades, many variants have not been transitioned to pilot- and full-scale operation. One major concern are the inconsistent experimental approaches applied across different studies that impede identification, comparison, and upscaling of the most promising AOPs. The aim of this tutorial review is to streamline future studies on the development of new solutions and materials for advanced oxidation by providing guidance for comparable and scalable oxidation experiments. We discuss recent developments in catalytic, ozone-based, radiation-driven, and other AOPs, and outline future perspectives and research needs. Since standardized experimental procedures are not available for most AOPs, we propose basic rules and key parameters for lab-scale evaluation of new AOPs including selection of suitable probe compounds and scavengers for the measurement of (major) reactive species. A two-phase approach to assess new AOP concepts is proposed, consisting of (i) basic research and proof-of-concept (technology readiness levels (TRL) 1-3), followed by (ii) process development in the intended water matrix including a cost comparison with an established process, applying comparable and scalable parameters such as UV fluence or ozone consumption (TRL 3-5). Subsequent demonstration of the new process (TRL 6-7) is briefly discussed, too. Finally, we highlight important research tools for a thorough mechanistic process evaluation and risk assessment including screening for transformation products that should be based on chemical logic and combined with complementary tools (mass balance, chemical calculations).

摘要

高级氧化工艺(AOPs)是一个不断发展的研究领域,有大量不同的工艺变体和材料正在实验室规模进行测试。然而,尽管近年来和过去几十年进行了广泛研究,但许多变体尚未过渡到中试和全规模运行。一个主要问题是不同研究中应用的实验方法不一致,这阻碍了最有前景的AOPs的识别、比较和放大。本教程综述的目的是通过为可比且可扩展的氧化实验提供指导,简化未来关于新型高级氧化解决方案和材料开发的研究。我们讨论了催化、基于臭氧、辐射驱动和其他AOPs的最新进展,并概述了未来的前景和研究需求。由于大多数AOPs没有标准化的实验程序,我们提出了用于新AOPs实验室规模评估的基本规则和关键参数,包括选择合适的探针化合物和清除剂以测量(主要)活性物种。提出了一种评估新AOP概念的两阶段方法,包括(i)基础研究和概念验证(技术就绪水平(TRL)1-3),随后是(ii)在目标水基质中进行工艺开发,包括与既定工艺进行成本比较,应用可比且可扩展的参数,如紫外线通量或臭氧消耗量(TRL 3-5)。还简要讨论了新工艺的后续示范(TRL 6-7)。最后,我们强调了用于全面机理过程评估和风险评估的重要研究工具,包括基于化学逻辑筛选转化产物,并结合补充工具(质量平衡、化学计算)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3127/11079112/50f8b31bfee0/gr1.jpg

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