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基于碳中和的微污染复杂水体治理与修复

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微污染复杂水体的治理与修复已逐渐成为全球性的环境难题,亟须绿色低碳的新兴技术予以解决.本文首先对"复杂水体"这一新概念进行了定义,并对典型复杂水体进行了举例说明.之后,系统梳理、概述了水体(包括复杂水体)中发生的微污染现象及其存在的主要新微污染物种类;全面深入总结、探讨了微污染复杂水体治理与修复相关技术(包括物理化学处理技术、高级氧化技术、生物处理技术和联合/协同处理技术)的最新进展;提出了基于碳中和的微污染复杂水体治理与修复的策略与方案.最后,对该领域今后的研究重点及未来发展方向做出了展望,旨在促进水体微污染问题的系统研究与根治,进而为改善水生生态系统、提升饮用水安全和实现碳中和目标奠定科学基础.
Treatment and remediation of micro-polluted complex water based on carbon neutrality
With increasing types of micropollutants detected in water environments,especially the discovery of a considerable number of emerging micropollutants with major potential harms to aquatic ecosystems and human health,the treatment and remediation of micro-polluted complex water has gradually become a global challenging environmental problem,which needs to be solved by emerging green and low-carbon technologies.However,the end product from micro-polluted complex water treated by advanced oxidation and other traditional technologies is CO2,undoubtedly becoming an approach against the concept of carbon neutrality.The realization of carbon neutrality in the process of treating micropollutants in complex water requires to break away from the existing mindset of water treatment and remediation,and fully open up the mode of overall technological innovation.This review first defines the new concept of"complex water",which refers to a series of waters with complex characteristics or containing multi-components,such as complex waters in mining areas,urban runoff,farmland drainage or agricultural runoff and oil-containing waters,and even involving multicomponent polluted rivers,stream,lakes,seawater and groundwater;according to this definition,some examples of typical complex water are illustrated.Then,the micro-pollution phenomena(refers to potential harms on ecosystems and human health resulted from harmful substances with low concentration levels in waters)and the main types(including microplastics and pharmaceuticals and personal care products such as antibiotics,anti-inflammatory and analgesic drugs,βreceptor antagonists,psychotropic drugs,hypolipidemic drugs,as well as cosmetics and skincare products used in daily life)of emerging micro-pollutants that occur in waters(including complex water)are systematically combed and summarized.Afterwards,the latest progress of some advanced treatment/remediation methods including physicochemical technology such as activated carbon adsorption,membrane treatment and ultrasonic treatment,advanced oxidation technology such as ozone catalytic oxidation,photocatalytic oxidation,electrochemical oxidation,persulfate oxidation,as well as Fenton,photo-Fenton,and electro-Fenton catalytic oxidation,biological treatment technology such as biofilm and activated sludge,and combined or collaborative treatment technology of physicochemical technology,advanced oxidation and biological treatment technology for micro-polluted complex water is comprehensively introduced and discussed.In particular,the strategy and solution for the treatment and remediation of micro-polluted complex water based on the carbon-neutral approach is tentatively proposed,including(1)model of pure technological innovation,based on innovative physiochemical treatment technologies,advanced oxidation,biological treatment technologies,and their combined/collaborative treatment technologies,with the emphasis on zero carbon emissions;(2)model dominated by changing microbial functions(i.e.by capturing greenhouse gases)and by increasing the photosynthetic potential of green plants;(3)model of advanced treatment technologies coupled with ecological enhancement of existing carbon sinks;and(4)model of comprehensive utilization based on ecological remediation.Thus,the future path in treatment and remediation of micro-polluted complex water should be created from the perspective of the overall technological innovation with multiple goals under the framework of carbon neutrality.Finally,the future research focus and development direction of this field are outlined,aiming at promotion of the systematic research and eradication of water micro-pollution problems,thus laying a scientific foundation for improving aquatic ecosystems,enhancing the safety of drinking water and realizing the goal of carbon neutrality.

complex watermicropollutanttreatment and remediation technologycarbon neutrality

程思雯、王鹏飞、周启星

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南开大学环境科学与工程学院/南开大学碳中和交叉科学中心,环境污染过程与基准教育部重点实验室,天津 300350

天津理工大学环境科学与安全工程学院,天津 300384

复杂水体 微污染物 治理与修复技术 碳中和

国家重点研发计划高等学校学科创新引智计划

2023YFC3709001B17025

2024

科学通报
中国科学院国家自然科学基金委员会

科学通报

CSTPCD北大核心
影响因子:1.269
ISSN:0023-074X
年,卷(期):2024.69(19)
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