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浮床湿地技术在雨水径流中的应用:近期发展的关键综述,重点关注重金属和营养物质去除。

Application of floating treatment wetlands for stormwater runoff: A critical review of the recent developments with emphasis on heavy metals and nutrient removal.

机构信息

Department of Environmental Sciences, University of Jammu, Jammu 180006, J&K, India.

Czech University of Life Sciences Prague, Faculty of Environmental Sciences, Kamýcká 129, 16521 Praha 6, Czech Republic.

出版信息

Sci Total Environ. 2021 Jul 10;777:146044. doi: 10.1016/j.scitotenv.2021.146044. Epub 2021 Mar 2.

DOI:10.1016/j.scitotenv.2021.146044
PMID:33689897
Abstract

Floating treatment wetlands (FTWs) are increasingly gaining popularity due to a set of valuable features like wastewater remediation under varied conditions, ecosystem quality preservation, landscape conservation, and aesthetic benefits. FTW is a phyto-technology in which macrophytes grow on a floating raft with their roots in permanent contact with water and remove pollutants via several physicochemical-biological processes. FTW is highly capable of overcoming technical and operational challenges that come way in stormwater treatment due to the erratic nature of hydrologic and input pollutant loads because this innovative buoyant hydroponic design can move up and down with fluctuating water levels in the stormwater pond and can treat highly variable flows. Plants and biofilms attached to the roots hanging beneath the floating mat play a pivotal role in FTWs. The present review encompasses the concept of FTWs, their structural designs, relevance in stormwater management, and mechanism of plant uptake for pollutant removal. The role of FTWs to remove heavy metals and nutrients is also critically analyzed. Understanding hydraulics and other parameters of FTW is vital to effective design. Hence, the role of vegetation coverage, vegetation type, sorption media, aeration frequency, and intensity, and plant density to enhance system efficiency is also highlighted. Due to their operational flexibility and environmentally friendly working with no additional burden on existing urban land use, FTWs entice broad international interest and offer a coherent solution for stormwater management. MAIN FINDINGS: The review delivers state-of-the-art analysis of the current understanding of hydraulics and other parameters of FTWs, and associated mechanisms to enhance the treatment efficiency of FTWs for nutrients and heavy metals removal.

摘要

浮床处理湿地(FTWs)由于具有在各种条件下修复废水、保护生态系统质量、保护景观和提供美学效益等一系列有价值的功能,因此越来越受到关注。FTW 是一种植物技术,其中植物在浮筏上生长,其根部与水永久接触,并通过多种物理化学-生物过程去除污染物。FTW 非常能够克服由于水文和输入污染物负荷的不规则性质而在雨水处理中出现的技术和操作挑战,因为这种创新的浮式水培设计可以随着雨水池水位的波动上下移动,并可以处理高度变化的流量。附着在浮筏下方悬挂的根部上的植物和生物膜在 FTWs 中起着关键作用。本综述涵盖了 FTWs 的概念、其结构设计、在雨水管理中的相关性以及植物吸收去除污染物的机制。FTWs 去除重金属和营养物的作用也得到了批判性分析。了解 FTWs 的水力学和其他参数对于有效设计至关重要。因此,强调了植被覆盖率、植被类型、吸附介质、曝气频率和强度以及植物密度对提高系统效率的作用。由于其操作灵活性和对环境友好,且不会给现有城市土地利用带来额外负担,FTWs 吸引了广泛的国际关注,并为雨水管理提供了一个连贯的解决方案。主要发现:该综述提供了对 FTWs 的水力学和其他参数以及相关机制的最新分析,以提高 FTWs 去除营养物和重金属的处理效率。

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