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审视生物电化学系统(BES)在营养物质转化和回收方面的当前趋势和未来展望:综述。

Examining current trends and future outlook of bio-electrochemical systems (BES) for nutrient conversion and recovery: an overview.

机构信息

Department of Civil Engineering, Indian Institute of Technology Hyderabad, Hyderabad, India, 502285.

出版信息

Environ Sci Pollut Res Int. 2023 Aug;30(37):86699-86740. doi: 10.1007/s11356-023-28500-1. Epub 2023 Jul 12.

Abstract

Nutrient-rich waste streams from domestic and industrial sources and the increasing application of synthetic fertilizers have resulted in a huge-scale influx of reactive nitrogen and phosphorus in the environment. The higher concentrations of these pollutants induce eutrophication and foster degradation of aquatic biodiversity. Besides, phosphorus being non-renewable resource is under the risk of rapid depletion. Hence, recovery and reuse of the phosphorus and nitrogen are necessary. Over the years, nutrient recovery, low-carbon energy, and sustainable bioremediation of wastewater have received significant interest. The conventional wastewater treatment technologies have higher energy demand and nutrient removal entails a major cost in the treatment process. For these issues, bio-electrochemical system (BES) has been considered as sustainable and environment friendly wastewater treatment technologies that utilize the energy contained in the wastewater so as to recovery nutrients and purify wastewater. Therefore, this article comprehensively focuses and critically analyzes the potential sources of nutrients, working mechanism of BES, and different nutrient recovery strategies to unlock the upscaling opportunities. Also, economic analysis was done to understand the technical feasibility and potential market value of recovered nutrients. Hence, this review article will be useful in establishing waste management policies and framework along with development of advanced configurations with major emphasis on nutrient recovery rather than removal from the waste stream.

摘要

富含营养的废水来自家庭和工业源,以及合成肥料的应用不断增加,导致环境中大量涌入活性氮和磷。这些污染物浓度的升高导致富营养化,并促进水生生物多样性的退化。此外,磷是不可再生资源,面临着迅速枯竭的风险。因此,磷和氮的回收和再利用是必要的。多年来,人们对营养物质回收、低碳能源和废水的可持续生物修复产生了浓厚的兴趣。传统的废水处理技术需要更高的能源需求,而营养物质的去除在处理过程中需要大量的成本。针对这些问题,生物电化学系统(BES)被认为是一种可持续和环保的废水处理技术,它利用废水中所含的能量来回收营养物质并净化废水。因此,本文全面关注和批判性地分析了营养物质的潜在来源、BES 的工作机制以及不同的营养物质回收策略,以挖掘扩大规模的机会。此外,还进行了经济分析,以了解回收营养物质的技术可行性和潜在市场价值。因此,这篇综述文章将有助于制定废物管理政策和框架,以及开发先进的配置,主要侧重于从废水中回收营养物质,而不是去除营养物质。

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