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利用复合人工湿地处理奶牛场废水和城市污水时基于废水质量指数的废水水质评价

Wastewater quality evaluation in terms of wastewater quality index using hybrid constructed wetland for treatment of dairy and municipal wastewater.

作者信息

Krishna Singh K, Rakesh Vaishya C

机构信息

Civil Engineering, Noida International University, Greater Noida, India.

Department of Civil Engineering, Motilal Nehru National Institute of Technology Allahabad, Prayagraj, India.

出版信息

Water Environ Res. 2025 Feb;97(2):e70024. doi: 10.1002/wer.70024.

Abstract

The world's most pressing problem is water shortage, which is made worse by fast industrialization and urbanization, especially in places like India where untreated effluent presents serious threats to human health and the environment. In order to treat dairy and municipal wastewater, this study assesses the efficacy of a two-stage hybrid constructed wetland (CW) system. The WWQI is the primary focus of this evaluation over a range of mixing ratios. Before and after treatment, many physicochemical parameters were examined, including pH, total suspended solids (TSS), chemical oxygen demand (COD), biochemical oxygen demand (BOD), total phosphorus (TP), ammonia nitrogen ( ), and nitrate nitrogen ( ). The hybrid CWs system dramatically lowers pollutant concentrations, according to the results, with combinations containing higher amounts of MWW showing the best results. The WWQI values, which change from "unfit for any uses" in untreated DWW to "excellent" quality in treated MWW, show these advancements. The results highlight the potential of hybrid CWs as an effective and sustainable wastewater treatment method, especially when it comes to maximizing the proportion of dairy to municipal wastewater. This study adds to our knowledge of efficient wastewater treatment techniques and highlights the significance of incorporating eco-friendly technologies to tackle water scarcity issues. PRACTITIONER POINTS: Hybrid Constructed Wetlands (HCWs) are effective in removing TSS, BOD, COD, TP, ammonia nitrogen, and nitrate nitrogen from dairy and municipal wastewater. On the basis of HCWs performance determine the Wastewater Quality Index (WWQI) for four different ratio proportions of dairy and municipal wastewater. This index is more useful for water quality status determination and treated water reuse for various purposes. This also benefits sustainable treatment technology and contributes to achieving SDGs.

摘要

世界上最紧迫的问题是水资源短缺,快速的工业化和城市化使这一问题更加严重,尤其是在印度等地,未经处理的污水对人类健康和环境构成严重威胁。为了处理乳制品和城市污水,本研究评估了两级混合人工湿地(CW)系统的效能。在一系列混合比例范围内,废水水质指数(WWQI)是本次评估的主要重点。在处理前后,检测了许多理化参数,包括pH值、总悬浮固体(TSS)、化学需氧量(COD)、生化需氧量(BOD)、总磷(TP)、氨氮( )和硝酸盐氮( )。结果表明,混合人工湿地系统显著降低了污染物浓度,含较高比例市政污水的组合效果最佳。WWQI值从未经处理的乳制品废水的“不适合任何用途”变为处理后市政污水的“优良”水质,显示了这些进展。结果突出了混合人工湿地作为一种有效且可持续的污水处理方法的潜力,特别是在最大化乳制品污水与城市污水比例方面。本研究增加了我们对高效污水处理技术的了解,并强调了采用环保技术解决水资源短缺问题的重要性。从业者要点:混合人工湿地(HCWs)能有效去除乳制品和城市污水中的TSS、BOD、COD、TP、氨氮和硝酸盐氮。根据HCWs的性能,确定四种不同比例的乳制品污水和城市污水的废水水质指数(WWQI)。该指数对于确定水质状况和将处理后的水用于各种目的更有用。这也有利于可持续处理技术,并有助于实现可持续发展目标。

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