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通过电凝聚和沸石吸附强化废水中污染物的去除:分析与微生物评估

Strengthened pollutants abatement in wastewater through electrocoagulation and zeolite adsorption: analytical and microbial assessment.

作者信息

Ait Baha Abdellah, Zrikam Nidal, Idouhli Rachid, Tabit Kamal, Fels Loubna El, Khadiri Mohy Eddine

机构信息

Laboratory of Physical Chemistry of Materials and Environment, Department of Chemistry, Faculty of Science Semlalia, Cadi Ayyad University, BP 2390, Marrakech, Morocco.

Laboratory of Microbial Biotechnologies Agrosciences and Environment (BioMAgE), Labeled Research Uni N°4 CNRST, Faculty of Sciences Semlalia, Cadi Ayyad University, Marrakech, Morocco.

出版信息

Environ Sci Pollut Res Int. 2025 May;32(23):13768-13781. doi: 10.1007/s11356-025-36492-3. Epub 2025 May 10.

Abstract

As the global population rapidly increases, so does the water demand, making effective wastewater treatment essential to mitigate pollutants, including heavy metals, organic compounds, and microbial contaminants. These pollutants pose significant health risks, exacerbate environmental crises, and disrupt ecosystems, emphasizing the urgent need for sustainable solutions. This study explores the electrocoagulation-adsorption (EC-Ads) integrated treatment process as a promising approach for contaminant removal from wastewater. The method simultaneously generates in situ coagulants while leveraging the retention capabilities of zeolite. A NaOH-prefusion-mediated hydrothermal synthesis was employed to convert clay-rich illite and fumed silica by-product into pure analcime-C zeolite. This material demonstrated high crystallinity (89%), a specific surface area of 23.76 m/g, and a cation exchange capacity (CEC) of 510 meq/100g. Initially, the EC process was optimized for chromium (VI) removal from synthetic solutions, achieving an 85% removal efficiency at an energy consumption of 0.5 kWh/g under optimal conditions (initial pH 5, current density 10 mA/cm, and electrolysis time 40 min). Subsequently, the EC and EC-Ads processes were applied to real wastewater samples. Under optimized conditions, the EC-Ads process achieved 97.85% chromium removal with an energy consumption of 7.32 Wh/L. Additionally, reductions in chemical oxygen demand (COD) and total organic carbon (TOC) were observed at 60.19% and 94.09%, respectively. Notably, complete eradication (100%) of microbial contaminants, including microflora, fungi, and coliforms, was achieved. These findings highlight the efficiency and sustainability of the EC-Ads integrated approach in removing diverse pollutants from wastewater, offering a reliable solution to enhance water quality in treatment facilities.

摘要

随着全球人口的迅速增长,水需求也在增加,这使得有效的废水处理对于减轻包括重金属、有机化合物和微生物污染物在内的污染物至关重要。这些污染物构成重大健康风险,加剧环境危机并破坏生态系统,凸显了对可持续解决方案的迫切需求。本研究探索了电凝-吸附(EC-Ads)集成处理工艺,作为一种从废水中去除污染物的有前景的方法。该方法在利用沸石的保留能力的同时原位生成凝聚剂。采用NaOH预熔介导的水热合成法将富含粘土的伊利石和气相二氧化硅副产物转化为纯方沸石-C沸石。该材料具有高结晶度(89%)、23.76 m/g的比表面积和510 meq/100g的阳离子交换容量(CEC)。最初,对电凝工艺进行了优化,以从合成溶液中去除六价铬,在最佳条件下(初始pH值5、电流密度10 mA/cm²和电解时间40分钟),能耗为0.5 kWh/g时,去除效率达到85%。随后,将电凝和电凝-吸附工艺应用于实际废水样品。在优化条件下,电凝-吸附工艺实现了97.85%的铬去除率,能耗为7.32 Wh/L。此外,化学需氧量(COD)和总有机碳(TOC)分别降低了60.19%和94.09%。值得注意的是,实现了对包括微生物群落、真菌和大肠菌群在内的微生物污染物的完全根除(100%)。这些发现突出了电凝-吸附集成方法在去除废水中多种污染物方面的效率和可持续性,为提高处理设施中的水质提供了可靠的解决方案。

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