Holistic Management of Wastewater Pollution Through Biological Treatment: A Sustainable Future

IF 1.5 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Clean-soil Air Water Pub Date : 2024-12-10 DOI:10.1002/clen.202400059
Bidisha Chatterjee, Stootee Baruah, Deepsikha Chatterjee, Sharadia Dey, Arup Kumar Mitra
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Abstract

The global population is increasing at an elevated speed leading to the expansion of urbanization at the cost of environmental degradation, especially aquatic ecosystem pollution due to the enhanced discharge of wastewater. These aquatic ecosystems are primarily polluted by potentially toxic elements, polyaromatic hydrocarbons, dyes, plastics, pesticides, organic compounds, and molecules present in fertilizers, household wastes, industrial effluents, and sewage discharge. The enhanced deterioration of water bodies has led to the search for natural solutions for a sustainable ecosystem. The utilization of the natural microbial flora of the aquatic ecosystem for remediation, more popularly known as bioremediation, is of global interest because of its cost-effectiveness and eco-friendly approach. Bioremediation can be broadly categorized into bacterial remediation, mycoremediation, and phytoremediation and is more commonly studied for soil pollution. However, in this review, we discuss bioremediation techniques and mechanisms with respect to water pollution. Aquatic microbes utilize the toxic components present in wastewater as a substrate for their own metabolism by acting as a biologically active methylator or by chemical alteration of the toxicants into less harmful products, thus degrading the toxic environmental pollutants into nontoxic products thereby eliminating their detrimental effects. Microalgae used in phytoremediation also help to elevate the dissolved oxygen level in the aquatic ecosystem thereby reducing the probability of eutrophication. This review represents the study of diverse pollutants remediation and a method involving microbial consortia in a bioreactor for optimum efficacy at minimum cost.

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通过生物处理全面管理废水污染:可持续的未来
全球人口的高速增长导致了城市化的扩大,但代价是环境的退化,特别是由于废水排放增加而造成的水生生态系统污染。这些水生生态系统主要受到潜在有毒元素、多芳烃、染料、塑料、农药、有机化合物和肥料、家庭废物、工业废水和污水排放中的分子的污染。水体恶化的加剧促使人们寻求可持续生态系统的自然解决办法。利用水生生态系统的天然微生物菌群进行修复,更通俗地称为生物修复,由于其成本效益和生态友好的方法而引起全球的兴趣。生物修复大致可分为细菌修复、真菌修复和植物修复,对土壤污染的研究较多。然而,在这篇综述中,我们讨论了关于水污染的生物修复技术和机制。水生微生物利用废水中的有毒成分作为其自身代谢的底物,作为生物活性甲基化剂或通过化学改变将有毒物质转化为危害较小的产物,从而将有毒环境污染物降解为无毒产物,从而消除其有害影响。微藻用于植物修复还有助于提高水生生态系统中的溶解氧水平,从而降低富营养化的可能性。本文综述了多种污染物修复的研究和一种涉及微生物群落的生物反应器中以最小成本获得最佳效果的方法。
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来源期刊
Clean-soil Air Water
Clean-soil Air Water 环境科学-海洋与淡水生物学
CiteScore
2.80
自引率
5.90%
发文量
88
审稿时长
3.6 months
期刊介绍: CLEAN covers all aspects of Sustainability and Environmental Safety. The journal focuses on organ/human--environment interactions giving interdisciplinary insights on a broad range of topics including air pollution, waste management, the water cycle, and environmental conservation. With a 2019 Journal Impact Factor of 1.603 (Journal Citation Reports (Clarivate Analytics, 2020), the journal publishes an attractive mixture of peer-reviewed scientific reviews, research papers, and short communications. Papers dealing with environmental sustainability issues from such fields as agriculture, biological sciences, energy, food sciences, geography, geology, meteorology, nutrition, soil and water sciences, etc., are welcome.
期刊最新文献
Issue Information: Clean Soil Air Water. 12/2024 Holistic Management of Wastewater Pollution Through Biological Treatment: A Sustainable Future Anaerobic Naphthalene Biotransformation Coupled to Sulfate Reduction Commercial Blue Textile Dye Decolorization Using Aspergillus oryzae RH1 Isolated From Fermented Miso Issue Information: Clean Soil Air Water. 11/2024
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