Department of Chemical Engineering, KPR Institute of Engineering and Technology, Coimbatore, 641027, India.
Departamento de Ingeniería Mecánica, Facultad de Ingeniería, Universidad de Tarapacá, Avda. General Velásquez, 1775, Arica, Chile.
Chemosphere. 2022 Nov;307(Pt 4):135957. doi: 10.1016/j.chemosphere.2022.135957. Epub 2022 Aug 17.
Globally, ecotoxicologists, environmental biologists, biochemists, pathologists, and other experts are concerned about environmental contamination. Numerous pollutants, such as harmful heavy metals and emerging hazardous chemicals, are pervasive sources of water pollution. Water pollution and sustainable development have several eradication strategies proposed and used. Biosorption is a low-cost, easy-to-use, profitable, and efficient method of removing pollutants from water resources. Microorganisms are effective biosorbents, and their biosorption efficacy varies based on several aspects, such as ambient factors, sorbing materials, and metals to be removed. Microbial culture survival is also important. Biofilm agglomerates play an important function in metal uptake by extracellular polymeric molecules from water resources. This study investigates the occurrence of heavy metals, their removal by biosorption techniques, and the influence of variables such as those indicated above on biosorption performance. Ion exchange, complexation, precipitation, and physical adsorption are all components of biosorption. Between 20 and 35 °C is the optimal temperature range for biosorption efficiency from water resources. Utilizing living microorganisms that interact with the active functional groups found in the water contaminants might increase biosorption efficiency. This article discusses the negative impacts of microorganisms on living things and provides an outline of how they affect the elimination of heavy metals.
全球范围内,生态毒理学家、环境生物学家、生物化学家、病理学家和其他专家都对环境污染表示关注。大量的污染物,如有害重金属和新兴危险化学品,是水污染的普遍来源。水污染和可持续发展有多种提出和使用的消除策略。生物吸附是一种从水资源中去除污染物的低成本、易于使用、盈利和高效的方法。微生物是有效的生物吸附剂,其生物吸附效果因环境因素、吸附材料和待去除的金属等因素而异。微生物的培养生存也很重要。生物膜聚集体在从水资源中通过细胞外聚合物分子摄取金属方面发挥着重要作用。本研究调查了重金属的存在、生物吸附技术对重金属的去除,以及上述变量对生物吸附性能的影响。离子交换、络合、沉淀和物理吸附都是生物吸附的组成部分。生物吸附效率的最佳温度范围在 20 到 35°C 之间。利用与水中污染物中发现的活性官能团相互作用的活微生物可以提高生物吸附效率。本文讨论了微生物对生物的负面影响,并概述了它们对重金属消除的影响。