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农业工业废弃物及其在使用生物复合材料和细菌生物质进行金属去污中的应用前景:综述

Agro-industrial wastes and their application perspectives in metal decontamination using biocomposites and bacterial biomass: a review.

作者信息

Parades-Aguilar Jonathan, Agustin-Salazar Sarai, Cerruti Pierfrancesco, Ambrogi Veronica, Calderon Kadiya, Gamez-Meza Nohemi, Medina-Juarez Luis Angel

机构信息

Departamento de Investigaciones Científicas y Tecnológicas, Universidad de Sonora, Blvd. Luis Donaldo Colosio s/n, entre Reforma y Sahuaripa, Edificio 7G, Col. Centro, Hermosillo, Sonora, C.P. 83000, Mexico.

Institute for Polymers, Composites and Biomaterials (IPCB-CNR), Via Campi Flegrei 34, Pozzuoli (Na), 80078, Italy.

出版信息

World J Microbiol Biotechnol. 2024 Dec 23;41(1):16. doi: 10.1007/s11274-024-04227-0.

Abstract

Contamination of water bodies is a significant global issue that results from the deliberate release of pollutants into the environment, especially from mining and metal processing industries. The main pollutants generated by these industries are metallic wastes, particularly metals, which can cause adverse effects on the environment and human health. Therefore, it is crucial to develop effective and sustainable approaches to prevent their discharge into the environment. Biofiltration is a technique used to remediate contaminated fluids using biological processes. Microorganisms and agro-industrial wastes have been used successfully as biosorbents. Hence, this review emphasizes the innovative use of agro-industrial waste reinforced with microbial biomass as bioadsorbents, highlighting their dual capacity for metal removal through various bioremediation mechanisms. The mechanisms at play in these biocomposite materials, which offer enhanced sustainability, are also analyzed. This study contributes to the advancement of knowledge by suggesting new strategies for integrating reinforced materials in biosorption processes, thus providing a novel perspective on the potential of lignocellulosic-based systems to improve decontamination efforts. On the other hand, it shows some studies where the optimization and scaling-up of biosorption processes are reported. Additionally, the implementation of multisystem approaches, leveraging multiple bioremediation techniques simultaneously, can further enhance the efficiency and sustainability of metal removal in contaminated environments.

摘要

水体污染是一个重大的全球性问题,它源于污染物被故意排放到环境中,尤其是来自采矿和金属加工行业。这些行业产生的主要污染物是金属废物,特别是金属,它们会对环境和人类健康造成不利影响。因此,开发有效且可持续的方法来防止它们排放到环境中至关重要。生物过滤是一种利用生物过程修复受污染流体的技术。微生物和农业工业废物已成功用作生物吸附剂。因此,本综述强调了用微生物生物质强化的农业工业废物作为生物吸附剂的创新用途,突出了它们通过各种生物修复机制去除金属的双重能力。还分析了这些具有更高可持续性的生物复合材料中起作用的机制。本研究通过提出在生物吸附过程中整合增强材料的新策略,为知识的进步做出了贡献,从而为基于木质纤维素的系统改善去污效果的潜力提供了新的视角。另一方面,它展示了一些报道生物吸附过程优化和扩大规模的研究。此外,同时利用多种生物修复技术的多系统方法的实施,可以进一步提高污染环境中金属去除的效率和可持续性。

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