砷污染的补救措施

G. Khatisashvili, Tamar Varazi, M. Kurashvili, M. Pruidze, E. Bunin, K. Didebulidze, T. Butkhuzi, E. Bakradze, N. Asatiani, T. Kartvelishvili, N. Sapojnikova
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引用次数: 0

摘要

该研究致力于格鲁吉亚的一个非常紧迫和尖锐的问题-砷采矿和储存地点的补救/恢复。给定作品的方法是基于利用自然本身的能力,对化学环境污染具有很大的适应潜力。该研究的目的是鉴定地方性土壤微生物群中的细菌菌株,这些菌株具有砷污染地点特定区域的特征,并且能够抵抗毒物。为了确定砷污染水平,采用电感耦合等离子体-发射光谱法对土壤样品进行了分析。土壤样品中砷的分布根据污染程度将其分为50 ppm至13000 ppm的类别。采用传统的培养方法和现代的生物指示方法——生物芯片对当地的细菌群落进行了研究。该低密度生物芯片包含用于土壤微生物群细菌联合体鉴定的相关探针。化学和微生物分析是基于国际标准组织(ISO)和环境保护署(EPA)制定的标准和方法。在循环经济背景下,生物修复技术有望成为砷污染治理的重要组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remedial Approaches against Arsenic Pollution
The study is devoted to a very urgent and acute problem for Georgia – remediation/restoration of the arsenic (As) mining and storage sites. The approach of a given work is based on using capabilities of nature itself, which has a great adaptive potential to chemical environmental pollution. The aim of the study is to identify the bacterial strains from the endemic soil microbiota, characteristic to a specific localization of arsenic contaminated sites and able to resist to the toxicant. To determine the level of arsenic contamination, soil samples have been analyzed using Inductively Coupled Plasma - Optical Emission Spectrometry method. The distribution of arsenic in soil samples splits them into categories according to the degree of contamination, ranging from 50 ppm to 13000 ppm. The local bacteria community has been studied using conventional cultivation method along with modern method of bioindication – a biochip. The low density biochip contains the relevant probes for the identification of the bacterial consortium in soil microbiota. Chemical and microbiological analysis was based on the standards and methodologies developed by International Standards Organizations – ISO and Environmental Protection Agency – EPA. It is prospected that bioremediation can become essential part of remediation against arsenic pollution in the context of circular economy.
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