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稳定铊(Tl)同位素特征作为受采矿活动影响的河流沉积物中可靠的源示踪剂。

Stable thallium (Tl) isotopic signature as a reliable source tracer in river sediments impacted by mining activities.

作者信息

Ouyang Qi'en, Liu Juan, Yuan Wenhuan, Wei Xudong, Liu Yanyi, Bao Zhi'an, Huang Yeliang, Wang Jin

机构信息

School of Environmental Science and Engineering, Guangzhou University, and Key Laboratory of Water Quality and Conservation in the Pearl River Delta, Ministry of Education, Guangzhou 510006, China.

School of Environmental Science and Engineering, Guangzhou University, and Key Laboratory of Water Quality and Conservation in the Pearl River Delta, Ministry of Education, Guangzhou 510006, China.

出版信息

J Hazard Mater. 2023 Apr 15;448:130859. doi: 10.1016/j.jhazmat.2023.130859. Epub 2023 Jan 25.

Abstract

Thallium (Tl) is an extremely toxic metal, whose geochemical behavior remains poorly understood. This study aims to clarify the migration pathway and source apportionment of Tl in sediments from a watershed downstream of an open and large-scale pyrite mine area in south China, using high-precised Tl isotopic compositions. Results showed that Tl isotopic fractionations were mainly influenced by the anthropogenic Tl sources in all the sediments as a whole from the studied watershed, while in situ mineral adsorption and biological activity were limited. Moreover, plot of εTl vs. 1/Tl further illustrated that three possible end-members, viz. background sediments, pyrite tailings, and sewage treatment wastes were ascribed to predominant sources of Tl enrichment in the sediments. A ternary mixing model unveiled that waste from pyrite mining activities (i.e., both pyrite tailings and sewage treatment wastes) affected the downstream sediments up to 10 km. All these findings suggest that Tl isotopic signature is a reliable tool to trace Tl sources in the sediments impacted by mining activities. It is highly critical for further target-oriented and precise remediation of Tl contamination.

摘要

铊(Tl)是一种剧毒金属,其地球化学行为仍知之甚少。本研究旨在利用高精度铊同位素组成,阐明中国南方一个开放型大型硫铁矿矿区下游流域沉积物中铊的迁移途径和来源分配。结果表明,在所研究流域的所有沉积物中,铊同位素分馏总体上主要受人为铊源影响,而原位矿物吸附和生物活性作用有限。此外,εTl对1/Tl的作图进一步表明,三种可能的端元,即背景沉积物、硫铁矿尾矿和污水处理废物,是沉积物中铊富集的主要来源。三元混合模型表明,硫铁矿开采活动产生的废物(即硫铁矿尾矿和污水处理废物)对下游长达10公里的沉积物产生了影响。所有这些发现表明,铊同位素特征是追踪受采矿活动影响的沉积物中铊来源的可靠工具。这对于进一步针对目标进行精确的铊污染修复至关重要。

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