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Research Advances in Identifying Sulfate Contamination Sources of Water Environment by Using Stable Isotopes

机译:稳定同位素识别水环境中硫酸盐污染源的研究进展

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摘要

As the main anion of groundwater, the content of sulfate affects the drinking water safety and ecological security directly. In recent years, with the acceleration of industrialization and urbanization development, the problem of sulfate pollution in water environments is becoming more and more serious. It is critical to effectively identify the sulfate sources of water environment to ensure human health and the benign evolution of water environment. Due to its “fingerprints” feature, the sulfur and oxygen isotopes of SO42− have been widely used to identify sources of sulfate contamination in water environment. However, research advances in tracing sulfate contamination sources of water environment by using stable isotopes are rarely reported. This paper reviewed the research advances of sulfate isotope technology domestically and abroad, which was used to trace the sources of sulfate pollution in water environment, compared different pre-treatment methods for analyzing the δ34S and δ18O of sulfate, and compiled the ranges of typical values of δ34S and δ18O from different potential sources of sulfate contamination. In this review, the limitation of the technique in traceability of sulfate pollution was also discussed, and the future traceability techniques of sulfate pollution were prospected.
机译:硫酸盐作为地下水的主要阴离子,直接影响着饮用水安全和生态安全。近年来,随着工业化和城市化进程的加快,水环境中硫酸盐污染问题变得越来越严重。有效识别水环境中的硫酸盐来源对于确保人类健康和水环境的良性发展至关重要。由于其“指纹”特征,SO4 2-的硫和氧同位素已被广泛用于识别水环境中硫酸盐污染的来源。但是,很少有关于通过使用稳定同位素来追踪水环境中硫酸盐污染源的研究进展。综述了国内外硫酸盐同位素技术的研究进展,用于追踪水环境中硫酸盐的污染源,比较了不同的预处理方法对δ 34 S和δ< sup> 18 O,并汇总了不同潜在硫酸盐污染源的δ 34 S和δ 18 O典型值的范围。本文综述了硫酸盐污染溯源技术的局限性,并展望了未来硫酸盐污染溯源技术。

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