Isotopic Composition and Origin of Sulfide and Sulfate Species of Sulfur in Thermal Waters of Jiangxi Province (China)

IF 1.7 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Svetlana V. Borzenko, Elena V. Zippa
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引用次数: 2

Abstract

The reduced sulfur species, sulfide, elemental and thiosulfate were considered in the thermal waters of Jiangxi Province for the first time. It is shown that the sulfur speciation content significantly varies and depends on the pH values. The major part of reduced sulfur refers to sulfide species in the nitric thermal waters, to elemental—in the carbon dioxide thermal waters. The presence of both reduced and oxidized sulfur speciation indicates the possibility of sulfide minerals hydrolysis and disproportionation of the product of this reaction (SO2) with the participation of hot water with the formation of elemental and sulfate sulfur. The isotopic composition of dissolved sulfate and sulfide sulfur speciation has shown that the process of bacterial reduction proceeds in the thermal waters, accompanied by accumulation of relatively heavy sulfur isotope in sulfates. Simultaneously with reduction, the oxidation of both sulfide minerals and newly formed hydrosulfide proceeds with formation of elemental, thiosulfates and also sulfates in the discharge zone was proceeded. It is shown that the process of sulfide oxidation mostly occurs in carbon dioxide thermal waters. Therefore, the elemental sulfur is predominant in carbon dioxide waters. The oxidation process is less significant in the nitric thermal waters, whereby the concentrations of sulfide ion are higher than sulfates. The ambiguous effect of sulfate reduction on the hydrogeochemical environment of the thermal waters is confirmed by the differing value of the carbon isotope ratio of HCO3? in the considered waters. The obtained isotopic composition data 34δS(SO42?) indicate host rocks as a source of sulfates in the thermal waters of Jiangxi Province.

Abstract Image

江西省热水中硫化物的同位素组成及成因及硫化物种类
首次考虑了江西热水中硫化物、硫化物、单质硫代硫酸盐和硫代硫酸盐的还原性。结果表明,硫的形态含量随pH值的变化而显著变化。还原硫主要是指硝酸型热水中的硫化物,二氧化碳型热水中的硫化物。还原和氧化硫形态的存在表明,在热水的参与下,该反应的产物(SO2)可能发生了硫化物矿物的水解和歧化,形成了单质硫和硫酸盐硫。溶解硫酸盐和硫化物硫形态的同位素组成表明,在热水中进行了细菌还原过程,并伴有硫酸盐中较重硫同位素的积累。在还原的同时,硫化物矿物和新形成的氢硫化物进行氧化,在排出区形成单质、硫代硫酸盐和硫化物。结果表明,硫化物氧化过程主要发生在含二氧化碳的热水中。因此,单质硫在二氧化碳水中占主导地位。氧化过程在硝酸热水中不太显著,其中硫化物离子浓度高于硫酸盐。硫酸盐还原作用对热水水文地球化学环境的模糊影响由不同的HCO3?在考虑过的水域。获得的同位素组成数据34δS(SO42?)表明,寄主岩是江西热水中硫酸盐的来源。
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来源期刊
Aquatic Geochemistry
Aquatic Geochemistry 地学-地球化学与地球物理
CiteScore
4.30
自引率
0.00%
发文量
6
审稿时长
1 months
期刊介绍: We publish original studies relating to the geochemistry of natural waters and their interactions with rocks and minerals under near Earth-surface conditions. Coverage includes theoretical, experimental, and modeling papers dealing with this subject area, as well as papers presenting observations of natural systems that stress major processes. The journal also presents `letter''-type papers for rapid publication and a limited number of review-type papers on topics of particularly broad interest or current major controversy.
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