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Geochemical Constraints on the Origin and Evolution of Spring Waters in the Changdu‐Lanping‐Simao Basin, Southwestern China

作者:Xiwei Qin, Haizhou Ma, Xiying Zhang, Huaide Cheng, Jibin Han, Yongshou Li, Weiliang Miao, Qingyu Hai · 发表于:Acta Geologica Sinica - English Edition · 年份:2019 · DOI:10.1111/1755-6724.13853 · 被引用次数:12 · 研究领域:Groundwater and Isotope Geochemistry、Geology and Paleoclimatology Research、Hydrocarbon exploration and reservoir analysis

Chemical and isotopic data were measured for 51 leached brine springs in the Changdu‐Lanping‐Simao Basin (CD‐LP‐SM), China. The predominance of Cl and Na, saturation indices of carbonate minerals, and Na/Cl and Ca/SO 4 ratios of ∼1 suggest that halite, sulphate, and carbonate are the solute sources. Integration of geochemical, δ 18 O, and δ D values suggests that springs are mainly derived from meteoric water, ice‐snow melt, and water‐rock interactions. B concentrations range from 0.18 to 11.9 mg/L, with δ 11 B values of –4.37‰ to +32.39‰, indicating a terrestrial source. The δ 11 B‐B relationships suggest B sources of crustal origin (marine carbonates with minor crust‐derived volcanics); we did not identify a marine or deep mantle origin. The δ 11 B values of saline springs (+4.61‰ to +32.39‰) exceed those of hot (–4.37‰ to +4.53‰) and cold (–3.47‰ to +14.84‰) springs; this has contributed to strong water‐rock interactions and strong saturation of dissolved carbonates. Conversely, the global geothermal δ 11 B‐Cl/B relationship suggests mixing of marine and non‐marine sources. The δ 11 B‐Cl/B relationships of the CD‐LP‐SM are similar to those of the Tibet geothermal belt and the Nangqen Basin, indicating the same B origin. These differ from thermal waters controlled by magmatic fluids and seawater, suggesting that B in CD‐LP‐SM springs has a crustal origin.