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Chemical and isotopic constrains on the origin of brine and saline groundwater in Hetao plain, Inner Mongolia

机译:内蒙古河套平原的盐水同位素来源化学和同位素约束

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摘要

The origin and evolution of brine and saline groundwater have always been a challenged work for geochemists and hydrogeologists. Chemical and isotopic data of brine and saline waters were used to trace the sources of salinity and therefore to understand the transport mechanisms of groundwater in Xishanzui, Inner Mongolia. Both Cl/Br (molar) versus Na/Br (molar) and Cl (meq/L) versus Na (meq/L) indicated that salinity was from halite dissolution or at least a significant impact by halite dissolution. The logarithmic plot of the concentration trends of Cl (mg/L) versus Br (mg/L) for the evaporation of seawater and the Qinghai Salt Lake showed that the terrestrial halite dissolution was the dominated contribution for the salinity of this brine. The stable isotope ratios of hydrogen and oxygen suggested that the origin of brine was from paleorecharge water which experienced mixing of modern water in shallow aquifer. delta Cl-37 values ranged from -0.02 to 3.43 parts per thousand (SMOC), and reflecting mixing of different sources. The Cl isotopic compositions suggest that the dissolution of halite by paleometeoric water had a great contribution to the salinity of brine, and the contributions of the residual seawater and the dissolution of halite by the Yellow River water could be excluded.
机译:对于地球化学家和水文地质学家而言,盐水和盐水地下水的起源和演变一直是一项艰巨的任务。利用盐水和盐水的化学和同位素数据来追踪盐分的来源,从而了解内蒙古西山嘴的地下水运移机理。 Cl / Br(摩尔)对Na / Br(摩尔)和Cl(meq / L)对Na(meq / L)均表明盐度来自盐岩溶解或至少受盐岩溶解的显着影响。海水和青海盐湖中Cl(mg / L)对Br(mg / L)浓度趋势的对数图表明,陆地盐分溶解是该盐水盐度的主要贡献。氢和氧的稳定同位素比表明,盐水的来源是古补给水,而现代补给水则在浅层含水层中经历了混合。 Cl-37值介于-0.02至3.43千分之一(SMOC)之间,反映了不同来源的混合。 Cl的同位素组成表明,古气象水对岩盐的溶解对盐水的盐度有很大的贡献,而残留的海水和黄河水对岩盐的溶解的贡献可以被排除。

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