断裂-正长岩接触带控制的富锶矿泉水形成机制——以张家口下花园石灵岫泉为例
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Formation mechanism of Sr-rich mineral water controlled by the fault-syenite contact zone: A case study of Shilingxiu Spring, Xiahuayuan, Zhangjiakou
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    摘要:

    岩浆岩-断裂复合区富锶(Sr)矿泉水的形成并非单一岩性溶滤过程,而受富Sr岩性、裂隙径流系统和水化学保存条件共同制约。本文以张家口下花园石灵岫泉水源地为例,结合浅部物探、地球化学测试及水文地球化学模拟软件PHREEQC模拟,揭示断裂-正长岩接触带对Sr释放、迁移和富集的控制机制。结果表明,研究区300 m以浅发育由浅埋正长岩、裂隙发育安山岩和断裂破碎带共同构成的非均质基岩裂隙系统;地下水Sr含量为0.319~0.657 mg/L,水温为8.5~11.4℃。SY4水样为HCO3-Ca·Mg型低矿化水,Sr以游离Sr2+为主,天青石明显欠饱和,表明当前水化学条件有利于Sr以溶解态迁移和保存;方解石接近平衡、白云石过饱和,表明碳酸盐矿物沉淀可能对Sr的进一步富集形成约束。正长斑岩Sr平均含量为764×10-6,是地下水Sr的重要潜在供源岩性;断裂控制正长岩浅埋、接触带展布和裂隙连通,使硅酸盐风化、碳酸盐溶解与沟谷排泄边界在局部空间上耦合。石灵岫泉水源地富Sr矿泉水属于断裂-正长岩接触带控制的低温基岩裂隙溶滤型地下水。

    Abstract:

    The formation of Sr-rich mineral water in magmatic rock-fault systems cannot be attributed solely to leaching from a single lithology, but is jointly controlled by Sr-rich source rocks, fracture-flow systems, and hydrochemical conditions favorable for Sr preservation. Taking the Shilingxiu mineral-water source area in Xiahuayuan, Zhangjiakou, as a case study, this study integrates shallow geophysical surveys, hydrochemical and rock geochemical analyses, and hydrogeochemical modeling using the PHREEQC software to elucidate the role of the fault-syenite contact zone in controlling Sr release, migration, and enrichment. The results show that the upper 300 m of the study area contains a heterogeneous bedrock-fracture system composed of shallowly buried syenite, fractured andesite, Mg-type water in which Sr occurs predominantly as free Sr2+. Celestite is markedly undersaturated, indicating that the prevailing hydrochemical conditions favor the migration and preservation of Sr in dissolved form. Calcite is near equilibrium, whereas dolomite is supersaturated, suggesting that carbonate mineral precipitation may constrain further Sr enrichment. Syenite porphyry has an average Sr content of 764×10-6 and represents an important potential source rock for groundwater Sr enrichment. Faulting controls the shallow burial of syenite, the distribution of contact zones, and fracture connectivity, thereby locally coupling silicate weathering, carbonate dissolution, and valley-controlled discharge boundaries. The Sr-rich mineral water in the Shilingxiu source area is therefore classified as low-temperature, leaching-derived bedrock-fracture groundwater controlled by the fault-syenite contact zone.

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雷喜明,雷二鸣,张永旺,等, 2026. 断裂-正长岩接触带控制的富锶矿泉水形成机制——以张家口下花园石灵岫泉为例[J]. 岩石矿物学杂志, (5):1006~1020.
LEI Xi-ming, LEI Er-ming, ZHANG Yong-wang, et al, 2026. Formation mechanism of Sr-rich mineral water controlled by the fault-syenite contact zone: A case study of Shilingxiu Spring, Xiahuayuan, Zhangjiakou[J]. Acta Petrologica et Mineralogica, (5): 1006~1020.

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  • 收稿日期:2026-07-06
  • 最后修改日期:2026-08-15
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  • 在线发布日期: 2026-09-16
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