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Recharge sources and hydrogeochemical evolution of groundwater in the coal-mining district of Jiaozuo, China

机译:焦作煤矿区地下水补给源及水文地球化学演化

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摘要

Investigations in the Jiaozuo coal-mining district (China) aim to link water-inrush aquifers with the sources of groundwater recharge. Concentrations of TDS, HCO_3~–, Cl~– and Na~+ in the groundwater samples gradually decrease with increasing depth; in contrast, the factor 1 value of the Q-mode analysis gradually increases, which indicates that the deep groundwater may upflow, recharging the aquifers near the faulted zone. Some groundwater samples (above the local meteoric water line and ‘evaporation line 1’) may originate from recharge by infiltrating local rainfall. Spring and river samples are symmetrically distributed on the regression line of the Ordovician and Carboniferous limestone aquifer groundwater (δ~2H=3.76×δ~(18)O–31.77) and may, therefore, originate from groundwater recharge in the northern Taihang mountains. This mechanism is supported by the observation that groundwater levels change with rainfall. According to radiocarbon residence-time estimates, two groundwater sample sites may have been recharged during the late glacial stage.
机译:焦作煤矿区(中国)的调查旨在将突水含水层与地下水补给源联系起来。地下水样品中TDS,HCO_3〜–,Cl〜–和Na〜+的浓度随着深度的增加而逐渐降低。相比之下,Q模式分析的因子1值逐渐增加,这表明深层地下水可能会向上流动,从而对断层带附近的含水层进行补给。一些地下水样本(在当地的流水线和“蒸发线1”上方)可能是通过渗入当地的降雨来补给的。春季和河流样本对称分布在奥陶纪和石炭系石灰岩含水层地下水(δ〜2H = 3.76×δ〜(18)O–31.77)的回归线上,因此可能源自太行山北部的地下水补给。观察到地下水位随降雨量变化而支持这一机制。根据放射性碳的停留时间估算,可能在冰川末期补给了两个地下水采样点。

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