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典型岩溶地下水系统地球化学敏感性研究
引用本文:何守阳,朱立军,董志芬,张熠,于晓红.典型岩溶地下水系统地球化学敏感性研究[J].环境科学,2010,31(5):1176-1182.
作者姓名:何守阳  朱立军  董志芬  张熠  于晓红
作者单位:何守阳,HE Shou-yang(中国科学院地球化学研究所地球深部物质与流体作用地球化学研究室,贵阳,550002;中国科学院研究生院,北京100049);朱立军,董志芬,ZHU Li-jun,DONG Zhi-fen(喀斯特环境与地质灾害防治教育部重点实验室(贵州大学),贵阳,550003);张熠,ZHANG Yi(贵州省节能监测中心,贵阳,550002);于晓红,YU Xiao-hong(贵州省地质环境监测院,贵阳,550004) 
基金项目:国家自然科学基金,国家重点基础研究发展规划(973)项目,贵州大学博士点矿床学基金 
摘    要:通过研究典型岩溶地下水系统地球化学敏感性表明,地下水系统水化学阳离子以Ca2+、Mg2+为主,平均敏感指数分别为0.73和0.19;阴离子以HCO3-和SO24-为主,平均敏感指数分别为0.92和0.37;主量元素表现出明显的地球化学敏感性特征.研究区主量元素的地球化学敏感性依次为:HCO3-Ca2+SO42-Mg2+Cl-Na+NO3-K+.运用敏感性最强的HCO3-敏感性指数(GSIHCO3-)对地下水系统进行敏感区域区划,GSIHCO3-0.5的区域为低敏感区,0.5GSIHCO3-1的区域为中度敏感区,GSIHCO3-1的区域为高敏感区.高敏感区域地下水系统可能成为污染物的汇和源,地下水与地表水之间的频繁快速转化和相互补给可能形成两者交叉污染和叠加污染的恶性循环.

关 键 词:地下水  敏感性  地球化学  岩溶  贵阳
收稿时间:2009/7/14 0:00:00
修稿时间:2009/11/2 0:00:00

Study on Geochemical Susceptivity of Groundwater System in Representative Karstic Regions
HE Shou-yang,ZHU Li-jun,DONG Zhi-fen,ZHANG Yi and YU Xiao-hong.Study on Geochemical Susceptivity of Groundwater System in Representative Karstic Regions[J].Chinese Journal of Environmental Science,2010,31(5):1176-1182.
Authors:HE Shou-yang  ZHU Li-jun  DONG Zhi-fen  ZHANG Yi and YU Xiao-hong
Abstract:We investigated geochemical susceptivity of groundwater in representative karst groundwater system. The results indicated that Ca2+ and Mg2+, correlative the average values of geochemical susceptivity index (GSI) were 0.73 and 0.19; HCO-3 and SO2-4, interrelated the average values of geochemical susceptivity index were 0.92 and 0.37, are the principal cations and anions in karstic groundwater system, respectively. And the major elements are obviously characterized by the geochemical susceptivity. The rank order of geochemical susceptivity for major elements in study region is HCO-3>Ca2+>SO2-4>Mg2+>Cl->Na+ >NO-3>K+ . The susceptive regions of groundwater system were zoned by the geochemical susceptivity index of HCO-3 (GSIHCO3-), which classified as GSIHCO3-<0.5 is low-susceptivity zone, 0.5HCO3-<1 is moderate-susceptivity zone and GSIHCO3->1 is high-susceptivity zone, respectively. The groundwater systems in high-susceptivity zone may become as a collected and genetic room for pollutants. Furthermore, both continual or active exchange and mutual recharge between surface water and groundwater in high-susceptivity zones might induce intersectant pollution and serious cycle.
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