利用δ18O和δ34S示踪重庆都市圈地下热水循环过程
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科技部国际合作项目(2008GR1256);重庆市科委院士专项(CSTC,2010BC7004);国家自然科学基金(41072192);西南大学研究生创新基金项目(kb2009004,ky2010002)


Using δ18O and δ34S isotopic techniques to trace the recycling process of hot springs in Chongqing metropolitan
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    摘要:

    重庆市地下热水储存量大约有1亿m3,其中75%分布在都市圈内。通过对重庆市都市圈13个温泉群,20个泉点的温泉水的δD、δ18O和δ34S调查,结合水化学指标进行分析表明:重庆市都市圈温泉水类型为SO2-4XC半字线.tif,JZ〗Ca或者SO2-4XC半字线.tif,JZ〗CaXC半字线.tif,JZ〗Mg型,水的来源为大气降水。δ18O值为-7.41‰~-9.48‰,研究认为地下热水的补给来源于海拔672~1 503 m研究区域背斜核部岩溶出露区和背斜北端的岩溶出露区。热水中主要离子SO2-4和

    Abstract:

    There is about 100 million m3 underground thermal resource storage in Chongqing, of which 75% are stockpiled in metropolitan area. 20 samples from 13 hot springs in Chongqing metropolitan area are collected and analyzed for chemistry and isotopes of heavy hydrogen, oxygen and sulfur. The results shows that these hot springs are SO2-4-Ca and SO2-4-Ca-Mg, and the water sources is precipitation. The value of δ18O is between -7.41‰~-9.48‰, which can ascertain that the recharge area of these hot springs are the karst area in these anticlines and the karst area at the north of these anticlines with the altitude of 672~1 503 m. There is a good positive correlation between SO2-4 and Ca2+, Mg2+. The δ34S value of the samples is between 31.46‰~34.32‰, precisely the same with the δ34S value in gypsum at the second phase of Jialingjiang formation in Early Trias. Both of them shows that rainflow and surface flow along the karst fissures infiltrate into the Jialingjiang Formation which have gypsum, and it also shows that the hot springs storage formation may be the second phase of Jialingjiang formation in Early Trias.

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肖琼,沈立成,袁道先,杨雷,陈展图,汪智军.利用δ18O和δ34S示踪重庆都市圈地下热水循环过程[J].重庆大学学报,2011,34(5):87-92.

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  • 收稿日期:2011-01-22
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