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Distribution of δ34S and δ18O in SO42- in Groundwater from the Ordos Cretaceous Groundwater Basin and Geological Implications[J]. YANG Yuncheng~(1,2,*),SHEN Zhaoli~3,WEN Dongguang~4,HOU Guangcai~2,SHE Hongquan~1, ZHAO Zhenhong~2,WANG Dong~2 and LI Jingwen~1 1 Institute of Mineral Resources,Chinese Academy of Sciences,Beijing 100037,China 2 Xi’an institute of Geology and Mineral Resources,Xi’an 710054,China 3 China University of Geosciences,Beijing 100083,China 4 China Geological Survey,Beijing 1
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Anthropogenic sulfate loads in the Rio Grande, New Mexico (USA)[J] . Anna Szynkiewicz,James C. Witcher,Magdalena Modelska,David M. Borrok,Lisa M. Pratt.Chemical Geology . 2011 (3)
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Multiple isotope (H, O, N, S and Sr) approach elucidates complex pollution causes in the shallow groundwaters of the Taipei urban area[J] . Takahiro Hosono,Chung-Ho Wang,Yu Umezawa,Takanori Nakano,Shin-ichi Onodera,Toshi Nagata,Chikage Yoshimizu,Ichiro Tayasu,Makoto Taniguchi.Journal of Hydrology . 2010 (1)
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The use of environmental isotopic (C, Sr, S) and hydrochemical tracers to characterize anthropogenic effects on karst groundwater quality: A case study of the Shuicheng Basin, SW China[J] . Xiao-Dong Li,Cong-Qiang Liu,Masuda Harue,Si-Liang Li,Xiao-Long Liu.Applied Geochemistry . 2010 (12)
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Sr isotopes in natural waters: Applications to source characterisation and water–rock interaction in contrasting landscapes[J] . P. Shand,D.P.F. Darbyshire,A.J. Love,W.M. Edmunds.Applied Geochemistry . 2009 (4)