[1] Abdou Babaye, M. S., Orban, P., Ousmane, B., et al., 2019. Characterization of Recharge Mechanisms in a Precambrian Basement Aquifer in Semi-Arid South-West Niger. Hydrogeology Journal, 27(2):475-491. https://doi.org/10.1007/s10040-018-1799-x
[2] Atkinson, A.P., Cartwright, I., Gilfedder, B.S., et al., 2014. Using 14C and 3H to Understand Groundwater Flow and Recharge in an Aquifer Window. Hydrology and Earth System Sciences, 18(12):4951-4964. https://doi.org/10.5194/hess-18-4951-2014
[3] Ba, W.L., Zhou, H.R., Liang, X.Q., et al., 2013. Ecological Footprint and Its Application in Ecological Planning in Kashgar Prefecture.Arid Zone Research, 30(5):905-912 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/ghqyj201305024
[4] Chen, Y. X., Yang, F. T., Su, X. S., et al., 2016. Estimation of Groundwater Renewal Rate Using Environmental Isotopes in the Arid Upper Peacock River, NW China.Journal of Radioanalytical and Nuclear Chemistry, 310(2):911-917. https://doi.org/10.1007/s10967-016-4979-y
[5] Chen, Z.Y., Liu, J., Yang, X.K., et al., 2010. The Environmental Isotope Markers of Groundwater Flow Patterns of the Song-Nen Plain.Earth Science Frontiers, 17(6):94-101 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dxqy201006013
[6] Cui, Y.L., Liu, F., Hao, Q.C., et al., 2015. Characteristics of Hydrogen and Oxygen Isotopes and Renewability of Groundwater in the Nuomuhong Alluvial Fan. Hydrogeology & Engineering Geology, 42(6):1-7 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/swdzgcdz201506001
[7] Edmunds, W. M., 2009. Geochemistry's Vital Contribution to Solving Water Resource Problems.Applied Geochemistry, 24(6):1058-1073. https://doi.org/10.1016/j.apgeochem.2009.02.021
[8] Gabrielli, C. P., Morgenstern, U., Stewart, M. K., et al., 2018. Contrasting Groundwater and Streamflow Ages at the Maimai Watershed. Water Resources Research, 54(6):3937-3957. https://doi.org/10.1029/2017wr021825
[9] Gonfiantini, R., Roche, M. A., Olivry, J. C., et al., 2001. The Altitude Effect on the Isotopic Composition of Tropical Rains.Chemical Geology, 181(1-4):147-167. https://doi.org/10.1016/s0009-2541(01)00279-0
[10] Huang, X.Q., Liu, Q., Xue, Z.Q., et al., 2014. The Characteristics of Groundwater Isotopes in Upper Reach Plain of Qingshui River, Ningxia. Journal of Arid Land Resources and Environment, 28(2):143-148 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/ghqzyyhj201402025
[11] Le Gal la Salle, C., Marlin, C., Leduc, C., et al., 2001. Renewal Rate Estimation of Groundwater Based on Radioactive Tracers (3H, 14C) in an Unconfined Aquifer in a Semi-Arid Area, Iullemeden Basin, Niger. Journal of Hydrology, 254(1/2/3/4):145-156. https://doi.org/10.1016/s0022-1694(01)00491-7
[12] Li, H., Wen, Z., Xie, X.J., et al., 2017. Hydrochemical Characteristics and Evolution of Karst Groundwater in Sanqiao District of Guiyang City.Earth Science, 42(5):804-812 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dqkx201705016
[13] Li, L.Q., Wang, Z.Z., He, H.X., et al., 2019. Research of Water Resources Multi-Dimensional Equilibrium Allocation Based on Eco-Hydrological Threshold Regulation in Inland Arid Region. Journal of Hydraulic Engineering, 50(3):377-387 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/slxb201903011
[14] Liu, F., Cui, Y.L., Zhang, G., et al., 2014. Using the 3H and 14C Dating Methods to Calculate the Groundwater Age in Nuomuhong, Qaidam Basin.Geoscience, 28(6):1322-1328 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=xddz201406026
[15] Ma, B., Jin, M. G., Liang, X., et al., 2018. Groundwater Mixing and Mineralization Processes in a Mountain-Oasis-Desert Basin, Northwest China:Hydrogeochemistry and Environmental Tracer Indicators. Hydrogeology Journal, 26(1):233-250. https://doi.org/10.1007/s10040-017-1659-0
[16] Mao, X.M., Liang, X., Wang, F.L., et al., 2010. Calibrating Deep Groundwater 14C Ages of North China Plain with TDIC and a Comparative Study.Earth Science Frontiers, 17(6):102-110 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/dxqy201006014
[17] Mao, X. M., Wang, H., Feng, L., 2018.14C Age Reassessment of Groundwater from the Discharge Zone due to Cross-Flow Mixing in the Deep Confined Aquifer. Journal of Hydrology, 560:572-581. https://doi.org/10.1016/j.jhydrol.2018.03.052
[18] Nai, W.H., Shi, J., Wang, W.K., et al., 2018. Isotopic Age Characteristics and Renewal Rate of Groundwater in Kashgar Plain. Xinjiang Geology, 36(3):406-409 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/xjdz201803021
[19] Pearson Jr, F. J. White, D.E., 1967. Carbon 14 Ages and Flow Rates of Water in Carrizo Sand, Atascosa County, Texas. Water Resources Research, 3(1):251-261. https://doi.org/10.1029/wr003i001p00251
[20] Ruan, Y.F., Zhao, L.J., Xiao, H.L., et al., 2015. The Groundwater in the Heihe River Basin:Isotope Age and Renewability. Journal of Glaciology and Geocryology, 37(3):767-782 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/bcdt201503024
[21] Su, X.S., Lin, X.Y., Dong, W.H., et al., 2006.14C Age Correction of Deep Groundwater in Yinchuan Plain. Journal of Jilin University (Earth Science Edition), 36(5):830-836 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=cckjdxxb200605020
[22] Tamers, M. A., 1975. Validity of Radiocarbon Dates on Ground Water.Geophysical Surveys, 2(2):217-239. https://doi.org/10.1007/bf01447909
[23] Vogel, J.C., 1970. Carbon-14 Dating of Groundwater.In: Isotope Hydrology.IAEA, Vienna, 225-239.
[24] Wei, W., Chen, Z.Y., Zhao, H.M., et al., 2011. Comparison of 4He and 14C Dating of Groundwater from Quaternary Confined Aquifers in Hebei Plain. Journal of Jilin University (Earth Science Edition), 41(4):1144-1150 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=cckjdxxb201104026
[25] Wei, X., Zhou, J.L., Nai, W.H., et al., 2019. Hydrochemical Characteristics and Evolution of Groundwater in the Kashgar Delta Area in Xinjiang. Environmental Science, 40(9):4042-4051 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/hjkx201909023
[26] Xiao, Y., Shao, J. L., Cui, Y. L., et al., 2017. Groundwater Circulation and Hydrogeochemical Evolution in Nomhon of Qaidam Basin, Northwest China. Journal of Earth System Science, 126(2):26. https://doi.org/10.1007/s12040-017-0800-8
[27] Xie, Q.M., Wang, Z.L., Yin, C.M., et al., 2019. Tectonic Evolution Characteristics of Yingjisha and Pishan Areas and the Influence on Petroleum Accumulation in the Southwest Depression, Tarim Basin.Petroleum Geology & Experiment, 41(2):165-175 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=sysydz201902003
[28] Yang, L.Z., Zhang, G.H., Liu, Z.Y., et al., 2009. Isotope Age of Groundwater in Lubei Plain and an Evaluation of Its Renewable Capacity. Acta Geoscientica Sinica, 30(2):235-242 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dqxb200902012
[29] Yu, H.T., Ma, T., Deng, Y.M., et al., 2017. Hydrochemical Characteristics of Shallow Groundwater in Eastern Jianghan Plain. Earth Science, 42(5):685-692 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dqkx201705004
[30] Yuan, R.Q., Long, X.T., Wang, P., et al., 2015. Renewal Rate of Groundwater in the Baiyangdian Lake Basin.Progress in Geography, 34(3):381-388 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dlkxjz201503013
[31] Zhai, Y.Z., Wang, J.S., Zhou, J., 2013. Hydrochemical and Isotopic Markers of Flow Patterns and Renewal Mode of Groundwater in Chaobai River Alluvial Fan in Beijing.Journal of Basic Science and Engineering, 21(1):32-44 (in Chinese with English abstract). http://cn.bing.com/academic/profile?id=391aae91bf7bc13d9a01335463104b65&encoded=0&v=paper_preview&mkt=zh-cn
[32] 巴乌龙, 周华荣, 梁雪琼, 等, 2013.喀什地区生态足迹分析及其在生态规划中的应用.干旱区研究, 30(5):905-912. http://d.old.wanfangdata.com.cn/Periodical/ghqyj201305024
[33] 陈宗宇, 刘君, 杨湘奎, 等, 2010.松嫩平原地下水流动模式的环境同位素标记.地学前缘, 17(6):94-101. http://d.old.wanfangdata.com.cn/Periodical/dxqy201006013
[34] 崔亚莉, 刘峰, 郝奇琛, 等, 2015.诺木洪冲洪积扇地下水氢氧同位素特征及更新能力研究.水文地质工程地质, 42(6):1-7. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=swdzgcdz201506001
[35] 黄小琴, 柳青, 薛忠岐, 等, 2014.宁夏固原地区地下水同位素特征研究.干旱区资源与环境, 28(2):143-148. http://d.old.wanfangdata.com.cn/Periodical/ghqzyyhj201402025
[36] 李华, 文章, 谢先军, 等, 2017.贵阳市三桥地区岩溶地下水水化学特征及其演化规律.地球科学, 42(5):804-812. doi: 10.3799/dqkx.2017.068
[37] 李丽琴, 王志璋, 贺华翔, 等, 2019.基于生态水文阈值调控的内陆干旱区水资源多维均衡配置研究.水利学报, 50(3):377-387. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=slxb201903011
[38] 刘峰, 崔亚莉, 张戈, 等, 2014.应用氚和14C方法确定柴达木盆地诺木洪地区地下水年龄.现代地质, 28(6):1322-1328. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=xddz201406026
[39] 毛绪美, 梁杏, 王凤林, 等, 2010.华北平原深层地下水14C年龄的TDIC校正与对比.地学前缘, 17(6):102-110. http://d.old.wanfangdata.com.cn/Periodical/dxqy201006014
[40] 乃尉华, 史杰, 王文科, 等, 2018.喀什平原区地下水同位素年龄特征及更新速率分析.新疆地质, 36(3):406-409. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=xjdz201803021
[41] 阮云峰, 赵良菊, 肖洪浪, 等, 2015.黑河流域地下水同位素年龄及可更新能力研究.冰川冻土, 37(3):767-782. http://d.old.wanfangdata.com.cn/Periodical/bcdt201503024
[42] 苏小四, 林学钰, 董维红, 等, 2006.银川平原深层地下水14C年龄校正.吉林大学学报(地球科学版), 36(5):830-836. http://d.old.wanfangdata.com.cn/Periodical/cckjdxxb200605020
[43] 卫文, 陈宗宇, 赵红梅, 等, 2011.河北平原第四系承压水4He与14C测年对比.吉林大学学报(地球科学版), 41(4):1144-1150. http://d.old.wanfangdata.com.cn/Periodical/cckjdxxb201104026
[44] 魏兴, 周金龙, 乃尉华, 等, 2019.新疆喀什三角洲地下水化学特征及演化规律.环境科学, 40(9):4042-4051. http://d.old.wanfangdata.com.cn/Periodical/hjkx201909023
[45] 解巧明, 王震亮, 尹成明, 等, 2019.塔里木盆地西南坳陷英吉沙与皮山地区构造演化特征及对油气成藏的影响.石油实验地质, 41(2):165-175. http://d.old.wanfangdata.com.cn/Periodical/sysydz201902003
[46] 杨丽芝, 张光辉, 刘中业, 等, 2009.鲁北平原地下水同位素年龄及可更新能力评价.地球学报, 30(2):235-242. http://d.old.wanfangdata.com.cn/Periodical/dqxb200902012
[47] 於昊天, 马腾, 邓娅敏, 等, 2017.江汉平原东部地区浅层地下水水化学特征.地球科学, 42(5):685-692. doi: 10.3799/dqkx.2017.056
[48] 袁瑞强, 龙西亭, 王鹏, 等, 2015.白洋淀流域地下水更新速率.地理科学进展, 34(3):381-388. http://d.old.wanfangdata.com.cn/Periodical/dlkxjz201503013
[49] 翟远征, 王金生, 周俊, 2013.北京市潮白河冲洪积扇地下水流动和更新模式的水化学和同位素标记.应用基础与工程科学学报, 21(1):32-44. http://d.old.wanfangdata.com.cn/Periodical/yyjcygckxxb201301004