[1] 汪集旸, 胡圣标, 庞忠和, 等. 中国大陆干热岩地热资源潜力评估 [J]. 科技导报, 2012, 30(32): 25-31. WANG J Y, HU S B, PANG Z H, et al. Estimate of geothermal resources potential for hot dry rock in the continental area of China [J]. Science & Technology Review, 2012, 30(32): 25-31(in Chinese).
[2] 袁潮, 吕言新, 李海波, 等. 基于THMD多场耦合的地热断层活化参数敏感性研究[J]. 地球物理学进展, 2022. YUAN C, LYU Y X, LI H B, et al. Sensitivity of geothermal fault activation parameters based on THMD multifield coupling[J]. Progress in Geophysics, 2022.
[3] 庞忠和, 罗霁, 程远志, 等. 中国深层地热能开采的地质条件评价 [J]. 地学前缘, 2020, 27(1): 134-151. PANG Z H, LUO J, CHENG Y Z, et al. Evaluation of geological conditions for the development of deep geothermal energy in China [J]. Earth Science Frontiers, 2020, 27(1): 134-151(in Chinese).
[4] 天娇, 庞忠和, 李义曼, 等. 地热气体研究进展[J]. 地质学报, 2022. TIAN J, PANG Z H, LI Y M, et al. Research progress of geothermal gas[J]. Acta Geologica Sinica, 2022.
[5] 李状. 安徽大别山区常温泉和温泉水文地球化学特征及水岩作用[D]. 北京: 中国地质大学(北京), 2021. LI Z. Hydrogeochemical characteristics and water-rock interactions of the ambient-temperature springs and hot springs in the dabie mountain area of Anhui Province[D]. Beijing: China University of Geosciences, 2021(in Chinese)
[6] FUNG K F, ZHANG Z Q, WONG J W C, et al. Fluoride contents in tea and soil from tea plantations and the release of fluoride into tea liquor during infusion [J]. Environmental Pollution, 1999, 104(2): 197-205. doi: 10.1016/S0269-7491(98)00187-0
[7] SHOMAR B, MÜLLER G, YAHYA A, et al. Fluorides in groundwater, soil and infused black tea and the occurrence of dental fluorosis among school children of the Gaza strip [J]. Journal of Water and Health, 2004, 2(1): 23-35. doi: 10.2166/wh.2004.0003
[8] RIPA L W. A half-century of community water fluoridation in the United States: Review and commentary [J]. Journal of Public Health Dentistry, 1993, 53(1): 17-44.
[9] SHUPE J L, OLSON A E, PETERSON H B, et al. Fluoride toxicosis in wild ungulates [J]. Journal of the American Veterinary Medical Association, 1984, 185(11): 1295-1300.
[10] SRACEK O, WANKE H, NDAKUNDA N N, et al. Geochemistry and fluoride levels of geothermal springs in Namibia [J]. Journal of Geochemical Exploration, 2015, 148: 96-104. doi: 10.1016/j.gexplo.2014.08.012
[11] 朱明占, 李俊霞, 秦宏飞, 等. 桂南地下热水系统中氟的分布及迁移富集规律 [J]. 安全与环境工程, 2016, 23(5): 73-79. ZHU M Z, LI J X, QIN H F, et al. Distribution, migration and enrichment of fluoride in geothermal water in southern Guangxi, China [J]. Safety and Environmental Engineering, 2016, 23(5): 73-79(in Chinese).
[12] 欧浩, 卢国平, 胡晓农, 等. 广东省信宜-廉江地区地热水中氟的富集过程 [J]. 环境化学, 2019, 38(5): 1128-1138. doi: 10.7524/j.issn.0254-6108.2018092303 OU H, LU G P, HU X N, et al. Fluoride enrichment in geothermal waters in Xinyi-Lianjiang region, Guangdong [J]. Environmental Chemistry, 2019, 38(5): 1128-1138(in Chinese). doi: 10.7524/j.issn.0254-6108.2018092303
[13] 陈律. 遥感技术广东龙川县地质灾害调查的应用 [J]. 甘肃科技, 2020, 36(20): 65-67. CHEN L. Application of remote sensing technology in geological disaster investigation in Longchuan County of Guangdong Province [J]. Gansu Science and Technology, 2020, 36(20): 65-67(in Chinese).
[14] 祝小辉. 广东省龙川县地质灾害特征及影响因素分析 [J]. 西部资源, 2021(2): 106-108. ZHU X H. Analysis on characteristics and influencing factors of geological disasters in Longchuan County, Guangdong Province [J]. Western Resources, 2021(2): 106-108(in Chinese).
[15] 邱辉, 李朋, 罗强, 等. 粤东北贝岭地热田地热地质特征及水化学分析 [J]. 地质与勘探, 2022, 58(1): 158-167. QIU H, LI P, LUO Q, et al. Characteristics of geothermal geology and hydrochemistry of the Beiling geothermal field in northeastern Guangdong Province [J]. Geology and Exploration, 2022, 58(1): 158-167(in Chinese).
[16] STELLING P, SHEVENELL L, HINZ N, et al. Geothermal systems in volcanic arcs: Volcanic characteristics and surface manifestations as indicators of geothermal potential and favorability worldwide [J]. Journal of Volcanology and Geothermal Research, 2016, 324: 57-72. doi: 10.1016/j.jvolgeores.2016.05.018
[17] 王贝贝, 卢国平, 胡晓农, 等. 粤西深大断裂温热泉水化学分析 [J]. 环境化学, 2019, 38(5): 1150-1160. doi: 10.7524/j.issn.0254-6108.2018101803 WANG B B, LU G P, HU X N, et al. Hydrochemical characterization of thermal spring waters in the deep fault region in western Guangdong [J]. Environmental Chemistry, 2019, 38(5): 1150-1160(in Chinese). doi: 10.7524/j.issn.0254-6108.2018101803
[18] CHAE G T, YUN S T, MAYER B, et al. Fluorine geochemistry in bedrock groundwater of south Korea [J]. Science of the Total Environment, 2007, 385(1/2/3): 272-283.
[19] GIBBS R J. Mechanisms controlling world water chemistry [J]. Science, 1970, 170(3962): 1088-1090. doi: 10.1126/science.170.3962.1088
[20] HANDA B K. Geochemistry and genesis of fluoride-containing ground waters in India [J]. Groundwater, 1975, 13(3): 275-281. doi: 10.1111/j.1745-6584.1975.tb03086.x
[21] WANG X, LU G P, HU B X. Hydrogeochemical characteristics and geothermometry applications of thermal waters in coastal Xinzhou and Shenzao geothermal fields, Guangdong, China [J]. Geofluids, 2018, 2018: 8715080.
[22] 刘金辉, 史维浚, 孙占学. 反应条件指数及其与饱和指数的关系初步探讨[J]. 地学前缘, 2005, 12(S1): 124-126. LIU J H, SHI W J, SUN Z X. A primary study of reaction condition index and its relationship with saturation index[J]. Earth Science Frontiers, 2005, 12(Sup 1): 124-126(in Chinese).
[23] 肖国强, 杨吉龙, 胡云壮, 等. 秦皇岛洋-戴河滨海平原海水入侵过程水文化学识别 [J]. 安全与环境工程, 2014, 21(2): 32-39. XIAO G Q, YANG J L, HU Y Z, et al. Hydrogeochemical recognition of seawater intrusion processes in Yang River and Dai River coastal plain of Qinhuangdao City [J]. Safety and Environmental Engineering, 2014, 21(2): 32-39(in Chinese).
[24] ZHU G F, SU Y H, HUANG C L, et al. Hydrogeochemical processes in the groundwater environment of Heihe River Basin, northwest China [J]. Environmental Earth Sciences, 2010, 60(1): 139-153. doi: 10.1007/s12665-009-0175-5
[25] 鲁涵, 曾妍妍, 周金龙, 等. 喀什噶尔河下游平原区地下水咸化特征及成因分析[J]. 环境科学, 2022, 43(10): 4459-4469. LU H, ZENG Y Y, ZHOU J L, et al. Characteristics and causes of groundwater salinization in the plain area of the lower Kashgar River[J]. Environmental Science, 2022, 43(10): 4459-4469(in Chinese).
[26] JACKS G, BHATTACHARYA P, CHAUDHARY V, et al. Controls on the genesis of some high-fluoride groundwaters in India [J]. Applied Geochemistry, 2005, 20(2): 221-228. doi: 10.1016/j.apgeochem.2004.07.002
[27] HU H Y, LU G P, LU Q Y, et al. Hydrogeochemical characteristics and geothermometry of hot springs in the tensile tectonic region Leizhou peninsula and Hainan Island in South China[J]. Geofluids, 2022, doi. org/10.1155/2022/1101015.
[28] 何家宝, 杨章贤. 砀山县浅层地下水盐分反向水文地球化学模拟研究 [J]. 地下水, 2021, 43(4): 56-58. HE J B, YANG Z X. Study on reverse hydrogeochemical simulation of salinity in shallow groundwater in Dangshan County [J]. Ground Water, 2021, 43(4): 56-58(in Chinese).