[1] Sofuoglu S C, Kavcar P. An exposure and risk assessment for fluoride and trace metals in black tea [J]. Journal of Hazardous Materials, 2008, 158 (2/3): 392-400
[2] 向勤锃, 刘德华. 氟对人体的作用及茶树富氟的研究进展与展望[J]. 茶叶通讯, 2002, 2: 34-37
[3] 董青华, 孙威江, 杨贤强. 茶树吸收氟的根际效应及富集机理研究进展[J]. 亚热带农业研究, 2009, 5(3): 162-166
[4] 陈怀满. 土壤中化学物质的行为与环境质量[M]. 北京: 科学出版社, 2002
[5] 于群英, 慈恩, 杨林章. 皖北地区土壤中不同形态氟含量及其影响因素[J]. 应用生态学报, 2001, 18(6): 1333-1340
[6] Cao J, Zhao Y, Li Y, et al. Fluoride levels in various black tea commodities: Measurement and safety evaluation [J]. Food and Chemical Toxicology, 2006, 44(7): 1131-1137
[7] Malinowska E, Inkielewicz I, Czarnowski W, et al. Assessment of fluoride concentration and daily intake by human from tea and herbal infusions[J]. Food and Chemical Toxicology, 2008, 46(3): 1055-1061
[8] Chen Y M, Wang M K, Zhuang S Y, et al. Chemical and physical properties of rhizosphere and bulk soils of three tea plants cultivated in Ultisols[J]. Geoderma, 2006, 136: 378-387
[9]
[10] 吴卫红, 谢正苗, 徐建明,等.不同土壤中氟赋存形态特征及其影响因素[J]. 环境科学, 2002, 23(2): 104-108
[11] 张显晨,郜红建,张正竹,等.茶叶氟化物提取方法对比与电位法测定条件优化[J]. 安徽农业大学学报, 2011, 38(1): 1-4
[12] 郜红建, 张显晨, 张正竹,等.水中氟化物测定过程中TISAB的对比分析与优化[J]. 环境化学, 2010, 29(4):759-763
[13] 中国环境监测总站.中国土壤元素背景值[M]. 北京:中国环境科学出版社, 1990
[14] 安徽省环境监测中心站. 安徽省土壤污染状况调查研究报告. 2010.
[15] Shu W S, Zhang Z Q, Lan C Y, et al. Fluoride and aluminium concentrations of tea plants and tea products from Sichuan Province, P.R. China [J]. Chemosphere, 2003, 52: 1475-1482
[16] 阮建云, 杨亚军, 马立锋. 茶叶氟研究进展: 累积特性、含量及安全性评价[J]. 茶叶科学, 2007, 27(1): 1-7
[17] 郑达贤,沙济琴. 福建茶区土壤中的氟[J].土壤通报,1994, 25(5): 230-233
[18] 谭长银, 吴龙华. 典型潮土剖面主要性质和微量金属垂直分布特征[J]. 土壤学报, 2009, 46(5): 817-824
[19] Walker T S, Bais H P, Grotewold E, et al. Root Exudation and Rhizosphere Biology[J]. Plant Physiology, 2003, 132: 44-51
[20] Bais H P, Weir T L, Perry L G, et al. The role of root exudates in rhizosphere interactions with plants and other organisms [J]. Annual Review of Plant Biology, 2006, 57: 233-266
[21] 徐仁扣, 王亚云, 赵安珍. 低分子量有机酸对可变电荷土壤吸附性氟解吸的影响[J]. 土壤, 2003, 35 (5): 392-396
[22] 谢忠雷, 房春生, 孙文田,等.柠檬酸-铝-氟交互作用对茶园土壤氟吸附特征及形态分布的影响[J].农业环境科学学报, 2007, 26(6): 2271-2286
[23] Bertin C, Yang X H,Weston L A. The role of root exudates and allelochemicals in the rhizosphere[J]. Plant and Soil, 2003, 256: 67-83
[24] 马立锋, 阮建云, 石元值,等.茶树氟累积特性研究[J]. 浙江农业学报, 2004, 16 (2): 96-98
[25]
[26] 侯少范, 李海蓉, 王五一. 茶树富集铝氟的生物学特性与茶叶铝氟含量的关系[J]. 地方病防治杂志, 2008, 23(3): 186-189
[27] 罗淑华, 贾海云, 章雄才,等.砖茶中氟的浸出规律研究[J]. 茶叶科学, 2002, 22(1): 38-42
[28] 陈瑞鸿, 梁月荣, 陆建良,等.茶树对氟富集作用的研究[J]. 茶叶, 2002, 28(4): 287-290
[29] 李丽霞. 茶树吸收富集氟的特性及初步调控研究. 四川农业大学硕士学位论文,2008,17-18
[30] Bu-Olayan A H, Thomas B V. Translocation and bioaccumulation of trace metals in desert plants of Kuwait governorates[J]. Research Journal of Environmental Sciences, 2009, 3: 581-587
[31] Liang J, Shyu T, Lin H. The aluminium complexes in the xylem sap of tea plant[J]. Journal of the Chinese Agricultural Society, 1996,34: 695-702
[32] Nagata L, Hayatsu M, Kosuge N. Aluminium kinetics in the tea plant using 27A1 and 19F NMR[J].Phytochemistry, 1993, 32: 771-775
[33] 罗学平,何春雷,李丽霞,等.不同茶树品种含氟量的研究[J]. 福建茶叶, 2006, 4: 10-13
[34] Ruan J Y, Wong M H. Accumulation of fluoride and aluminum related to different varieties of tea plant[J]. Environmental and Health, 2001, 23: 56-63