[1] 黄奎贤,覃柳妹,吴少珍,等.广西河池市重金属污染现状分析与治理对策[J].广西科学院学报,2012,28(4):320-324
[2] 房辉,曹敏.云南会泽废弃铅锌矿重金属污染评价[J].生态学杂志,2009,28(7):1277-1283
[3] 吴攀,刘丛强,张国平,等.黔西北炼锌地区河流重金属污染特征[J].农业环境保护,2002,2(15):443-446
[4] 翟丽梅,陈同斌,廖晓勇.广西环江铅锌矿尾砂坝坍塌对农田土壤的污染及其特征[J].环境科学学报,2008,6(28):132-137
[5] 董亚辉,戴全厚,邓伊晗,等.不同类型铅锌矿废弃地重金属的分布特征及污染评价[J].贵州农业科学,2013,41(5):109-112
[6] 郑玉歆.土壤污染问题边缘化状态亟待改变[J].学习与实践,2013,1:47-57
[7] 郑喜坤,鲁安怀,高翔,等.土壤中重金属污染现状与防治方法[J].土壤与环境,2002,11(1):79-84
[8] 陈怀满.土壤-植物系统中的重金属污染[M].北京:科学出版社,1996:27-28
[9] 曾希柏,徐建明,黄巧云,等.中国农田重金属问题的若干思考[J].土壤学报,2013,50(1):186-194
[10] 房辉,曹敏.云南会泽废弃铅锌矿重金属污染评价[J].生态学杂志,2009,28(7):1277-1283
[11] 王小庆,马义兵,黄占斌,等.痕量金属元素土壤环境质量基准研究进展[J].土壤通报,2013,44(2):505-512.
[12] 刘敬勇,孙水裕,许燕滨,等.广州城市污泥中重金属的存在特征及其农用生态风险评价[J].环境科学学报,2009, 12(29):2545-2556
[13] 曹会聪,王金达,张学林.吉林黑土中Cd、Pb、As 的空间分布及潜在生态风险[J].中国环境科学,2007,27(1):89-92
[14] 唐庆丽,程金平,高昊旻,等.上海市典型疏浚泥重金属生态风险评价[J].环境科学,2013,34(4):1340-1344
[15] 邵学新,吴明,蒋科毅.西溪湿地土壤重金属分布特征及其生态风险评价[J].湿地科学,2005,5(3):253-259
[16] 丁海霞, 南忠仁, 刘晓文,等.金昌市郊农田土壤重金属的污染特征[J].农业环境科学学报,2008,27(6):2183-2188
[17] Hakanson L. An ecological risk index for aquatic pollution control. A sediment logical approach[J]. Water Research,1980, 14(8):975-1001
[18] 甘国娟,刘伟,邱亚群, 等.湘中某冶炼区农田土壤重金属污染及生态风险评价[J].环境化学,2013,32(1):132-138
[19] 韩君, 徐应明, 温兆飞, 等.重庆某废弃电镀工业园农田土壤重金属污染调查与生态风险评价[J]. 环境化学,2014,33(3):432-439
[20] 韩春梅,王林山,巩宗强,等.土壤中重金属形态分析及其环境学意义[J].生态学杂志,2005,24 (12):1499-1502
[21] 章海波,骆永明,赵其国,等.香港土壤研究 BCR提取法研究重金属的形态及其潜在环境风险[J].土壤学报,47(5):865-871
[22] Singh K P,Mohan D, Singh V K,et al. Studies on distribution and fractionation of heavy metals in Gomti river sediments-A tributary of the Ganges, India[J]. Journal of Hydrology,2005,312:14-27
[23] Guo W H,Liu X B, Liu Z G,et al. Pollution and potential ecological risk evaluation of heavy metals in the sediments around Dongjiang harbor, Tianjin[J]. Procedia Environmental Science,2010,2:729-736
[24] 宣昊,滕彦国,倪师军.基于地球化学基线的土壤重金属污染潜在生态风险评价[J].矿物岩石,2005,12:69-72
[25] Luo Y M,Christie P. Select ion of extractant for soil reducible trace metals changes the subsequent oxidisable metal fraction in sequential extraction schemes[J]. International Journal of Environmental Analytic Chemistry, 1998,72:59-75
[26] Luo Y M,Christie P. Bioavailability of copper and zinc in soils treated with alkaline stabilised sewage sludges[J]. Journal of Environmental Quality,1998,27(2):347-354
[27] Li R Y, Yang H, Zhou Z G, et al. Fractionation of heavy metals in sediments from Dianchi lake, China[J]. Pedosphere, 2007,17(2):265-272
[28] Perin G, Craboledda L, Lucchese M. et al. Heavy metal speciation in the sediments of Northern Adriatic Sea-A new approach for environmental toxicity determination[J]. Heavy Metal in the Environment,1985,5:454-456
[29] Marco T G,Joaquín D,Stefano A,et al. Heavy metals fractionation and multivariate statistical techniques to evaluate the environmental risk in soils of Huelva Township (SW Iberian Peninsula)[J]. Journal of Geochemical Exploration,2012,119:32-43