[1] Kabata-Pendias A,Pendias H K.Trace elements in soils and plants[J].Trace Elements in Soils & Plants,1992,34(4):951-974.
[2] Montagne D,Cornu S,Bourennane H,et al.Effect of agricultural practices on trace-element distribution in soil[J].Communications in Soil Science and Plant Analysis,2007,38(3/4):473-491.
[3] Li Y,Gou X,Wang G,et al.Heavy metal contamination and source in arid agricultural soil in central Gansu Province,China[J].Journal of Environmental Sciences-China,2008,20(5):607-612.
[4] Yang P,Mao R,Shao H,et al.The spatial variability of heavy metal distribution in the suburban farmland of Taihang Piedmont Plain,China[J].Comptes Rendus Biologies,2009,332(6):558-566.
[5] Liu W X,Shen L F,Liu J W,et al.Uptake of toxic heavy metals by rice (Oryza sativa L.) cultivated in the agricultural soil near Zhengzhou city,People's Republic of China[J].Bulletin of Environmental Contamination and Toxicology,2007,79(2):209-213.
[6] Duruibe J O,Ogwuegbu M,Egwurugwu J N.Heavy metal pollution and human biotoxic effects[J].International Journal of Physical Sciences,2007,2(5):112-118.
[7] Wong S C,Li X D,Zhang G,et al.Heavy metals in agricultural soils of the Pearl River Delta,South China[J].Environmental Pollution,2002,119(1):33-44.
[8] Huamain C,Chunrong Z,Cong T U,et al.Heavy metal pollution in soils in China:status and countermeasures[J].Ambio,1999:130-134.
[9] Kitagishi K,Yamane I.Heavy metal pollution in soils of Japan[M].Japan:Scientific Societies Press,1981.
[10] Kim K H,Kim S H.Heavy metal pollution of agricultural soils in central regions of Korea[J].Water Air and Soil Pollution,1999,111(1/4):109-122.
[11] Meade R H.Contaminants in the Mississippi River,1987-1992[J].US Geological Survey Circular (USA),1995(1133):1-139.
[12] 王丽凤,白俊贵.沈阳市蔬菜污染调查及防治途径研究[J].农业环境保护,1994,13(2):84-88,97.
[13] 张海珍,张 坤,阎爱博,等.农产品中重金属污染现状及防治对策[J].现代化农业,2014(9):37-38.
[14] 王 威,刘东华,蒋悟生,等.铬污染地区环境对植物生长的影响[J].农业环境保护,2002,21(3):257-259.
[15] Ning-Yuan M,Liu L X,Lin C X,et al.Application of phytore-mediation for heavy metal contaminated soil[J].Xinjiang Journal of Agricultural Science and Technology,2008(3):31.
[16] Zhang M K,Wang M Q,Liu X M,et al.Characterization of soil quality under vegetable production along an urban-rural gradient[J].Pedosphere,2003,13(2):173-180.
[17] 陈 瑛,李廷强,杨肖娥,等.不同品种小白菜对镉的吸收积累差异[J].应用生态学报,2009,20(3):736-740.
[18] Zhang M,Gong Z.Content and distribution of several heavy metals in vegetable fields in China[J].Acta Soil Sinica,1996,33(1):85-93.
[19] 魏玲玲.我国蔬菜重金属污染现状与治理措施研究[J].农业灾害研究,2012,2(6):38-41.
[20] Cui Y J,Zhu Y G,Zhai R H,et al.Transfer of metals from soil to vegetables in an area near a smelter in Nanning,China[J].Environment International,2004,30(6):785-791.
[21] Luo C,Liu C,Wang Y,et al.Heavy metal contamination in soils and vegetables near an e-waste processing site,South China[J].Journal of Hazardous Materials,2011,186(1):481-490.
[22] 刘建国,李坤权,张祖建,等.水稻不同品种对铅吸收、分配的差异及机理[J].应用生态学报,2004,15(2):291-294.
[23] 杨树华,曲仲湘,王焕校.铅在水稻中的迁移积累及其对水稻生长发育的影响[J].生态学报,1986,6(4):312-323.
[24] 李 静,依艳丽,李亮亮,等.几种重金属(Cd、Pb、Cu、Zn)在玉米植株不同器官中的分布特征[J].中国农学通报,2006,22(4):244-247.
[25] 李月芳,刘 领,陈 欣,等.模拟铅胁迫下玉米不同基因型生长与铅积累及各器官间分配规律[J].农业环境科学学报,2010,29(12):2260-2267.
[26] 匡少平,徐 仲,张书圣.玉米对土壤中重金属铅的吸收特性及污染防治[J].安全与环境学报,2002,2(1):28-31.
[27] 蔡保松,张国平.大、小麦对镉的吸收、运输及在籽粒中的积累[J].麦类作物学报,2002,22(3):82-86.
[28] 邵 云,姜丽娜,李向力,等.Pb在小麦植株内吸收、分配和累积的研究[J].华北农学报,2005,20(4):28-31.
[29] Del Piano L,Abet M,Sorrentino C,et al.Uptake and distribution of Lead in tobacco (Nicotiana tabacum L.)[J].Journal of Applied Botany and Food Quality-Angewandte Botanik,2008,82(1):21-25.
[30] 郎思曼,王龙宪,许自成,等.烟草对重金属的吸收分布特征及影响因素研究综述[J].江西农业学报,2012,24(11):93-99.
[31] 张玉涛,杨兴平,李 琳,等.重金属Pb、Cr、Cd对烟草生长的影响及其分布规律[J].南方农业学报,2012,43(11):1697-1702.
[32] 石元值,马立峰,韩文炎,等.铅在茶树中的吸收累积特性[J].中国农业科学,2003,36(11):1272-1278.
[33] 唐 茜,叶善蓉,陈能武,等.茶树对铬、镉的吸收积累特性研究[J].茶叶科学,2008,28(5):339-347.
[34] 李 云,张进忠,童华荣.茶苗对重金属Pb Cu Cd和Cr的吸收累积规律[J].农业环境科学学报,2009,28(3):454-459.
[35] Sawert A,Weigel J,Jager H J.Upatake and organ-specific partidoning of Cadmium by Solanaceous plants[J].Angewante Botanic,1987,61(5/6):439-451.
[36] Tra H L,Egashira K.Heavy metal status of agricultural soils in Tuliem and Thanhtri districts of Hanoi city,Vietnam[J].J Fac Agric Kyushu Univ,1999,43(3):489-497.
[37] 冯恭衍,张 炬,吴建平.宝山区菜区土壤重金属污染的环境质量评价[J].上海农学院学报,1993,11(1):35-42.
[38] 李晶晶,彭恩泽.综述铬在土壤和植物中的赋存形式及迁移规律[J].工业安全与环保,2005,31(3):31-33.
[39] 刘云惠,魏显有,王秀敏,等.土壤中铬的吸附与形态提取研究[J].河北农业大学学报,2000,23(1):16-20.
[40] 陈英旭,何增耀,吴建平,等.外源铬在土壤中的形态转化[J].农业环境保护,1995,14(3):105-110.
[41] 张义贤.三价铬和六价铬对大麦毒害效应的比较[J].中国环境科学,1997,17(6):86-89.
[42] 史吉平,董永华,檀建新.铬对小麦幼苗超氧物歧化酶活性的影响[J].河北农业大学学报,1994(S1):62-65.
[43] Xian X.Effect of chemical forms of Cadmium,Zinc,and Lead in polluted soils on their uptake by cabbage plants[J].Plant and Soil,1989,113(2):257-264.
[44] 李 瑛,张桂银,李洪军,等.根际土壤中Cd、Pb形态转化及其植物效应[J].生态环境,2004,13(3):316-319.
[45] 王 玮,袁大伟,汪雅谷.土壤重金属的形态特征及其对蔬菜重金属含量的影响[J].上海农业学报,1991,7(4):54-60.
[46] 李雪芳,王林权,尚浩博,等.小白菜和小青菜对镉、汞、砷的富集效应及影响因素[J].北方园艺,2014(1):16-21.
[47] 宗良纲,孙静克,沈倩宇,等.Cd、Pb污染对几种叶类蔬菜生长的影响及其毒害症状[J].生态毒理学报,2007,2(1):63-68.
[48] 刘恩玲,王 亮,孙 继,等.不同蔬菜对土壤Cd、Pb的累积能力研究[J].土壤通报,2011,42(3):758-762.
[49] 徐明飞,郑纪慈,阮美颖,等.不同类型蔬菜重金属(Pb,As,Cd,Hg)积累量的比较[J].浙江农业学报,2008,20(1):29-34.
[50] 武淑华,韩爱民,蔡继红,等.蔬菜中重金属含量与土壤质量的关系[J].长江蔬菜,2002(S1):41-43.
[51] 贾锐鱼,赵晓光,祖 彪.叶类蔬菜对重金属的敏感性研究[J].安徽农业科学,2011,39(11):6495-6497.
[52] 赵 明,赵征宇,蔡 葵,等.砷、铬胁迫对蔬菜生长性状及产品安全性的影响[J].农业环境科学学报,2007,26(S2):489-493.
[53] 樊小林,姜井军,张一平,等.土壤和蔬菜中重金属含量的研究[J].西北农林科技大学学报:自然科学版,1993,16(3):103-106.
[54] Zurera-Cosano G,Moreno-Rojas R,Salmeron-Egea J,et al.Heavy metal uptake from greenhouse border soils for edible vegetables[J].Journal of the Science of Food and Agriculture,1989,49(3):307-314.
[55] 窦 磊,马 瑾,周永章,等.广东东莞地区土壤-蔬菜系统重金属分布与富集特性分析[J].中山大学学报:自然科学版,2008,47(1):98-102.
[56] 黄雅琴,杨在中.蔬菜对重金属的吸收累积特点[J].内蒙古大学学报:自然科学版,1995,26(5):608-615.
[57] 李博文,谢建治,郝晋珉.不同蔬菜对潮褐土Cd,Pb,Zn复合污染的吸收效应研究[J].农业环境科学学报,2003,22(3):286-288.
[58] 茹淑华,张国印,孙世友,等.蔬菜富集重金属Cu、Zn、Pb和Cd的特征和规律研究[C]//中国土壤学会第十一届全国会员代表大会暨第七届海峡两岸土壤肥料学术交流研讨会论文集:下,2008:321-326.
[59] 汪雅谷,卢善玲,盛沛麟,等.蔬菜重金属低富集轮作[J].上海农业学报,1990,6(3):41-49.
[60] Alexander P D,Alloway B J,Dourado A M.Genotypic variations in the accumulation of Cd,Cu,Pb and Zn exhibited by six commonly grown vegetables[J].Environmental pollution,2006,144(3):736-745.
[61] 王松良,郑金贵.13种小白菜基因型对Cd、Pb、A s累积特性比较[J].福建农业大学学报,2005,34(3):304-308.
[62] Xin J L,Huang B F,Liu A Q,et al.Identification of hot pepper cultivars containing low Cd levels after growing on contaminated soil:uptake and redistribution to the edible plant parts[J].Plant and Soil,2013,373(1/2):415-425.
[63] Zhang K,Wang J B,Yang Z Y,et al.Genotype variations in accumulation of Cadmium and Lead in celery (Apium graveolens L.) and screening for low Cd and Pb accumulative cultivars[J].Frontiers of Environmental Science & Engineering,2013,7(1):85-96.
[64] Wang L,Xu Y M,Sun Y E,et al.Identification of pakchoi cultivars with low Cadmium accumulation and soil factors that affect their Cadmium uptake and translocation[J].Frontiers of Environmental Science & Engineering,2014,8(6):877-887.
[65] Qiu Q,Wang Y T,Yang Z Y,et al.Responses of different Chinese flowering cabbage (Brassica parachinensis L.) cultivars to Cadmium and Lead exposure:screening for Cd+Pb Pollution-Safe cultivars[J].Clean-Soil Air Water,2011,39(11):925-932.
[66] Zhang K,Yuan J,Kong W,et al.Genotype variations in Cadmium and Lead accumulations of leafy lettuce (Lactuca sativa L.) and screening for pollution-safe cultivars for food safety[J].Environmental science.Processes & impacts,2013,15(6):1245-1255.
[67] He B Y,Ling L,Zhang L Y,et al.Cultivar-specific differences in heavy metal (Cd,Cr,Cu,Pb,and Zn) concentrations in water spinach (Ipomoea aquatic 'Forsk') grown on metal-contaminated soil[J].Plant and Soil,2015,386(1/2):251-262.
[68] Zhou Y H,Xue M,Yang Z Y,et al.High Cadmium pollution risk on vegetable amaranth and a selection for pollution-safe cultivars to lower the risk[J].Frontiers of Environmental Science & Engineering,2013,7(2):219-230.
[69] 楼根林,张中俊,伍 钢,等.镉在成都壤土和几种蔬菜中累积规律的研究[J].农村生态环境,1990(2):40-44.
[70] 韩美清,王路光,郭平毅,等.重金属污染土壤中菠菜对铅吸收和累积规律的研究[J].植物营养与肥料学报,2009,15(4):975-980.
[71] 李学德,花日茂,岳永德,等.合肥市蔬菜中铬、铅、镉和铜污染现状评价[J].安徽农业大学学报,2004,31(2):143-147.
[72] 杨 倩,付庆灵,胡红青,等.黄棕壤中铅镉复合污染对莴苣生长和品质的影响[J].华中农业大学学报,2006,25(4):389-392.
[73] 陈 惠,曹秋华,徐卫红,等.镉对不同品种辣椒幼苗生理特性及镉积累的影响[J].西南师范大学学报:自然科学版,2013,38(9):110-115.
[74] 阮美颖,徐明飞,张永志,等.南瓜对重金属As,Pb,Cd,Hg的吸收及其积累规律[J].浙江农业学报,2008,20(5):358-361.
[75] 朱兰保,高升平,盛 蒂,等.蚌埠市蔬菜重金属污染研究[J].安徽农业科学,2006,34(12):2772-2773,2846.
[76] 迟爱民,徐忠林.呼和浩特市蔬菜中重金属污染的研究[J].干旱区资源与环境,1995,9(1):86-94.
[77] 岳振华,张富强,胡瑞芝,等.菜园土中重金属和氟的迁移累积及蔬菜对重金属的富集作用[J].湖南农学院学报,1992,18(4):929-937.
[78] 王晓芳,罗立强.铅锌银矿区蔬菜中重金属吸收特征及分布规律[J].生态环境学报,2009,18(1):143-148.
[79] Zhang Y X.Toxicity of heavy metals to hordeum vulgare[J]. Acta Scientiae Circumstantiae,1997,17(2):199-201.
[80] Wierzbicka M.How lead loses its toxicity to plants[J].Acta Societatis Botanicorum Poloniae,1995,64(1):81-90.
[81] 徐和宝,汪嘉熙,谢明云.铅对几种作物生长的影响及其在植物体内的积累[J].植物生态学与地植物学丛刊,1983(4):273-279.
[82] 窦争霞,胡荣梅.土壤中的铅对三种蔬菜的影响[J].环境科学学报,1987,7(3):367-371,385-386.
[83] 付庆灵,吕 意,黎佳佳,等.生菜对灰潮土重金属Cd Pb污染的反应与矿质元素吸收[J].农业环境科学学报,2006,25(5):1153-1156.
[84] Bingham F T.Growth and Cadmium accumulation of plants grown on so il treated with a Cd enriched sewage[J].Journal of Environmental Quality,1975(4):207-2111.
[85] 吕金印,张 微,柳 玲.Cd2+处理对几种叶菜可食部分Cd含量及品质的影响[J].核农学报,2010,24(4):856-862.
[86] 李廷亮,谢英荷,刘子娇.Cd、Cr、Pb对几种叶类蔬菜生长状况及品质的影响[J].山西农业科学,2008,36(4):20-22.
[87] 解静芳,郭晓君,杨 彪,等.污水灌溉和镉胁迫对菠菜品质的影响[J].华北农学报,2010,25(1):204-207.
[88] 赵 晖,吕金印,张素娜,等.Cr~(6+)胁迫对高丹草幼苗根质膜氧化及ATPase活性的影响[J].西北农林科技大学学报:自然科学版,2009,37(10):167-172.
[89] Han F X,Sridhar B B,Monts D L,et al.Phytoavailability and toxicity of trivalent and hexavalent Chromium to Brassica juncea[J].New Phytologist,2004,162(2):489-499.
[90] Dixit V,Pandey V,Shyam R.Chromium ions inactivate electron transport and enhance superoxide Generation in vivo in pea (Pisum sativum L.cv.Azad) root mitochondria[J].Plant Cell and Environment,2002,25(5):687-693.
[91] Sharma D C,Sharma C P.Chromium uptake and toxicity effects on growth and metabolic activities in wheat, Triticum aestivum L.cv.UP 2003[J].Indian Journal of Experimental Biology,1996,34(7):689-691.
[92] Pandey V,Dixit V,Shyam R.Antioxidative responses in relation to growth of mustard (Brassica juncea cv.Pusa Jaikisan) plants exposed to hexavalent Chromium[J].Chemosphere,2005,61(1):40-47.
[93] 郑振华,周培疆,吴振斌.复合污染研究的新进展[J].应用生态学报,2001,12(3):469-473.
[94] 颜 斌,南忠仁,武文飞,等.干旱区绿洲土壤外源Pb对油菜生长和吸收Cd、Zn的影响[J].干旱区资源与环境,2013,27(7):56-60.
[95] 吕建波,徐应明,贾 堤,等.土壤镉、铅污染对油菜生长行为及重金属累积效应的影响[J].天津城市建设学院学报,2005,11(2):107-110.
[96] 杨志新,刘树庆.土壤重金属复合污染对油菜生长的影响[J].河北农业大学学报,2000,23(3):27-30.
[97] 王 浩,顾国平,施彩仙,等.土壤铅、镉污染对小白菜生长与积累的影响[J].浙江农业科学,2009(2):398-400.
[98] 秦天才,吴玉树,王焕校.镉、铅及其相互作用对小白菜生理生化特性的影响[J].生态学报,1994,14(1):46-50.
[99] 白 英,刘 铮,颜 斌,等.干旱区绿洲土壤外源Pb对Cd/Zn复合污染土壤中Cd,Zn形态分布及再分配的影响[J].兰州大学学报:自然科学版,2013,49(6):759-764.
[100] 宋 菲,郭玉文,刘孝义,等.土壤中重金属镉锌铅复合污染的研究[J].环境科学学报,1996,16(4):431-436.
[101] 任安芝,高玉葆.铅、镉、铬单一和复合污染对青菜种子萌发的生物学效应[J].生态学杂志,2000,19(1):19-22.
[102] 游植麟.土壤受镉铬铅复合污染了生物效应研究[J].农业环境保护,1997,16(3):131-132,137,145. |