[1] 倪新,张艺兵,胡萌,等.食品和土壤中重金属镉污染及治理对策[J].山东农业大学学报:自然科学版,2008,39(3):419-423.
[2] 金焰,陈锋,李立忠,等.重金属镉在土壤中的迁移及形态分布研究[J].环境科学与技术,2011,34(S2):447-450.
[3] 赵静,孙海娟,冯叙桥.食品中重金属镉污染状况及其检测技术研究进展[J].食品工业科技,2014,35(16):371-376.
[4] 李玉浸.集约化农业的环境问题与对策[M].北京:中国农业科技出版社,2001.
[5] Su D C,Wong J W.Selection of mustard oilseed rape(Brassica juncea L.)for phytoremediation of cadmium contaminated soil[J].Bulletin of Environmental Contamination and Toxicology,2004,72(5):991-998.
[6] Ali H,Khan E,Sajad M A.Phytoremediation of heavy metals-concepts and applications[J].Chemosphere,2013,91(7):869-881.
[7] Robinson B H,Leblanc M,Petit D,et al.The potential of Thlaspi caerulescens for phytoremediation of contaminated soils[J].Plant and Soil,1998,203(1):47-56.
[8] Marques A C,Rangel A S,Castro P L.Remediation of heavy metal contaminated soils:phytoremediation as a potentially promising clean-up technology[J].Critical Reviews in Environmental Science and Technology,2009,39(8):622-654.
[9] Wei S H,Zhou Q X,Wang X,et al.A newly-discovered Cd-hyperaccumulator Solanum nigrum L.[J].Chinese Science Bulletin,2005,50(1):33-38.
[10] Zhang X F,Xia H P,Li Z,et al.Identification of a new potential Cd-hyperaccumulator Solanum photeinocarpum by soil seed bank-metal concentration gradient method[J].Journal of Hazardous Materials,2011,189(1/2):414-419.
[11] 李云,张世熔,张少卿,等.野茼蒿对镉的富集及其镉耐性[J].农业环境科学学报,2012,31(7):1296-1302.
[12] Lin L,Jin Q,Liu Y,et al.Screening of a new cadmium hyper accumulator,Galinsoga parviflora,from winter farmland weeds using the artificially high soil cadmium concentration method[J].Environmental Toxicology and Chemistry,2014,33(11):2422-2428.
[13] Lin L,Ning B,Liao M,et al.Youngia erythrocarpa, a newly discovered cadmium hyperaccumulator plant[J]. Environmental Monitoring and Assessment,2015,187(1):4205.
[14] Maestri E,Marmiroli M,Visioli G,et al.Metal tolerance and hyper accumulation:costs and trade-offs between traits and environment[J].Environmental and Experimental Botany,2010,68(1):1-13.
[15] 郭水良,李扬汉.杂草的基本特点及其在丰富栽培地生物多样性中的作用[J].自然资源,1996,18(3):48-52.
[16] 魏树和,周启星,王新,等.农田杂草的重金属超积累特性研究[J].中国环境科学,2004,24(1):105-109.
[17] 赵杨迪,潘远智,刘碧英,等.Cd、Pb单一及复合污染对花叶冷水花生长的影响及其积累特性研究[J].农业环境科学学报,2012,31(1):48-53.
[18] Rastmanesh F,Moore F,Keshavarzi B.Speciation and phytoavailability of heavy metals in contaminated soils in Sarcheshmeh area.Kerman province[J].Bulletin of Environmental Contamination and Toxicology,2010,85(5):515-519.
[19] 聂发辉.镉超富集植物商陆及其富集效应[J].生态环境,2006,15(2):303-306.
[20] Zhang S,Lin H,Deng L,et al.Cadmium tolerance and accumulation characteristics of Siegesbeckia orentalis L.[J].Ecological Engineering,2013,51:133-139.
[21] 郝再彬,苍晶,徐仲.植物生理学实验[M].哈尔滨:哈尔滨工业大学出版社,2004.
[22] Chehregani A,Noori M,Yazdi H L.Phytoremediation of heavy-metal-polluted soils:screening for new accumulator plants in Angouran mine(Iran)and evaluation of removal ability[J].Ecotoxicology and Environmental Safety,2009,72(5):1349-1353.
[23] 罗丽,林立金,廖明安,等.旱莲草对镉的富集特性研究[J].华北农学报,2014,29(3):216-220.
[24] 胡客平,石军,黄廷友,等.球序卷耳的镉积累特性研究[J].河南农业科学,2015,44(10):85-89.
[25] Mohamed A A,Castagna A,Ranieri A,et al.Cadmium tolerance in Brassica juncea roots and shoots is affected by antioxidant status and phytochelatin biosynthesis[J].Plant Physiology and Biochemistry,2012,57(8):15-22.
[26] 于方明,刘可慧,刘华,等.镉污染对水稻不同生育期抗氧化系统的影响[J].生态环境学报,2012,21(1):88-93.
[27] Brooks R R,Lee J,Reeves R D,et al.Detection of nickeliferous rocks by analysis of herbarium specimens of indicator plants[J].Journal of Geochemical Exploration,1977,7(1):49-57.
[28] Brooks R R.Plants that hyperaccumulate heavy metals:their role in phytoremediation,microbiology,archaeology,mineral exploration and phytomining[M].Oxford:CAB International,1998. |