[1]王佳丽,黄贤金,钟太洋,等. 盐碱地可持续利用研究综述[J]. 地理学报,2011,66(5):673-684.
[2]李建国,濮励杰,朱明,等. 土壤盐渍化研究现状及未来研究热点[J]. 地理学报,2012,67(9):1233-1245.
[3]梁照东. 重金属污染土壤修复治理技术研究现状[J]. 环境与发展,2020,32(3):105-106.
[4]张羽. 城镇污水处理厂污泥干化处理技术国内外研究进展[C]//2012(第四届)上海水业热点论坛论文集.上海,2012:2-9.
[5]邓绍云,邱清华. 中国盐碱土壤修复研究综述[J]. 北方园艺,2011(22):171-174.
[6]鲍桐,廉梅花,孙丽娜,等. 重金属污染土壤植物修复研究进展[J]. 生态环境,2008,17(2):858-865.
[7]张蕾,杨航,鲁雪,等. 土壤重金属污染的植物修复[J]. 东北水利水电,2013,31(2):58-60.
[8]王一宁,王艳,王浙锋. 重金属污染土壤植物修复技术发展现状分析[J]. 节能与环保,2020(5):26-27.
[9]Manousaki E,Kalogerakis N.Halophytes present new opportunities in phytoremediation of heavy metals and saline soils[J]. Industrial & Engineering Chemistry Research,2011,50(2):656-660.
[10]梁丽琛,刘维涛,张雪,等. 盐土植物提取修复重金属污染盐土研究进展[J]. 农业环境科学学报,2016,35(7):1233-1241.
[11]Salt D E. Phytoextraction:Present application and future promise[C]//Bioremediation of contaminated soils. New York:Marcel Dekker Press,2000:58-68.
[12]Liang L C,Liu W T,Sun Y B,et al. Phytoremediation of heavy metal contaminated saline soils using halophytes:current progress and future perspectives[J]. Environmental Reviews,2017,25(3):269-281.
[13]Manousaki E,Kalogerakis N.Halophytes present new opportunities in phytoremediation of heavy metals and saline soils[J]. Industrial & Engineering Chemistry Research,2011,50(2):656-660.
[14]赵可夫,李法曾,张福锁. 中国盐生植物[M]. 2版.北京:科学出版社,2013.
[15]任海彦,胡健,胡毅飞. 重金属污染土壤植物修复研究现状与展望[J]. 江苏农业科学,2019,47(1):5-11.
[16]Yoon J,Cao X D,Zhou Q X,et al. Accumulation of Pb,Cu,and Zn in native plants growing on a contaminated Florida site[J]. Science of the Total Environment,2006,368(2/3):456-464.
[17]王学礼,常青山,侯晓龙,等. 三明铅锌矿区植物对重金属的富集特征[J]. 生态环境学报,2010,19(1):108-112.
[18]Ent A,Baker A J M,Reeves R D,et al. Hyperaccumulators of metal and metalloid trace elements:Facts and fiction[J]. Plant and Soil,2013,362(1/2):319-334.
[19]韦朝阳,陈同斌. 重金属超富集植物及植物修复技术研究进展[J]. 生态学报,2001,21(7):1196-1203.
[20]Flowers T J,Colmer T D.Salinity tolerance in halophytes[J]. The New Phytologist,2008,179(4):945-963.
[21]赵可夫,李法曾,樊守金,等. 中国的盐生植物[J]. 植物学通报,1999,34(3):201-207.
[22]Kadukova J,Manousaki E,Kalogerakis N.Pb and Cd accumulation and phyto-excretion by salt cedar (Tamarix smyrnensis Bunge)[J]. International Journal of Phytoremediation,2008,10(1):31-46.
[23]Manousaki E,Kalogerakis N.Halophytes—an emerging trend in phytoremediation[J]. International Journal of Phytoremediation,2011,13(10):959-969.
[24]van Oosten M J,Maggio A.Functional biology of halophytes in the phytoremediation of heavy metal contaminated soils[J]. Environmental and Experimental Botany,2015,111:135-146.
[25]Sruthi P,Shackira A M,Puthur J T.Heavy metal detoxification mechanisms in halophytes:An overview[J]. Wetlands Ecology and Management,2017,25(2):129-148.
[26]Lutts S,Lefèvre I.How can we take advantage of halophyte properties to cope with heavy metal toxicity in salt-affected areas?[J]. Annals of Botany,2015,115(3):509-528.
[27]Hall J L.Cellular mechanisms for heavy metal detoxification and tolerance[J]. Journal of Experimental Botany,2002,53(366):1-11.
[28]Sytar O,Kumar A,Latowski D,et al. Heavy metal-induced oxidative damage,defense reactions,and detoxification mechanisms in plants[J]. Acta Physiologiae Plantarum,2013,35(4):985-999.
[29]Srivastava S,Tripathi R D,Dwivedi U N.Synthesis of phytochelatins and modulation of antioxidants in response to cadmium stress in Cuscuta reflexa——an angiospermic parasite[J]. Journal of Plant Physiology,2004,161(6):665-674.
[30]Lefèvre I,Marchal G,Meerts P,et al. Chloride salinity reduces cadmium accumulation by the Mediterranean halophyte species Atriplex halimus L[J]. Environmental and Experimental Botany,2009,65(1):142-152.
[31]Zenk M H.Heavy metal detoxification in higher plants—a review[J]. Gene,1996,179(1):21-30.
[32]Gonzalez-Mendoza D,Moreno A Q,Zapata-Perez O.Coordinated responses of phytochelatin synthase and metallothionein genes in black mangrove,Avicennia germinans,exposed to cadmium and copper[J]. Aquatic Toxicology,2007,83(4):306-314.
[33]Feng J X,Lin Y Y,Yang Y,et al. Tolerance and bioaccumulation of Cd and Cu in Sesuvium portulacastrum[J]. Ecotoxicology and Environmental Safety,2018,147:306-312.
[34]Katschnig D,Broekman R,Rozema J.Salt tolerance in the halophyte Salicornia dolichostachya Moss:Growth,morphology and physiology[J]. Environmental and Experimental Botany,2013,92:32-42.
[35]Wahla I H,Kirkham M B.Heavy metal displacement in salt-water-irrigated soil during phytoremediation[J]. Environmental Pollution,2008,155(2):271-283.
[36]高静湉,杜方圆,李卫平,等. 黄河湿地小白河片区优势植物重金属的富集特征[J]. 农业环境科学学报,2016,35(11):2180-2186.
[37]孙海燕,万书波,李林,等. 洞庭湖芦苇湿地不同水期土壤-植被重金属分布特征[J]. 水土保持学报,2015,29(5):289-293.
[38]陈雪龙,齐艳萍. 重金属元素在湿地生态系统中的迁移与分配[J]. 水土保持通报,2013,33(4):279-283.
[39]付雄略,陈永华,刘文胜,等. 湖南省衡阳市某铅锌尾矿区植物多样性及其重金属富集性研究[J]. 中南林业科技大学学报,2017,37(7):130-135.
[40]周嘉倩,魏月,苑宁,等. 我国盐地碱蓬的研究现状及展望[J]. 农产品加工,2017(15):61-64,67.
[41]唐欢欢,曹学章,李小青,等. 5种植物对重金属的吸收与富集作用[J]. 科学技术与工程,2015,15(15):103-106,110.
[42]黄淑萍,陈爱侠,常亚飞,等. 皂河湿地植物对多种重金属污染湿地的修复研究[J]. 环境工程,2016,34(6):177-181,154.
[43]林彦彦,高珊珊,陈婧芳,等. 海马齿对锌的耐性与富集特征[J]. 湿地科学,2016,14(4):561-567.
[1]蒯广东,李轶,方晓航,等.硫氧化菌生物淋滤修复重金属污染研究进展[J].江苏农业科学,2013,41(05):335.
Kuai Guangdong,et al.Research progress on heavy metal pollution restoring by bioleaching of sulfur-oxidizing bacteria[J].Jiangsu Agricultural Sciences,2013,41(4):335.
[2]赖颖,赵锦慧,杨同文,等.发酵性结合酵母菌对重金属吸附能力的研究[J].江苏农业科学,2014,42(11):398.
Lai Ying,et al(98).Study on adsorption capacity of fermentation of yeast to heavy metals[J].Jiangsu Agricultural Sciences,2014,42(4):398.
[3]吴少飞,丁竹红,胡忻,等.EDTA及其与柠檬酸交替对污染水稻土壤重金属元素的分步连续提取研究[J].江苏农业科学,2014,42(11):369.
Wu Shaofei,et al(9).Study on sequential extraction of heavy metal from contaminated paddy soil using EDTA and citric acid[J].Jiangsu Agricultural Sciences,2014,42(4):369.
[4]李洋,游少鸿,林子雨,等.菖蒲对5种重金属富集能力的比较[J].江苏农业科学,2014,42(11):383.
Li Yang,et al(8).Comparative study on enrichment capacity of calamus to five kinds of heavy metals[J].Jiangsu Agricultural Sciences,2014,42(4):383.
[5]周秦,黄剑林.ICP-MS法与石墨炉原子吸收法测定水中重金属含量的比较[J].江苏农业科学,2013,41(06):283.
Zhou Qin,et al.Comparison of ICP-MS method and graphite furnace atomic absorption spectrometry in determination of heavy metals contents in water[J].Jiangsu Agricultural Sciences,2013,41(4):283.
[6]王爱英,彭健,杨金红,等.奎屯绿洲盐生植物区系研究[J].江苏农业科学,2013,41(06):330.
Wang Aiying,et al.Study on halophytes flora in oasis of Kuitun area[J].Jiangsu Agricultural Sciences,2013,41(4):330.
[7]华春,江海涛,周峰,等.盐生植物盐角草提取物的体外抗氧化活性[J].江苏农业科学,2014,42(10):295.
Hua Chun,et al.Study on in vitro antioxidant activities of Salicornia europaea extracts[J].Jiangsu Agricultural Sciences,2014,42(4):295.
[8]李恒,龙柱,冯群策.废纸脱墨污泥蚯蚓生物处理效应[J].江苏农业科学,2014,42(09):358.
Li Heng,et al.Biological treatment effect of waste paper deinking sludge by earthworm[J].Jiangsu Agricultural Sciences,2014,42(4):358.
[9]刘贵巧,王永霞,王建明,等.4种食用菌中重金属含量及食用安全评价[J].江苏农业科学,2014,42(09):268.
Liu Guiqiao,et al.Heavy metal contents and food safety assessment of 4 kinds of edible fungi[J].Jiangsu Agricultural Sciences,2014,42(4):268.
[10]邹烨燔,李勇,赵志忠,等.东寨港红树林沉积物重金属的垂向分异及污染评价[J].江苏农业科学,2014,42(08):327.
Zou Yefan,et al.Vertical distribution and pollution assessment of heavy metals in sediment of Dongzhai Port mangroves[J].Jiangsu Agricultural Sciences,2014,42(4):327.