[1] Filip Z. 2002. International approach to assessing soil quality by ecologically-related biological parameters[J].Agriculture, Ecosystems and Environment, 88:169-174.
[2] 扶惠华,王煜,田延亮.1996.镍在植物生命活动中的作用[J].植物生理学通讯,32(1):45-49.
[3] Adamo P, Dudka S, Wilson M J, et al. 1995. Chemical and mineralogical forms of Cu and Ni in contaminated soils from the Sudbury mining and smelting region, CANADA[J].The Science of the Total Environment, 164:57-68.
[4] Matti Ayras, Heikki Niskavaara, Igor Bogatyrev, et al. 1997.Regional patterns of heavy mmetals(Co, Cr, Cu, Fe, Ni, Pb,Ⅴ and Zn) and sulphur in terrestrial moss samples as indication of airborne pollution in a 188,000kmn area in northern Finland, Norway and Russia[J]. Journal of Geochemical Exploration, 58:269-281.
[5] 廖金凤.1999.电镀废水中铜锌铬镍对农业环境的影响[J].农村生态环境,15(4):52-55.
[6] 马放,冯玉杰,任南琪.2003.环境生物技术[M].北京:化学工业出版社.125-131.
[7] McGrath S P, Chaudhri A M, Giller K E. 1995. Long-term effects of metals in sewage on soils, microorganisms, and plants[Jl. Journal of industrial microbiologgv. 14: 94-101.
[8] 杨定清.1996.土壤——植物系统中镍研究进展评述[J].西南农业学报,9(4):109-116.
[9] 许嘉琳,杨居荣.1996.陆地生态系统中的重金属[M].北京:中国环境科学出版社.
[10] 王校焕.2002.污染生态学(第二版)[M].北京:高等教育出版社.
[11] Fliepbach A, Martens R, Reber H. 1994. Soil microbial biomass and activity in soils treated with heavy metal contaminated sewage sludge[J]. Soil boil biochem,26:1201-1205.
[12] 孔繁翔,陈颖,章敏.1997.镍、锌、铝对羊角月芽藻(Selenastrum capricornutum)生长及酶活性影响研究[J].环境科学学报,17(2):193-198.
[13] 杨元根,Paterson E,Campbell C.2001.城市土壤中重金属元素的积累及其微生物效应[J].环境科学,22(3):44-48.
[14] 滕应,黄昌勇,龙健,等.2003.矿区侵蚀土壤的微生物活性及其群落功能多样性研究[J].水土保持学报,17(1):115-118.
[15] Baath E. 1989. Effects of heavy metals in soils on microbial processes and populations(a review) [J]. water air and soil pollution, 47:335-379.
[16] Baath E, Diazravion M, Froslegard, A, et al. 1998. Effect of metal-rich sludge amendments on the soil microbial community[J]. Applied and Environmental Microbiology,64(1):238-245.
[17] 沈德中,王宏康,罗厚枚,等.1994.铜、镍、铅、锌4种重金属对水田土壤藻类的综合效应[J].中国环境科学,14(1):278-282
[18] 陈华癸,李阜棣,陈文新,等.1979.土壤微生物学[M].上海:上海科学技术出版社.53-58.
[19] 陈华癸,樊庆笙.1979.微生物学[M].北京:农业出版社.207-232.
[20] 龚平,孙铁珩,李培军.1 997.重金属对土壤微生物的生态效应[J].应用生态学报,8(2):218-224.
[21] Shweta S, Arvind M, Kayastha, et al. 2001. Response of Rhizobium leguminosarum to nickel stress[J]. World Journal of Microbiology & Biotechnology, 17: 667-672.
[22] Brookes P C, McGrath S P, Heijnen C. 1986. Metal residues in soils previously treated with sewage-sludge and their effects on growth and nitrogen fixation by blue-green algae[J]. Soil. Biol. Biochem, 18: 345-353.
[23] Wilke B M. 1989. Long-term effects of different inorganic pollutants on nitrogen transformations in a sandy cambisol[J]. Biol. Fertil. Sois., 7: 254-258.
[24] Komarova N N. 2002. Relationships of sorption of heavy metals(lead, nickel, cobalt) on biomass isolated from production waste of megaterin enzyme preparation[J].Russian Journal of applied Chemistry, 75(3): 509-510.
[25] Mark R B, Sanjay K, Frederick W. 2000. Microbial resistance to metals in the environment[J]. Ecotoxicol.Environ. Saf., 45: 198-207.
[26] Roig M G, Manzano T, Diaz M, et al. 1995. Enzymically enhanced extraction of uranium from biolobically leached solutions[J]. Int. Biodeter. Biodeg., 35(4): 93-127.
[27] Vecchio A, Finoli C, Di S, et al. 1998. Heavy metal biosorption by bacterial cells[J]. Fresenius J. Anal. Chem.,361: 338-342.
[28] Bosecker K. 2001. Microbial leaching in environmental clean-up programs[J]. Hydrometallurgy, 59: 245-248.
[29] Bernard R. 2003. Phytoremediation: synergistic use of plants and bacteria to clean up the environment[J].Biotechnology Advances, 21: 383-393.
[30] Varvara P, Grichko, Brendan F, et al. 2000. Increased ability of transgenic plants expressing the bacterial enzyme ACC deaminase to accumulate Cd, Co, Cu, Ni, Pb, and Zn[J].Journal of Biotechnology. 81: 45-53.
[31] 张素霞,王宏康.1991.污泥施肥时重金属镍对农作物的毒害研究[J].环境科学学报,11(1):7l-78. |