[1] Tandy S, Healey J R, Nason M A, et al. Remediation of metal polluted mine soil with compost: Co- composting versus incorporation[J]. Environmental Pollution,2009,157(2):690-697.
[2] 仲崇府,张青松,林立金,等.改良剂对土壤锌铬及养分有效性的影响[J].水土保持研究,2010,17(6):233-236.
[3] Brokbartold M, Wischermann MMarschner B. Plant Availability and Uptake of Lead, Zinc, and Cadmium in Soils Contaminated with Anti- corrosion Paint from Pylons in Comparison to Heavy Metal Contaminated Urban Soils[J]. Water, Air, & Soil Pollution, 2011,223(1):199-213.
[4] Wang B, Xie Z, Chen J, et al. Effects of field application of phosphate fertilizers on the availability and uptake of lead, zinc and cadmium by cabbage (Brassica chinensis L.) in a mining tailing contaminated soil[J]. Journal of Environmental Sciences,2008,20(9): 1109-1117.
[5] Jano? P, Vávrová J, Herzogová L, et al. Effects of inorganic and organic amendments on the mobility (leachability) of heavy metals in contaminated soil: A sequential extraction study[J]. Geoderma, 2010,159(3-4):335-341.
[6] Cha J, Cui M, Jang M, et al. Kinetic and mechanism studies of the adsorption of lead onto waste cow bone powder (WCBP) surfaces [J]. Environmental Geochemistry and Health,2010,33(S1):81-89.
[7] Nascimento Guedes J, Amaral Sobrinho N M B, Ceddia M B, et al. Concentration and Spatial Distribution of Lead in Soil Used for Ammunition Destruction[J]. Bulletin of Environmental Contamination and Toxicology,2012,89(4):775-781.
[8] Gupta D K, Huang H G, Corpas F J. Lead tolerance in plants: strategies for phytoremediation[J]. Environmental Science and Pollution Research,2013,20(4):2150-2161.
[9] GB 15618—1995, 土壤环境质量标准[S].
[10] 宋波,张学洪,蒙冬柳,等.桂林市菜地土壤和蔬菜铅含量调查与污染评价[J].环境科学研究,2012,25(10):1155-1160.
[11] 杨军,郑袁明,陈同斌,等.中水灌溉下重金属在土壤中的垂直迁移及其对地下水的污染风险[J].地理研究,2006,25(03):449-456.
[12] Shashkova I L, Rat’ ko A IKitikova N V. Removal of heavy metal ions from aqueous solutions by alkaline-earth metal phosphates[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 1999,160(3):207-215.
[13] Arnich N, Lanhers M- C, Laurensot F, et al. In vitro and in vivo studies of lead immobilization by synthetic hydroxyapatite[J]. Environmental Pollution,2003,124(1):139-149.
[14] Bolan N, Kunhikrishnan A, Thangarajan R, et al. Remediation of heavy metal(loid)s contaminated soils- To mobilize or to immobilize?[J]. Journal of Hazardous Materials,2014,266(0):141- 166.
[15] Cheyns K, Peeters S, Delcourt D, et al. Lead phytotoxicity in soils and nutrient solutions is related to lead induced phosphorus deficiency[J]. Environmental Pollution,2012,164(0):242-247.
[16] Mozgawa W, Król MBajda T. Application of IR spectra in the studies of heavy metal cations immobilization on natural sorbents [J]. Journal of Molecular Structure,2009,924-926(0):427-433.
[17] Kalbitz K, Wennrich R. Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter[J]. Science of The Total Environment,1998,209(1):27-39.
[18] Tan K H, Dowling P S. Effect of organic matter on CEC due to permanent and variable charges in selected temperate region soils [J]. Geoderma,1984,32(2):89-101.
|