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施用碱稳定污泥污水土壤经γ-辐照后土壤溶液中Cu和Zn的变化
引用本文:YAN Wei-Dong,LUO Yong-Ming,P. CHRISTIE. 施用碱稳定污泥污水土壤经γ-辐照后土壤溶液中Cu和Zn的变化[J]. 土壤圈, 1998, 8(2): 135-142
作者姓名:YAN Wei-Dong  LUO Yong-Ming  P. CHRISTIE
作者单位:Institute of Soil Science, the Chinese Academy of Sciences, P.O Box 821, Nanjing 210008 (China);;Agricultural and Environmental Science Department, the Queens University of Belfast, Newforge Lane, Belfast BT9 5PX (UK);Agricultural and Environmental Science Department, the Queens University of Belfast, Newforge Lane, Belfast BT9 5PX (UK)
基金项目:*1Project supported by the Department of Environment for Northern Ireland, UK; the President Foundation of the Chinese Academy of Sciences, China; and the Jiangsu Provincial Distinguished Youth Foundation, China.
摘    要:A glasshouse pot experiment was conducted to study changes in the solubility of copper and zinc in the soil-plant system following heavy application of sewage sludge and partial sterilisation of the sludge/soil mixture. A slightly acid sandy loam was mixed with alkaline stabilised and composted urban sewage sludge solids (Agri-Soil, 180 t hm-2), and the soil/sludge mixture was-irradiated (10 kGy). The contrasts without the application of sewage sludge and-irradiation were also included in the experiment. Perennial ryegrass (Lolium perenne cv. Magella) was grown on irradiated and unirradiated soils for 50 days. Soil solution samples were obtained using soil suction samplers immediately before plant transplantation and every ten days thereafter. The soil solution samples were used directly for determination of Cu and Zn, toget her with pH, electrical conductivity (EC) and absorbance at wavelength 360 nm (A360). Applicat ion of Agri-Soil led to a substantial increase in dissolved Cu and a significant decrease in dissolved Zn in the soil solution and these effects were accompanied by increased soil solution pH, EC and A360. The alkaline sludge product (Agri-Soil) in combination with-irradiation also led to a pronounced elevation of Cu and A360 but a marked decline in EC, indicating an increase in dissolved organic compounds and a decrease in the ionic strength of the soil solution. The dissolved Cu and Zn, EC and A360 usually decreased while the pH increased after plant grow th for 50 days.

关 键 词:copper   γ irradiation   sewage sludge   soil solution   zinc

Changes in soil solution Cu and Zn following application of alkaline stab ilised sewage sludgeand gamma irradiation
YAN Wei-Dong,LUO Yong-Ming and P. CHRISTIE. Changes in soil solution Cu and Zn following application of alkaline stab ilised sewage sludgeand gamma irradiation[J]. Pedosphere, 1998, 8(2): 135-142
Authors:YAN Wei-Dong  LUO Yong-Ming  P. CHRISTIE
Affiliation:Institute of Soil Science, the Chinese Academy of Sciences, P.O Box 821, Nanjing 210008, China.
Abstract:A pot experiment was conducted to study changes in the solubility of copper and zinc in the soil-plant system following heavy application of sewage sludge and partial sterilisation of the sludge/soil mixture. A slightly acid sandy loam was mixed with alkaline stabilised and composted sewage sludge ('Agri-Soil', 180 t/hm2), and the soil/sludge mixture was gamma-irradiated (10 kGy). Treatments without the application of sewage sludge and gamma-irradiation were also included in the experiment. Perennial ryegrass (Lolium perenne cv. Magella) was grown on irradiated and unirradiated soils for 50 days. Soil solution samples were obtained using soil suction samplers immediately before plant transplantation and every ten days thereafter. The soil solution samples were used directly for determination of Cu and Zn, together with pH, electrical conductivity (EC) and absorbance at wavelength 360 nm (A360). Application of Agri-Soil led to a substantial increase in dissolved Cu and a significant decrease in dissolved Zn in the soil solution and these effects were accompanied by increased soil solution pH, EC and A360. The alkaline sludge product (Agri-Soil) in combination with gamma-irradiation also led to a pronounced elevation of Cu and A360 but a marked decline in EC, indicating an increase in dissolved organic compounds and a decrease in the ionic strength of the soil solution. The dissolved Cu and Zn, EC and A360 usually decreased while the pH increased after plant growth for 50 days.
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