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中国五个典型城市污水厂污泥中重金属的形态分布研究
引用本文:WANG Chao,LI Xiao-Chen,WANG Pei-Fang,ZOU Li-Min,MA Hai-Tao. 中国五个典型城市污水厂污泥中重金属的形态分布研究[J]. 土壤圈, 2006, 16(6): 756-761. DOI: 10.1016/S1002-0160(06)60111-2
作者姓名:WANG Chao  LI Xiao-Chen  WANG Pei-Fang  ZOU Li-Min  MA Hai-Tao
作者单位:[1]Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes, Ministry of Education, Nanjing 210098 ,China [2]School of Environmental Science and Engineering, Hohai University, Nanjing 210098 ,China
基金项目:国家重点基础研究发展计划(973计划);江苏省自然科学基金
摘    要:Metal content and bioavailability are often the limiting factors for application of sewage sludge in agricultural fields. Sewage sludge samples were collected from five typical urban wastewater treatment plants in China to investigate their contents and distribution of various chemical fractions of Cu, Zn, Ni, Cr, Pb and Mo by using the BCR (Community Bureau of Reference) sequential extraction procedure. The sludges contained considerable amounts of organic matter (31.8%- 48.0%), total N (16.3-26.4 g kg^-1) and total P (15.1-23.9 g kg^-1), indicating high potential agricultural benefits of their practical applications. However, total Zn and Ni contents in the sludge exceeded the values permitted in China's control standards for pollutants in sludges from agricultural use (GB 4284-1984). The residual fraction was the predominant fraction for Mo, Ni and Cr, the oxidizable fraction was the primary fraction for Cu and Pb, and the exchangeable and reducible fractions were principal for Zn. The distribution of different chemical fractions among the sludge samples refiected differences in their physicochemical properties, especially pH. The sludge pH was negatively correlated with the percentages of reducible fraction of Cu and exchangeable fraction of Zn. The sludges from these plants might not be suitable for agricultural applications due to their high contents of Zn, Ni and Cr, as well as high potential of mobility and bioavailability of Zn.

关 键 词:重金属 污水 生物利用率 废水处理
收稿时间:2006-04-26
修稿时间:2006-09-12

Extractable fractions of metals in sewage sludges from five typical urban wastewater treatment plants of China
WANG Chao,LI Xiao-Chen,WANG Pei-Fang,ZOU Li-Min and MA Hai-Tao. Extractable fractions of metals in sewage sludges from five typical urban wastewater treatment plants of China[J]. Pedosphere, 2006, 16(6): 756-761. DOI: 10.1016/S1002-0160(06)60111-2
Authors:WANG Chao  LI Xiao-Chen  WANG Pei-Fang  ZOU Li-Min  MA Hai-Tao
Affiliation:

aKey Laboratory of Integrated Regulation and Resource Department on Shallow Lakes, Ministry of Education, Nanjing 210098 (China)

bSchool of Environmental Science and Engineering, Hohai University, Nanjing 210098 (China)

Abstract:Metal content and bioavailability are often the limiting factors for application of sewage sludge in agricultural fields. Sewage sludge samples were collected from five typical urban wastewater treatment plants in China to investigate their contents and distribution of various chemical fractions of Cu, Zn, Ni, Cr, Pb and Mo by using the BCR (Community Bureau of Reference) sequential extraction procedure. The sludges contained considerable amounts of organic matter (31.8%-48.0%), total N (16.3–26.4 g kg−1) and total P (15.1–23.9 g kg−1), indicating high potential agricultural benefits of their practical applications. However, total Zn and Ni contents in the sludge exceeded the values permitted in China's control standards for pollutants in sludges from agricultural use (GB 4284–1984). The residual fraction was the predominant fraction for Mo, Ni and Cr, the oxidizable fraction was the primary fraction for Cu and Pb, and the exchangeable and reducible fractions were principal for Zn. The distribution of different chemical fractions among the sludge samples reflected differences in their physicochemical properties, especially pH. The sludge pH was negatively correlated with the percentages of reducible fraction of Cu and exchangeable fraction of Zn. The sludges from these plants might not be suitable for agricultural applications due to their high contents of Zn, Ni and Cr, as well as high potential of mobility and bioavailability of Zn.
Keywords:fractions  heavy metals  sequential extraction  sewage sludge
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