Immobilization of Pb and Cu in polluted soil by superphosphate, multi-walled carbon nanotube, rice straw and its derived biochar

被引:0
作者
Muhammad Shahid Rizwan
Muhammad Imtiaz
Guoyong Huang
Muhammad Afzal Chhajro
Yonghong Liu
Qingling Fu
Jun Zhu
Muhammad Ashraf
Mohsin Zafar
Saqib Bashir
Hongqing Hu
机构
[1] Huazhong Agricultural University,Key Laboratory of Arable Land Conservation (Middle and Lower Reaches of Yangtse River), Ministry of Agriculture, College of Resources and Environment
[2] University of Sargodha,University College of Agriculture
[3] Federal University of Santa Maria,Soil & Water Chemistry Lab. Department of Soil Science
来源
Environmental Science and Pollution Research | 2016年 / 23卷
关键词
Immobilization; Heavy metals; Bio-accessibility; Biochar; Superphosphate; Multiwall carbon nanotube;
D O I
暂无
中图分类号
学科分类号
摘要
Lead (Pb) and copper (Cu) contamination in croplands pose severe health hazards and environmental concerns throughout soil-food chain transfer. In the present study, BCR, TCLP, CaCl2, and SBET techniques were employed to evaluate the simultaneous effectiveness of rice straw (RS) and its derived biochar (BC), multiwall carbon nanotube (MWCNT), and single superphosphate (SSP) to immobilize the Pb and Cu in co-contaminated soil. The BCR sequential extraction results suggested that with increasing BC and SSP amount, the acid-soluble fractions decreased while oxidizable and residual proportions of Pb and Cu were increased significantly. Compared to SSP, the application of BC amendment substantially modified partitioning of Cu from easily exchangeable phase to less bioavailable residual bound fraction. The immobilized Pb and Cu were mainly transformed to reducible forms. The TCLP and CaCl2-extracted Pb and Cu were reduced significantly by the addition of BC compared to RS and MWCNT, whereas the bio-accessibility of Pb significantly reduced with RS addition. SSP showed better results for Pb immobilization while marginal for Cu in co-contaminated soil. Overall, the addition of BC offered the best results and could be effective in both Pb and Cu immobilization thereby reducing their mobility and bioavailability in the co-contaminated soil.
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页码:15532 / 15543
页数:11
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