Immobilization of Lead and Cadmium in Soil Using Biochars Derived from Pig Manure and Suaeda glauca

被引:0
作者
Yarui Liu
Fei Wang
Zheyun Yin
Weili Jia
Hongyang Xiao
Qimei Lin
Yujie Feng
机构
[1] Tianjin University,College of Environmental Science and Engineering
[2] China Agricultural University,College of Resources and Environmental Sciences
[3] Nankai University,MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering
[4] Hebei University of Technology,School of Energy & Environmental Engineering
来源
Bulletin of Environmental Contamination and Toxicology | 2020年 / 105卷
关键词
Biochar; Heavy metal; Immobilization; Pig manure;
D O I
暂无
中图分类号
学科分类号
摘要
Biochar was for the first time produced from Suaeda glauca. The immobilization of Pb and Cd by this biochar and pig manure biochar was examined in two types of soils by diethylene triamine pentaacetic acid (DTPA) extraction. Addition of biochars decreased DTPA extractable Pb and Cd in Fluvo-aquic soil with reduction rates being 11.3%–48.4% and 0.74%–64.9% compared with the control treatment. The pig manure biochar favored the immobilization of Pb and S. glauca biochar favored the immobilization of Cd. Biochars can effectively immobilize heavy metals in Fluvo-aquic soil. However, the addition of biochars increased extractable Pb and Cd in red soil, with pig manure biochars showing greater rates. This is ascribed to that the competition effects of ions released from biochar enhanced the moving of heavy metals from iron and manganese oxides bound form to organic matter bound form, and hence enhanced the mobility and bioavailability of heavy metals.
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页码:146 / 154
页数:8
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共 145 条
  • [41] Lima IM(2019)Sorption of polychlorinated biphenyls onto biochars derived from corn straw and the effect of propranolol J Soils Sedim 20 1424-1434
  • [42] He Q(2018)The amelioration effects of canola straw biochar on Ultisol acidity varied with the soil in which the feedstock crop was cultivated Ecotoxicol Environ Saf 148 285-292
  • [43] Singh BR(2017)Adsorption of heavy metals from aqueous solution by UV-mutant Chemosphere 168 699-706
  • [44] Houben D(2013) loaded on biochars derived from different stock materials Energy Fuels 27 5890-5899
  • [45] Evrard L(2015)Biotransfer of Cd along a soil-plant: mealybug-ladybird food chain: a comparison with host plants Bioresour Technol 177 308-317
  • [46] Sonnet P(2018)Comparisons of biochar properties from wood material and crop residues at different temperatures and residence times Environ Sci Technol 52 5027-5047
  • [47] Igalavithana AD(2017)Investigating the mechanisms of biochar's removal of lead from solution Environ Pollut 223 560-566
  • [48] Lee SE(2016)Insight into multiple and multilevel structures of biochars and their potential environmental applications: a critical review Chemosphere 161 438-445
  • [49] Lee YH(2011)Space-time quantitative source apportionment of soil heavy metal concentration increments Bioresour Technol 102 3488-3497
  • [50] Jiang J(2012)Effect of coexisting Al(III) ions on Pb(II) sorption on biochars: Role of pH buffer and competition Plant Soil Environ 58 98-103