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Residual effects of tobacco biochar along with different fixing agents on stabilization of trace elements in multi-metal contaminated soils

机译:烟草生物炭的残余作用以及不同固定剂对多金属污染土壤中微量元素稳定的影响

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The residual effect of tobacco biochar (TB >= 500 degrees C) mono and co-application with Ca-hydroxide (CH), Ca-bentonite (CB) and natural zeolite (NZ) on the bio-availability of trace elements TE(s) in alkaline soils has not been deeply studied yet. A pot study that had earlier been investigated TB mono and blended with CH, CB and NZ on the immobilization of Pb, Cu Cd, and Zn by Chinese cabbage. Maize crop in the rotation was selected as test plant to assess the residual impact of amendments on stabilization of Pb, Cu Cd, and Zn in mine polluted (M-P), smelter heavily and low polluted (S-HP and S-LP, respectively) soils. The obtained results showed that stabilization of Pb, Cd, Cu and Zn reached 63.84% with TB + CB, 61.19% with TB + CH, 83.31% with TB + CH and 35.27% with TB + CH for M-P soil, 36.46% with TB + NZ, 38.46% with TB + NZ, 19.40% with TB + CH and 62.43% with TB + CH for S-LP soil, 52.94% TB + NZ, 57.65% with TB + NZ, 52.94% with TB + NZ, and 28.44% with TB + CH for S-LP soil. Conversely, TB + CH and TB alone had mobilized Pb and Zn up to 19.29% and 34.96% in M-P soil. The mobility of Zn reached 8.38% with TB + CB and 66.03% with TB for S-HP and S-LP soils. The uptake and accumulation of Pb, Cd, Cu and Zn in shoot and root were reduced in three polluted soils. Overall, the combination of TB along with CH, CB and NZ has been proven to be effective in Pb, Cd, Cu and Zn polluted mine/smelter soils restoration. (c) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:烟草生物炭(Tb> = 500℃)单体和与Ca-氢氧化物(CH),Ca-膨润土(Cb)和天然沸石(NZ)的剩余磷酸盐(S )在碱性土壤中尚未深入研究。早期研究了TB单体的盆栽研究,并用CH,CB和NZ与大白菜的固定化的CH,CB和NZ混合。玉米作物在旋转中被选为试验工厂,以评估矿井污染(MP),冶炼厂,严重和低污染(S-HP和S-LP)中Pb,Cu Cd和Zn稳定化对稳定化的剩余影响土壤。所得结果表明,Tb + Ch,Tb + Ch的Tb + Cb,Tb + Ch的8.1.19%,35.27%,Tb + Ch的稳定性为61.1.9%,36.46%,36.46% + NZ,38.46%,TB + NZ,19.40%,TB + CH,TB + CH的S-LP土壤,52.94%TB + NZ,57.65%,TB + NZ,TB + NZ 52.94%, 28.44%用TB + CH用于S-LP土壤。相反,单独的TB + CH和TB在M-P土壤中动员了高达19.29%和34.96%的PB和Zn。 Zn的迁移率达到8.38%,Tb + Cb和S-HP和S-LP土壤的TB达到66.03%。在三种污染的土壤中减少了枝条和根部中Pb,Cd,Cu和Zn的摄取和积累。总之,已证明TB与CH,CB和NZ的组合在PB,CD,Cu和Zn污染矿山/冶炼厂土壤恢复中有效。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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