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Synergistic effects of biochar and processed fly ash on bioavailability, transformation and accumulation of heavy metals by maize (Zea mays L.) in coal-mining contaminated soil

机译:生物炭和加工后的粉煤灰对煤炭污染土壤中玉米(Zea mays L.)生物利用度,重金属转化和累积的协同作用

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In the paper, hydrothermally (HT) treated, sulfuric acid (H2SO4), and hydrochloric acid (HCI) washed fly ashes (FA) were used to examine the applied effects with and without biochar (BC) on the bioavailability of heavy metals (HMs) and growth of maize (Zea mays L) plants in coal -mining contaminated soil. Addition of BC in combination with these processed fly ashes (PFA) significantly increased the soil pH, EC, and soil organic carbon (SOC). Individual application of BC and PFA increased the available contents of Mg, Mn, and Fe, while the combination of BC and PFA significantly decreased the bioavailability of HMs in soil compared to control. The BC + HT-FA and BC + H2SO4-FA were most efficient treatments followed by BC + HCl-FA in promoting plant growth parameters (i.e., fresh and dry biomass, root and shoot lengths), reduction in the uptake of HMs and increase in the uptake of macronutrients. The results established that the combined application of BC and PFA synergistically increased HMs immobilization and maize biomass yields. The lowest transfer rate (TR), bioconcentration factor (BCF), and translocation factor (TF) for Cr, Co, Ni, Cu, Zn, Cd, and Pb were detected in BC + HT-FA, followed by BC + H2SO4-FA and BC + HCl-FA treatments after 60 days of maize crop harvesting. It could be suggested that using BC along with PFA as a soil stabilizer may be a promising source to immobilize HMs in a coal -mining contaminated soil. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,使用水热(HT)处理,硫酸(H2SO4)和盐酸(HCI)洗涤过的粉煤灰(FA)来研究有无生物炭(BC)对重金属(HMs)生物利用度的应用效果。 )和在受煤矿污染的土壤中生长玉米(Zea mays L)植物。将BC与这些经过处理的粉煤灰(PFA)结合使用可显着提高土壤的pH值,EC和土壤有机碳(SOC)。与对照相比,单独施用BC和PFA增加了Mg,Mn和Fe的有效含量,而BC和PFA的组合显着降低了土壤中HMs的生物利用度。 BC + HT-FA和BC + H2SO4-FA是最有效的处理方法,其次是BC + HCl-FA来促进植物生长参数(即新鲜和干燥的生物量,根和芽的长度),减少HMs吸收并增加吸收大量营养素。结果表明,BC和PFA的联合应用可协同提高HMs固定化和玉米生物量的产量。在BC + HT-FA中检测到Cr,Co,Ni,Cu,Zn,Cd和Pb的最低转移速率(TR),生物富集因子(BCF)和转运因子(TF),然后是BC + H2SO4-玉米收获60天后进行FA和BC + HCl-FA处理。可以认为,将BC和PFA用作土壤稳定剂可能是将HMs固定在采煤污染土壤中的一种有前途的来源。 (C)2019 Elsevier Ltd.保留所有权利。

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