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Remediation of multi-metal contaminated soil using biochars from rice husk and maple leaves

机译:使用稻壳和枫叶的生物脉内的多金属受污染土壤的修复

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Influence of four different types of amendments [raw rice husk (RRH), rice husk biochar (RHB), raw maple leaves (RML), and maple leaf biochar (MLB)] at the low application dosages (0.5, 1, and 2% w/w) was investigated on (im)mobilization of Cd, Cu, Pb, and Zn in an agricultural soil. A greenhouse experiment using mustard green Brassica juncea was conducted to evaluate the efficiency of soil amendments on bioavailability of metals. Metal leaching was remarkably decreased at biochar-treated samples, which was primarily attributed to biochar-induced increase in soil pH. Application of RRH and RML (2%), however, slightly increased heavy metal mobilization because of their acidic nature. Both biochars incorporation induced a considerable decline (80%) in the phytoavailability of metals. Generally, maximum immobilization efficiency for Cd, Cu, Pb, and Zn was observed in the case of RHB and MLB (2%), MLB (2%), RHB (2%), and RHB (2%) treatments, by 61-62%, 71%, 76%, and 40%, respectively. A comparison between various application dosages of amendments showed a noticeable difference between 0.5% and 2% for metal immobilization. Overall, results demonstrated the efficacy of several amendments for metals (im)mobilization while stressing the need to measure simultaneously the leaching and phytoavailability of metals induced by amendments.
机译:四种不同类型的修正[生稻壳(RRH),稻壳生物炭(RHB),生枫叶(RML)和枫叶生物炭(MLB)]的影响在低施用剂量(0.5,1和2%)在农业土壤中调查(IM)动员CD,Cu,Pb和Zn调查W / W)。进行了采用芥菜绿色芸苔的温室实验,以评估金属生物利用度的土壤修正效率。在生物炭处理的样品中,金属浸出显着降低,主要归因于生物炭诱导的土壤pH的增加。然而,由于其酸性性质,RRH和RML(2%)的应用略微增加重金属动员。 Biochars掺入均在金属的PhytoAva VaiavavaIsavaviaviave中诱导相当大的下降(> 80%)。通常,在RHB和MLB(2%),MLB(2%),RHB(2%)和rhB(2%)处理的情况下,观察到CD,Cu,Pb和Zn的最大固定效率,并在61 -62%,71%,76%和40%。各种申请剂量的比较均显示出明显的差异为0.5%和2%的金属固定化。总体而言,结果表明了金属(IM)动员的若干修正案的效果,同时强调了同时测量的需要进行次淋需和由修正诱导的金属的植物。

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