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Effect of modified biochar on the availability of some heavy metals speciation and investigation of contaminated calcareous soil

机译:改良生物炭对一些重金属形态的可用性及污染钙质土壤调查的影响

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The aim of this study was to investigate the speciation of copper (Cu), lead (Pb), and cadmium (Cd) in a modified biochar amended soil in a long-term pot experiment. The efficiency of amendments was evaluated using the extraction of the sequence. Here, rice husk biochar was modified using three levels of cadmium nitrate salt (0, 40 and 80 mg kg(-1) soil), copper sulfate salt (0, 50 and 200 mg kg(-1) soil) and lead nitrate salt (0, 300 and 600 mg kg(-1) soil). In addition, two levels (0 and 4 wt%) rice husk biochar was modified with Fe3O4, NaOH, and H2SO4 and applied each at three replicates. In order to study soil fractionation 5 months after incubation, chemical forms of cadmium, copper, and lead were determined by the fractionation method, a mobility factor and sequential extraction procedure were applied for appraising the effectiveness of the amendments. Based on the results, biochar modified with NaOH is the most effective and thus reduces lead release in solution and increases in residual form. The modified biochar decreases cadmium concentration and leads to increased copper concentration in the corn plant. Modified rice husk biochar decreased translocation factor, the least translocation factor was observed in NaOH-modified biochar.
机译:本研究的目的是研究经过长期锅实验的改性生物炭修正的土壤中铜(Cu),铅(Pb)和镉(Cd)的形态。使用序列的提取评估修改的效率。在此,使用三种柠檬酸镉盐(0,40和80mg(-1)土),硫酸铜盐(0,50和200mg(-1)土壤)和硝酸盐盐(0,50和200mg)和硝酸盐(0,300和600 mg kg(-1)土壤)。此外,用Fe3O4,NaOH和H 2 SO 4修饰两种水平(0和4wt%)稻壳生物炭,并在三个重复下施加。为了在孵育后5个月的土壤分级,通过分馏方法确定镉,铜和铅的化学形式,施用迁移系数和序贯提取程序,以评估修正案的有效性。基于结果,用NaOH改性的Biochar是最有效的,因此降低了溶液中的铅释放并增加残余形式。改性的生物炭降低了镉浓度并导致玉米植物中的铜浓度增加。改性稻壳生物炭降低易位因子,在Naoh改性生物炭中观察到最少的易位因子。

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