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Effect of Biochar on Cadmium Fractions in Some Polluted Saline and Sodic Soils

机译:生物炭对一些污染盐水和碳化土壤中镉级分的影响

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Soil contamination by heavy metals is becoming a serious environmental problem especially in saline and sodic soils and information on different fractions of metals is useful to predict their mobility and availability in soil. Addition of organic amendments, as an important technique to remediation of metals has been considered recently. Therefore, the effect of sugarcane bagasse-derived biochar on cadmium (Cd) fractions in saline, sodic, saline-sodic and normal soils were evaluated through an incubation experiment using sequential extraction. Treatments included biochar (0, 2, and 4 wt %) of sugarcane bagasse and 50 mg Cd kg~(-1) with three replications. In all studied soils with 2 and 4% biochar application, the organic matter fraction was the dominant form of Cd. Biochar had no significant influence on exchangeable Cd in normal and sodic soils. Whereas, application of 2 and 4% biochar increased exchangeable Cd concentration in saline and saline-sodic soils probably due to high capacity of biochar to sorb salts that mitigate the negative effects of salts in soil solution. The mobility factor (MF) of Cd in studied soils was high (20-50%). The MF value decreased with the increase of biochar dosage. According to reduced partition index, Cd was partitioned in all fractions. Based on these results, biochar can mitigate the effect of Cd pollution in these soils.
机译:重金属的土壤污染正在成为一个严重的环境问题,尤其是盐水和碳化土壤和有关不同级分的信息,可用于预测其在土壤中的流动性和可用性。添加有机修改,作为近期考虑过重审金属的重要技术。因此,通过使用顺序提取的培养实验评估甘蔗蛋白衍生的生物丙烷(CD)衍生的生物丙烷(CD)级分中的生物丙烷(CD)级分中的影响。治疗包括生物炭(0,2和4wt%)甘蔗蛋白甘蔗渣和50mg CD kg〜(-1),具有三种复制。在所有研究的土壤中有2和4%的生物炭施用,有机物级分是CD的主要形式。生物炭对正常和碳化土壤中可交换的CD没有显着影响。然而,在盐水和盐水 - 碳水化合物中施加2和4%Biochar的应用可能是由于Biochar的高容量对土壤溶液中盐的负面影响减轻了盐的盐。研究中的镉的迁移率因数(MF)高(20-50%)。随着生物炭剂量的增加,MF值降低。根据降低的分区指数,CD在所有部分中分配。基于这些结果,Biochar可以减轻CD污染在这些土壤中的影响。

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