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Chemical stabilization of Cd-contaminated soil using biochar

机译:使用Biochar的CD污染土壤的化学稳定化

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摘要

Metal smelter activities have contaminated approximately 700 km(2) of the Campine region in Belgium and The Netherlands. This work aimed to assess the effectiveness of biochar added to this soil using compost, peat or lime as a reference. Amendments were mixed with the contaminated soil at a 2 or 4% ratio (w: w) and equilibrated for up to 44 weeks. Treatment with biochar released significantly lower concentrations of Cd in the soil solution than compost or peat. In comparison to the blanks, soil solution concentrations of Cd were reduced 67% on average for the 4% biochar treatment and increased 30% and 231% for the 4% compost and 4% peat treatments, respectively. The lime treatment was equally effective as the biochar in reducing Cd concentrations. Similar trends were observed when conducting consecutive CaCl2 extractions. However, pH-stat leaching tests showed biochar and the other organic amendments to be more effective than lime in retaining Cd from the solution. The combined effect of pH and metal complexation capacity of added biochar resulted in an effective reduction in soluble Cd concentrations that lasted longer than when lime, compost or peat are used. Crown Copyright (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:金属冶炼厂的活动污染了比利时和荷兰的坎普林地区约700公里(2)公里。这项工作旨在使用堆肥,泥炭或石灰作为参考,评估生物施的有效性。用2或4%的比例(W:W)与污染土壤混合修订,并平衡长达44周。用生物炭治疗比堆肥或泥炭在土壤溶液中释放出明显较低的CD浓度。与坯料相比,镉的土壤溶液浓度平均降低67%,对于4%的生物炭处理,分别增加了4%堆肥和4%泥炭处理的30%和231%。石灰处理同样有效地作为减少CD浓度的生物凝块。在进行连续的CaCl 2提取时观察到类似的趋势。然而,pH-Stat浸出试验显示生物炭和其他有机型修正案比在溶液中保留CD中的石灰更有效。添加的生物炭的pH和金属络合能力的组合效果导致可溶性CD浓度的有效减少,其持续时间比石灰,堆肥或泥炭持续时间。 Crown版权所有(c)2017由elestvier有限公司出版。保留所有权利。

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