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Effect of biochar and humic acid on the copper, lead, and cadmium passivation during composting

机译:生物炭和腐殖酸对堆肥期间铜,铅和镉钝化的影响

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摘要

In this study, two different biochars (sawdust charcoal (SDC) and wheat straw charcoal (WSC)) and biological humic acid (BHA) were used with different addition rates in pig manure composting to illustrate the effect on heavy metals passivation. And the composts were applied to rape (Brassica campestris L.) growth to illustrate the stability of the passivation. Results showed the concentration of Cu, Cd, and Pb increased after composting, whereas the passivation rates of Cu, Pb, and Cd reached a maximum of 94.98%, 65.55%, and 68.78%, respectively. When the composts were applied to rape growth, the exchangeable fraction of Cu, Pb, and Cd in the soil further decreased and reduced the accumulation of heavy metals in the rape plant. The rape yield increased by 19.39%-34.35%. The optimal addition ratios of the three passivators were SDC 5%, WSC 7.5% and BHA 2.5% to reduce the health risk of heavy metals in rape products.
机译:在本研究中,两种不同的生物谱(锯末木炭(SDC)和小麦秸秆木炭(WSC))和生物腐殖酸(BHA)在猪粪堆肥中使用不同的添加速率来说明对重金属钝化的影响。 并且将堆肥应用于强奸(芸苔Camestris L.)的增长,以说明钝化的稳定性。 结果表明堆肥后Cu,Cd和Pb的浓度,而Cu,Pb和Cd的钝化速率分别达到94.98%,65.55%和68.78%。 当堆肥施加到强奸生长时,土壤中Cu,Pb和Cd的可交换部分进一步降低,减少了强奸植物中重金属的积累。 强奸产量增加了19.39%-34.35%。 三种钝化剂的最佳添加比率为SDC 5%,WSC 7.5%和BHA 2.5%,以降低强奸产品中重金属的健康风险。

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