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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Low Cost Biomass Derived Biochar Amendment on Persistence and Sorption Behaviour of Flubendiamide in Soil
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Low Cost Biomass Derived Biochar Amendment on Persistence and Sorption Behaviour of Flubendiamide in Soil

机译:低成本生物量衍生的生物炭修正土壤中氟脲醛的持续性和吸附行为

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摘要

Persistence and sorption behaviour of flubendiamide in two different Indian soils as affected by maize stalk biochar was studied. The persistence was more in West Bengal soil (178.6 days) than Sikkim soil (165.3 days) at 10 mu g g(-1)fortification level. Biochar amendment addition to soil at 5% enhanced the degradation process and half-life (T-1/2) values were 103.5 and 117.4 days, respectively for biochar amended Sikkim and West Bengal soil. Sorption study through batch equilibrium method resulted the 4 h equilibrium time with adsorption 6.22% +/- 0.16% and 5.26% +/- 0.16% in Sikkim and West Bengal soil, respectively. Biochar addition at 5% increased the adsorption of flubendiamide to 8.12% +/- 0.16% and 5.88% +/- 0.16% indicating a greater influence in this process. The adsorption was more in biochar amended Sikkim soil than West Bengal soil. The values of desorption was slower than adsorption indicating a hysteresis effect having hysteresis coefficient (H-1) ranges between 0.025 and 0.151 in two test soils.
机译:研究了由玉米茎生物炭影响的两种不同印度土壤中的氟脲硫脲的持久性和吸附行为。在西孟加拉邦土壤(178.6天)的持续存在于锡金土壤(165.3天),10 mu g g(-1)强化水平。生物炭修正为5%的土壤增强降解过程和半衰期(T-1/2)值分别为Biochar修正的Sikkim和West Bengal土壤。通过批量平衡方法的吸附研究产生了4小时的均衡时间,吸附6.22%+/- 0.16%和5.26%+/- 0.16%,西孟加拉邦土壤。生物炭加入5%的加法增加了氟脲的吸附量为8.12%+/- 0.16%和5.88%+/- 0.16%,表明在该过程中有更多的影响。 Biochar的吸附更多,Sikkim土壤比西孟加拉邦土壤更加修正。解吸的值比吸附慢,表明在两个测试土壤中具有0.025和0.151的滞后系数(H-1)的滞后效应。

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