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Chemical, Physical, and Hydraulic Properties as Affected by One Year of Miscanthus Biochar Interaction with Sandy and Loamy Tropical Soils

机译:化学,物理和液压特性受到一年的MISCanthus Biochar与桑迪和腰部热带土壤相互作用的影响

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摘要

Biochar application has improved soil properties contributing to crop growth. This study evaluates the effect of biochar amount on soil physical, chemical and hydraulic properties in sandy (SD) and clay loam (CL) soils under tropical conditions. An incubation experiment was installed under laboratory conditions with eight treatments (control, two kinds of soils, SD and CL, and three biochar doses (6.25, 12.5, and 25 Mg ha−1). Analyses of soil water retention, bulk density (BD), total porosity (TP), pores size, total carbon (TC), and N were performed after one year. The BD slightly decreased by 0.035 and 0.062 Mg m−3 and TP increased by 1.87 and 2.31% in CL and SD soil respectively, upon 6.25 to 25 Mg ha−1 biochar application. TC increased in CL and SD by 6.5 and 4.2 kg kg−1, respectively, compared to control. The total nitrogen content increased upon biochar addition in CL soil than in SD soil. We found a positive effect of biochar on water availability, microporosity, and a small effect on water retention, especially for CL soil at high biochar application, but this influence did not occur for SD, possibly due to the short time of interaction.
机译:生物炭应用改善了土壤性质,有助于作物生长。本研究评估了热带条件下沙质(SD)和粘土壤土(CL)土壤中土壤物理,化学和液压特性对土壤物理,化学和液压特性的影响。在具有八种处理的实验室条件下安装孵育实验(对照,两种土壤,SD和Cl,以及三种生物炭剂剂量(6.25,12.5和25 mg HA&ma− 1)。分析土壤水保留,散装密度(BD ),一年后,总孔隙率(TP),孔径,总碳总碳(TC)和N均进行。BD略微下降0.035%和0.062mg m&减去; 3和Tp在Cl和SD土壤中增加1.87和2.31%分别在6.25至25 mg Ha&ma&减去; 1生物炭施用。与对照相比,Tc在Cl和Sd中增加了6.5和4.2千克kg&min; 1。与对照相比,分别增加了总氮含量。我们发现生物炭对水可用性,微孔和对水保留的小效果的积极影响,特别是对于高生物炭施用的Cl土壤,但由于相互作用的短时间,SD可能不会发生这种影响。

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