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Effect of Corn Residue Biochar on the Hydraulic Properties of Sandy Loam Soil

机译:玉米残渣生物炭对砂壤土水力学特性的影响

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Biochar has an ability to alter the biological, chemical, and physical properties of soil due to its physicochemical properties such as surface area, porosity, nutrient retention ability, available nutrient contents, aromaticity, etc. The present study was designed to evaluate the impact of physical properties and application rate of biochar on the hydraulic properties of a sandy loam soil in the short term. Biochar was produced at 500 °C from dried corn residue (BC500). The BC500 was incorporated at the rates of 0, 2.5%, 5.0%, 7.5%, and 10% (w·w ?1 ) into the sandy loam soil and filled up to a height of 4 cm, in cores having 5 cm diameter and height. Each treatment was performed in triplicate and equilibrated for 30 days. Then saturated hydraulic conductivity (K sat ), water holding capacity (WHC), and bulk density were determined in each sample after four days of saturation at room temperature in a water bath. The BC500 particle size distribution, pores, and surface functional groups were assessed. The K sat exhibited a highly significant exponential reduction from 0% to 7.5% of BC500 application and approached an asymptote at 10% BC500. Bulk density showed a significant negative correlation to biochar application rate. The WHC and BC500 application rate illustrated a strong positive relationship. Biochar surface was free from hydrophobic functional groups. The addition of BC500 has a positive influence on soil hydraulic properties, primarily due to the increased soil porosity. The BC500 is composed of a microporous structure and hydrophilic surface that retain water in sandy textured soils. The application of BC500 would be a wise investment to maximize the water use efficiency in soils for agricultural production.
机译:由于其物理化学性质,例如表面积,孔隙率,养分保留能力,有效养分含量,芳香性等,生物炭具有改变土壤的生物学,化学和物理性质的能力。本研究旨在评估土壤的影响。生物炭的物理性质和施用率对砂壤土短期内水力性质的影响生物炭是在500°C下由干燥的玉米残渣(BC500)制成的。 BC500以0、2.5%,5.0%,7.5%和10%(w·w?1)的比率掺入到砂壤土中,并填充到直径为5 cm的岩心中,高度达到4 cm。和高度。每种处理重复三次,并平衡30天。然后在室温下在水浴中饱和四天后,确定每个样品的饱和水力传导率(K sat),持水量(WHC)和堆积密度。评估了BC500的粒径分布,孔和表面官能团。 K sat表现出非常显着的指数下降,从BC500施用量的0%降至7.5%,在BC500接近10%时接近渐近线。堆积密度显示与生物炭施用率显着负相关。 WHC和BC500的施用率显示出强烈的正相关关系。生物炭表面不含疏水性官能团。 BC500的添加对土壤水硬性有积极影响,这主要是由于土壤孔隙率增加。 BC500由微孔结构和亲水性表面组成,可在沙质土壤中保持水分。 BC500的应用将是一项明智的投资,以最大限度地提高农业生产土壤中的水分利用效率。

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