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Assessing potential of biochar for increasing water-holding capacity of sandy soils

机译:评估生物炭的潜力,增加砂土水持有量

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Increasing the water-holding capacity of sandy soils will help improve efficiency of water use in agricultural production, and may be critical for providing enough energy and food for an increasing global population. We hypothesized that addition of biochar will increase the water-holding capacity of a sandy loam soil, and that the depth of biochar incorporation will influence the rate of biochar surface oxidation in the amended soils. Hardwood fast pyrolysis biochar was mixed with soil (0%, 3%, and 6% w/w) and placed into columns in either the bottom 11.4 cm or the top 11.4 cm to simulate deep banding in rows (DBR) and uniform topsoil mixing (UTM) applications, respectively. Four sets of 18 columns were incubated at 30 °C and 80% RH. Every 7 days, 150 mL of 0.001 M calcium chloride solution was added to the columns to produce leaching. Sets of columns were harvested after 1, 15, 29, and 91 days. Addition of biochar increased the gravity-drained water content 23% relative to the control. Bulk density of the control soils increased with incubation time (from 1.41 to 1.45 g cmSUP?3/SUP), whereas bulk density of biochar-treated soils was up to 9% less than the control and remained constant throughout the incubation period. Biochar did not affect the CEC of the soil. The results suggest that biochar added to sandy loam soil increases water-holding capacity and might increase water available for crop use.
机译:增加砂土水土的水持能力将有助于提高农业生产中的用水效率,对为增加全球人口提供足够的能量和食物可能是至关重要的。我们假设添加生物炭将增加砂土土壤的水控能力,并且生物炭掺入的深度将影响修复的土壤中的生物炭表面氧化速率。硬木快速热解生物炭与土壤(0%,3%和6%w / w)混合,并置于底部11.4cm或顶部11.4cm的柱中,以模拟行(DBR)和均匀的表土混合(UTM)应用程序分别。在30℃和80%RH下培养四组18个柱。每7天,将150ml 0.001米氯化钙溶液加入到柱中以产生浸出。在1,15,29和91天后收获一组柱。添加生物炭相对于对照增加重力排出的水含量23%。对照土壤的堆积密度随温育时间(从1.41至1.45g cm 3 )增加,而生物炭处理的土壤的堆积密度高达9%,而且整个潜伏期。生物炭没有影响土壤的CEC。结果表明,添加到桑迪壤土土壤中的生物炭增加了水持续能力,可能会增加可用于作物使用的水。

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