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Effect of bentonite amendment on soil hydraulic parameters and millet crop performance in a semi-arid region

机译:膨润土修正对半干旱地区土壤液压参数和小米作物性能的影响

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摘要

We evaluated the effect of bentonite soil amendments on soil moisture, soil water storage, soil saturated hydraulic conductivity, water use efficiency and yield of millet in a field experiment in a sandy loam soil in a semiarid region in northern China from 2011 to 2015. Treatments included six rates of bentonite amendments (0, 6, 12, 18, 24 and 30 Mg/ha) applied only in the first year. Adding bentonite amendments increased soil moisture, soil water storage and saturated hydraulic conductivity in the 0-60 cm layer. All bentonite amendments significantly (P 0.05) increased above-ground biomass and grain yield, and improved water use efficiency in all five years. Above-ground biomass increases ranged from 2% to 39%, grain yield increases ranged from 3% to 20%, and water use efficiency increases ranged from 0% to 29%. The treatment with 24 Mg/ha bentonite had the greatest effect averaged over five years; the maximum bentonite rate treatment with 30 Mg/ha showed the greatest effect in the fifth year of the experiment. The treatment with 18 Mg/ha had the highest economic return over five years. Bentonite amendments show promise for improving soil water-holding capacity and crop yield in a semi-arid region, and therefore deserve further study.
机译:2011年至2011年至2015年,我们评估了膨胀岩土壤修正对土壤水分,土壤蓄水,土壤饱和液压导电性,水利用效率和小米的田间试验中的影响。治疗包括在第一年应用的六碳酸盐修正案(0,6,12,18,24和30毫克/公顷)的六个税率。添加膨润土修正案在0-60cm层中增加土壤水分,土壤储水和饱和液压导率。所有膨润土均明显(P <0.05)增加了地上的生物质和籽粒产量,并在整个五年内提高了水利用效率。地上生物质的增加范围为2%至39%,籽粒产量增加范围为3%至20%,水使用效率的增加范围为0%至29%。用24毫克/公顷膨润土的治疗效果最大,效果平均五年; 30毫克/公顷的最大膨润土率处理显示了实验五年级的最大效果。 18毫克/哈的治疗有五年后的经济赔率最高。 Bentonite修正案表明,在半干旱地区改善土壤水持续能力和作物产量的承诺,因此应得进一步研究。

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