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首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Effects of straw size in buried straw layers on water movement in adjacent soil layers
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Effects of straw size in buried straw layers on water movement in adjacent soil layers

机译:秸秆埋藏方式对邻近土壤层水分运移的影响

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Deeply buried straw retention can improve the soil content of organic matter, its capacity for moisture preservation, the agroecological environment utilization efficiency of water resources, ensuring a stable crop yield; at the same time, the quantitative effects of deeply buried straw retention on soil moisture have a direct influence on the promotion and application of the technology. Using an infiltration and evaporation experiment of a one-dimensional soil column, the effects of straw size on the water content of the straw and the adjacent soil were evaluated when the straw was deeply buried in soil; the infiltration and evaporation features of different sized straw and its adjacent soil were analyzed; the hydraulic conductivity, sorptivity and saturated water content of the straw were obtained; in the end, the water distribution laws of straw and adjacent soil under the same conditions were concluded. The experiment was comprised of rod-shaped straw (RS), segment-shaped straw (SS) and filament-shaped straw (FS) to control treatment (CK). The results indicated that from the perspective of infiltration, the infiltration rate of filament-shape straw was the lowest at the stage of straw unsaturation. The hydraulic conductivities of rod-shaped, filament-shaped and segment-shaped straws are 4.01 mm/min, 1.33 mm/min and 0.03 mm/min at the stage of straw and adjacent soil saturation, respectively. There is a strong effect on preventing infiltration from segment-shaped straw; with the help of the Philip model of long duration, the sorptivity of the soil with rod-shaped, filament-shaped and segment-shaped straws was 12.31 mm/min0.5, 11.02 mm/min0.5 and 24.26 mm/min0.5 at the unsaturation stage, respectively. The segment-shape straw improved the water absorption capacity of the soil and straw column. The water retention capacities indicated that the saturated water contents of sandy loam, filament-shaped straw, segment-shaped straw and rod-shaped straw were 0.38 cm3/cm3, 0.29 cm3/cm3, 0.26 cm3/cm3 and 0.13 cm3/cm3, respectively. Additionally, the evaporation rate indicated that the soil moisture content of soil below different straw layers retained approximately 30%; that the more crushed the straw was, the more moisture the straw layer lost; and that the cumulative evaporation of rod-shaped straw, filament-shaped straw and segment-shaped straw within 120 days was 1.5 mm, 13.5 mm and 25.5 mm, respectively. Keywords: deeply buried straw, straw size, soil moisture, infiltration, evaporation, water retention DOI: 10.3965/j.ijabe.20160902.2068 Citation: Yao M Z, Li B, Wang T L, Feng X. Effects of straw size in buried straw layers on water movement in adjacent soil layers. Int J Agric & Biol Eng, 2016; 9(2): 74-84.
机译:秸秆深埋留存可以提高土壤有机质含量,保持水分的能力,提高农业生态环境对水资源的利用效率,保证作物稳定产量;同时,深埋秸秆保留对土壤水分的定量影响直接影响了该技术的推广和应用。利用一维土壤柱的渗透和蒸发实验,研究了秸秆尺寸对秸秆深埋在土壤中时对秸秆及附近土壤水分的影响。分析了不同大小秸秆及其邻近土壤的入渗和蒸发特征;得到了秸秆的水力传导率,吸水率和饱和水含量。最后,得出了相同条件下秸秆及邻近土壤的水分分布规律。该实验由杆状吸管(RS),节段形吸管(SS)和长丝形吸管(FS)组成,以控制处理(CK)。结果表明,从浸润角度看,丝状秸秆的浸润速率在秸秆不饱和阶段最低。杆状,长丝状和段状秸秆在秸秆和邻近土壤饱和阶段的水力传导率分别为4.01 mm / min,1.33 mm / min和0.03 mm / min。防止从段形秸秆渗入有很强的作用;借助长期的Philip模型,杆状,细丝状和段状秸秆对土壤的吸附度分别为12.31 mm / min0.5、11.02 mm / min0.5和24.26 mm / min0.5在不饱和阶段段状秸秆提高了土壤和秸秆柱的吸水能力。保水能力表明,沙壤土,丝状秸秆,段状秸秆和杆状秸秆的饱和含水量分别为0.38 cm3 / cm3、0.29 cm3 / cm3、0.26 cm3 / cm3和0.13 cm3 / cm3。 。另外,蒸发速率表明不同秸秆层以下土壤的土壤水分含量保持约30%。秸秆破碎得越多,秸秆层损失的水分就越多;杆状秸秆,长丝状秸秆和节段状秸秆在120天内的累积蒸发分别为1.5mm,13.5mm和25.5mm。关键词:深埋秸秆,秸秆大小,土壤水分,入渗,蒸发,保水DOI:10.3965 / j.ijabe.20160902.2068引用:姚明志,李波,王丽丽,冯新。相邻土壤层中的水分运动。国际农业与生物工程杂志,2016; 9(2):74-84。

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