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Dynamic study on water diffusivity of soil with super-absorbent polymer application

机译:高吸水聚合物施加土壤水分扩散动力学研究。

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摘要

Drought is a great concern in agricultural yield. Super-absorbent polymers (SAPs) can assist in easing water shortage. Therefore, it is significantly important to study the water absorbing and desorbing capacity of SAPs when applied into soil as well as their effective time. The aim of this study was to investigate the effect of different SAP types under the same moisture condition and the effect of the same SAP type under different moisture conditions on saturated soil water content, saturated soil hydraulic conductivity and soil water diffusivity. With SAP application, saturated soil water volumetric content increased significantly, up to 0.186 cm~3 cm~(-3), while saturated hydraulic conductivity and diffusivity significantly decreased because the soil pores were blocked by SAP's swelling volume during the repeated wetting and drying cycles. After SAPs were mixed in the soil, their capacity of absorbing and desorbing water showed a downward trend with time and outside water condition. Under a relatively stable water condition, such capacity reduced more slowly. As for the soil with SAP application, successful simulation for diffusivity D(θ, T) was also applicable to other parameters of the equation of water movement, which made it possible to study the water movement under the same condition.
机译:干旱是农业产量的重大问题。高吸收性聚合物(SAP)可以帮助缓解缺水情况。因此,研究SAPs应用于土壤时的吸水和解吸能力及其有效时间非常重要。本研究的目的是研究相同水分条件下不同类型SAP的影响以及不同水分条件下相同SAP类型对饱和土壤含水量,饱和土壤导水率和土壤水分扩散率的影响。随着SAP的应用,饱和土壤水分含量显着增加,达到0.186 cm〜3 cm〜(-3),而饱和水力传导率和扩散系数显着降低,这是因为在反复的润湿和干燥循环中,土壤孔隙被SAP的溶胀体积所阻塞。 SAPs在土壤中混合后,其吸收和解吸水的能力随时间和外部水分条件呈下降趋势。在相对稳定的水条件下,这种容量下降的速度较慢。对于采用SAP的土壤,成功的扩散系数D(θ,T)模拟也适用于水运动方程的其他参数,这使得研究相同条件下的水运动成为可能。

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