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Water retention, hydraulic conductivity of hydrophilic polymers in sandy soil as affected by temperature and water quality

机译:温度和水质对沙质土壤亲水性聚合物的保水率,水力传导率的影响

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摘要

Hydrophilic polymers can swell by absorbing huge volumes of water or aqueous solutions. This property has led to many practical applications of these new materials, particularly in and regions for improving water retention in sandy soils and the water supply to plants grown on them. The effects of two hydrophilic polymers, carboxymethylcellulose (RF) and isopropyl acrylamide (BF) on the water holding capacity and saturated hydraulic conductivity (Ks) of a sandy soil at varying soil temperature and water quality were evaluated. The RF was less efficient in absorbing water than BF, but the efficiency of BF in retaining water was negatively affected by its thermo-sensitivity and the quality of water. The temperature dependence of the water absorption was not clear for the soils treated with RF, whereas, the efficiency of BF treatment in absorbing water decreased significantly (P < 0.05) with increasing soil temperature. The dependence of the Ks on soil temperature differed with the type of hydrophilic polymer used. The Ks of the control soil remained nearly constant as the soil temperature increased. The Ks of the BF treated soil increased significantly (P < 0.05) and linearly with increasing soil temperature, while that of soil treated with RF showed a quadratic response. The soil-absorbent mixtures exhibited different water retention characteristics under different soil temperature conditions. The increase in soil temperature did not affect the water retention characteristics curve of the control. The effect of soil temperature on the water potential curve of the soil treated with RF was not clear particularly when the temperature increased from 25 to 35 degrees C. The water potential curve for soil-BF mixtures showed that the water content value at field capacity shifted from 0.21 to 0.10 cm(3) cm(-3) for 0.1% and from 0.27 to 0.12 cm(3) cm(-3) for 0.2%, as the soil temperature increased from 15 to 35 degrees C. This implies that the soil-BF absorbent mixtures would release some moisture as the soil temperature would increase from 15 to 35 degrees C, and this water could be lost by percolation or taken up by plant. It was found that available water content increased up to four times with RF as compared to control soil whereas it increased up to five times with BF treatment. At high temperature, the difference was much reduced except for RF at 0.2%. This understanding of the characteristics of the absorbents and the interactions among absorbents, soil, and temperature would be of help in water management in sandy soil.
机译:亲水性聚合物可通过吸收大量的水或水溶液而膨胀。这种特性导致了这些新材料的许多实际应用,特别是在改善砂质土壤中的水分保持性以及向其上生长的植物供水的区域中。评估了两种亲水性聚合物,羧甲基纤维素(RF)和异丙基丙烯酰胺(BF)对沙质土壤在不同土壤温度和水质下的持水能力和饱和水导率(Ks)的影响。 RF吸收水的效率不如BF,但是BF的保水效率受到其热敏性和水质的负面影响。 RF处理的土壤对吸水率的温度依赖性尚不明确,而BF处理的吸水效率随土壤温度升高而显着降低(P <0.05)。 Ks对土壤温度的依赖性随所用亲水性聚合物的类型而异。随着土壤温度的升高,对照土壤的Ks几乎保持恒定。高炉处理过的土壤的Ks显着增加(P <0.05),并且随着土壤温度的升高呈线性增长,而RF处理过的土壤的Ks显示出二次响应。吸收土壤的混合物在不同的土壤温度条件下表现出不同的保水特性。土壤温度的升高不影响对照的保水特性曲线。土壤温度对经过RF处理的土壤水势曲线的影响尚不清楚,尤其是当温度从25摄氏度升高至35摄氏度时。土壤-高炉混合物的水势曲线表明,田间持水量的水含量值发生了变化当土壤温度从15摄氏度增加到35摄氏度时,从0.21到0.10 cm(3)cm(-3)为0.1%,从0.27到0.12 cm(-3)cm(-3)为0.2%。土壤-BF吸收剂混合物会随着土壤温度从15摄氏度升高到35摄氏度而释放出一些水分,这些水分可能因渗滤而损失或被植物吸收。发现与对照土壤相比,RF的有效含水量增加了四倍,而BF处理的有效含水量增加了五倍。在高温下,除了RF为0.2%以外,差异已大大减小。对吸收剂的特性以及吸收剂,土壤和温度之间的相互作用的这种理解将有助于砂质土壤中的水分管理。

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