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The Potential of super absorbent polymers from diaper wastes to enhance water retention properties of the soil

机译:尿布废弃物的超吸收性聚合物的潜力增强土壤的水保留特性

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The management of disposable diapers is a major problem. Moreover, light-textured soils are characterized by low water holding capacity and excessive drainage, thus significant portion of irrigation water is lost below the root zone. A laboratory study was conducted to evaluate the potential of recycling disposable baby diapers to conserve soil moisture in light-textures soils. The water absorbency [water absorption capacity (WAC) and water absorption rate (WAR)] of the recovered Super absorbent polymers (SAPs), from diapers, was evaluated and described under different ionic solute strengths (0.0, 0.5, 1.0, 2.0, 3.0 and 4.0 dS m-1 ) at different time periods. Additionally, several swelling measurements of the SAPs were determined when added to sandy clay loam soil using different levels [0.0, 0.4, 0.6, 0.8 and 1.6% (w/w)] for five rewetting cycles (over a period of 6 months). As the swelling time increased, the WAC increased, while WAR decreased. However, both WAC and WAR were reduced as the solution salinity increased. The recovered SAPs exhibited WAC of 311.0 and 111.0 g g-1 in solution of 0.0 and 3.0 dS m-1 , respectively. Polynomials functions were used to calculate the equilibrium time and threshold solute concentration for the SAPs. The average equilibrium time was 4.5 minutes and the threshold solute concentration was 2.78 dS m-1 . At SAPs concentration of 1.6%, the water retained by the soil increased by 2.6 folds. The specific amount of water retained (SWR) by SAPs in the SAPs-soil mixture was decreased with repeating wetting, thus, after 6 months, the average WHC of the soil was decreased by 14% compared to initial wetting. The recycling of baby diapers might have a great potential to conserve soil moisture in light soils using water of good quality. However, since the SAPs in diapers are Na based, further research is needed to explorer the impact of such treatment on soil chemical properties.
机译:一次性尿布的管理是一个重大问题。此外,光质地的土壤的特征在于低的水保持能力和过度排水,灌溉水从而显著部分丢失根区的下方。一个实验室进行研究,以评估回收一次性婴儿尿布保持土壤湿度在光纹理土壤的潜力。吸水率[吸水能力(WAC)和水吸收率(WAR)]的回收高吸水性聚合物(SAP),从尿布,进行了评价,并在不同的离子溶质强度(0.0,0.5,1.0,2.0中所述,3.0和4.0的DS,不同的时间段M-1)。另外,当添加到使用不同水平的沙质粘土壤土测定SAP的几个测量溶胀[0.0,0.4,0.6,0.8和1.6%(重量/重量)]为5个再润湿周期(在为期6个月)。作为溶胀时间增加,WAC增加,而WAR降低。然而,这两种WAC和WAR作为溶液的盐度增加减少。将回收的SAP呈现WAC的311.0和111.0克G-1中的0.0和3.0 DS解决方案分别M-1,。多项式函数被用于计算所述SAP的平衡时间和阈值的溶质浓度。平均平衡时间为4.5分钟,该阈值的溶质浓度为2.78德尚M-1。以1.6%的SAP浓度,水保留在由土壤增加了2.6倍。水的比保留量(SWR)通过在SAP的土壤混合物的SAP具有重复润湿,从而,6个月后,土壤的平均WHC下降14%相比,初始润湿下降。婴儿纸尿裤的回收可能在使用质量好的水轻的土壤很大的潜力,保持土壤湿度。然而,由于在尿布的SAP是基于娜,还需要进一步研究,以探险家这样的处理对土壤化学性质的影响。

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