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Physical properties and ion permeability of crosslinking hydrogel membrane based on poly(vinyl alcohol) for soilless cultivation

机译:基于聚乙烯醇的交联水凝胶膜的物理性质和离子渗透性

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摘要

Crosslinking hydrogel membranes were prepared by esterification reaction with different ratios of poly(vinyl alcohol) (PVA) and poly(acrylic acid) (PAA). The purpose of the study was to research the effect of the crosslinking agent PAA on the hydrogel properties of the membranes used for soilless cultivation. Increasing of PAA ratio resulted in a significant increase in the crosslinking density (rho(x)) and a decrease in the average molecular weight of the polymer chain between the crosslinks (M over bar c$$ {overline{M}}_c $$) and the mesh size (xi) of the hydrogel membranes. In addition, the ion permeability coefficient decreased when the PAA ratio increased. Increasing the PAA ratio significantly affected water uptake value, tensile strength, and elongation of the hydrogel membranes. A PVA:PAA ratio of 9:1 was suitable for plant cultivation. The cultivated plants germinated well and generated many small fine roots on the upper surface of the hydrogel membrane. These small fine roots adhered well to the hydrogel membrane to absorb the water and feed nutrient ions. This finding showed that the hydrogel membranes have the potential of being used for soilless cultivation in controlled experimental conditions.
机译:采用不同比例的聚乙烯醇(PVA)和聚丙烯酸(PAA)酯化反应制备交联水凝胶膜。本研究的目的是研究交联剂PAA对无土栽培膜水凝胶性能的影响。PAA比值的增加导致交联密度(rho(x))显著增加,交联(M over bar c$$ {overline{M}}_c $$)与水凝胶膜的网孔尺寸(习)之间的聚合物链平均分子量降低。此外,随着PAA比的增加,离子渗透系数减小。增加PAA比显著影响了水凝胶膜的吸水值、拉伸强度和伸长率。PVA:PAA比例为9:1,适用于植物栽培。栽培的植物萌发良好,在水凝胶膜的上表面产生了许多细小的根。这些细小的根很好地粘附在水凝胶膜上,以吸收水分并喂养营养离子。这一发现表明,水凝胶膜具有在受控实验条件下用于无土栽培的潜力。

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