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Absorption of Water Vapor Using Superabsorbent Polymer Composite Material

机译:超吸收性聚合物复合材料吸收水蒸气

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The ability of superabsorbent polymers (SAP) to absorb water vapor was studied. A multilayer composite material was prepared where SAP particles were spread in the fluffy fibrous layer located in the middle of the composite structure. Distribution of SAP within the composite material permits air to pass through its porous structure effectively hence allowing efficient contact of air with SAP. SAP was able to decrease the relative humidity of air of a 3-L cabinet from 96% relative humidity (RH) to 52% and 49 % (RH) in 18 hours using 2 g and 4 g of SAP respectively. Study on the water vapor absorption ability of SAP placed together with pure water in a closed cabinet was conducted with and without convective air transport effect. Convective air transport was done by activating the 12 V fan allowing air recirculation speed at rates corresponding to constant voltage settings of 6 V and 12 V. Higher SAP water vapor absorption rate was obtained at higher air recirculation speed. SAP particles swelled after water vapor absorption with slight decrease in the porosity of composite material as observed through the digital microscope.
机译:研究了超吸收聚合物(SAP)吸收水蒸气的能力。制备多层复合材料,其中SAP颗粒在位于复合结构中间的蓬松的纤维层中涂布。复合材料内的SAP的分布允许空气通过其多孔结构,从而有效地允许空气与SAP有效接触。 SAP能够在18小时内使用2g和4g SAP将3-L机柜的相对湿度从96%的相对湿度(RH)降至52%和49%(RH)。在封闭式柜中与纯水放置在封闭式柜中的SAP水蒸气吸收能力的研究进行了,但没有对流空气运输效果。通过激活12V风扇来完成对对应的12V风扇,允许对应于6V和12V的恒定电压设置的速率下的空气再循环速度来完成。在较高的空气再循环速度下获得较高的SAP水蒸气吸收率。在通过数字显微镜观察到的复合材料孔隙率随着复合材料的孔隙率略微降低后,SAP颗粒膨胀。

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