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首页> 外文期刊>Journal of Applied Polymer Science >Swelling study of superabsorbent PAA-co-PAM/clay nanohydrogel
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Swelling study of superabsorbent PAA-co-PAM/clay nanohydrogel

机译:高吸收性PAA-co-PAM /粘土纳米水凝胶的溶胀研究

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A series of superabsorbent composites were prepared from acrylic acid (AA), acrylamide (AM), and Cloisite? 30B by aqueous solution polymerization technique using ammonium peroxodisulfate (APS) as initiator. The interaction of the organically modified nanoclay with PAA-co-PAM copolymer was verified by FTIR, whereas the morphology of the composite was studied by Scanning Electron Microscopy (SEM). The water absorbency in deionized water and saline water of the synthesized nanohydrogels was measured by calculating their percentage swelling ratio. The effects of copolymerization, monomer ratio, clay content, and temperature on the water absorbency were studied. The results indicated a considerable increase in swelling ratio by proper monomer proportion and incorporation of optimum clay percentage into the copolymer matrix. It was found that the nanohydrogel acquired highest water absorbency with 2% clay loading. The reswelling ability and water retention capacity of the PAA-co-PAM hydrogel and PAA-co-PAM/clay nanohydrogel were also measured. The water absorbency was found to increase after each reswelling for which it may be useful as recyclable superabsorbent material. The results of water retention capacity of the nanohydrogel were also encouraging and find application in agriculture, especially in drought-prone areas.
机译:由丙烯酸(AA),丙烯酰胺(AM)和Cloisite?制备了一系列超吸收性复合材料。 30B通过水溶液聚合技术使用过二硫酸铵(APS)作为引发剂。 FTIR验证了有机改性纳米粘土与PAA-co-PAM共聚物的相互作用,而复合材料的形貌则通过扫描电子显微镜(SEM)进行了研究。通过计算它们的溶胀率百分比来测量合成的纳米水凝胶在去离子水和盐水中的吸水率。研究了共聚,单体比,粘土含量和温度对吸水率的影响。结果表明,通过适当的单体比例和在共聚物基质中掺入最佳的粘土百分比,溶胀率显着提高。发现纳米水凝胶在2%的粘土负载下获得最高的吸水率。还测量了PAA-co-PAM水凝胶和PAA-co-PAM /粘土纳米水凝胶的复溶能力和保水能力。发现吸水率在每次再膨胀之后增加,对于吸水率而言,其可以用作可回收的超吸收材料。纳米水凝胶的保水能力的结果也令人鼓舞,并已在农业中应用,特别是在干旱多发地区。

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