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Synthesis of Superabsorbent Polymer via Inverse SuspensionudMethod: Effect of Carbon Filler

机译:逆悬浮法合成高吸收性聚合物 ud方法:碳填料的作用

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摘要

This paper studies on the effect of the addition of carbon filler towards the performance of superabsorbent polymer composite (SAPc). In this work, the SAPc was synthesized using inverse suspension polymerization method. The process involved two different solutions; dispersed phase which contains partially neutralized acrylic acid, acrylamide, APS and NN-Methylenebisacrylamide, and continuous phase which contains cyclohexane, span-80 and carbon filler (at different weight percent). The optimum SAPs and filler ratio was measured in terms of water retention in soil and characterized by Mastersizer, FTIR and SEM. Biodegradability of the polymer was determined by soil burial test and SAPc with 0.02% carbon has highest biodegradability rate. SAPc with 0.04wt% carbon showed the optimal water retention percentage among all the samples. The synthesized SAPc producing spherical shapes with parallel alignment due to the addition of carbon fiber. It can be concluded that the addition of carbon fiber able to enhance the performance of the SAP composite (SAPc).
机译:本文研究了添加碳填料对超吸收性聚合物复合材料(SAPc)性能的影响。在这项工作中,SAPc是使用反相悬浮聚合法合成的。该过程涉及两种不同的解决方案。分散相包含部分中和的丙烯酸,丙烯酰胺,APS和NN-亚甲基双丙烯酰胺,连续相包含环己烷,span-80和碳填料(不同重量百分比)。根据土壤中的保水性测量最佳SAPs和填料比,并用Mastersizer,FTIR和SEM表征。聚合物的可生物降解性通过土壤掩埋测试确定,具有0.02%碳的SAPc具有最高的生物降解率。碳含量为0.04wt%的SAPc在所有样品中显示出最佳的保水率。由于添加了碳纤维,合成的SAPc产生具有平行排列的球形。可以得出结论,添加碳纤维能够增强SAP复合材料(SAPc)的性能。

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