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New routes to prepare superabsorbent polymers free of acrylate cross-linker

机译:制备不含丙烯酸酯交联剂的超吸收性聚合物的新途径

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摘要

In this study, new series of superabsorbent polymers, which were free of acrylate cross-linkers, were synthesized and their absorbent properties were evaluated. The new superabsorbent polymers showed high free swell and absorbency under loading. They were synthesized in a single-step process through a solution polymerization of partially neutralized acrylic acid in the presence of cross-linking agents allyl sucrose (AS) and epoxy allyl sucrose(EAS). Allyl sucrose was synthesized by reacting sucrose with allyl chloride in an alkaline medium. Allyl sucrose was then converted into EAS by oxidation with peracetic acid. The synthesis and absorbent properties of superabsorbent polymers (SAPs) cross-linked with commercially available non-sucrose-based epoxy cross-linking agents, e.g., glycerol diglycidyl ethers (GDGE), 1,4-butanediol diglycidyl ether (1,4-BDGE) and 1,4-cyclohexanedimethanol diglycidyl ether (1,4-CHDDMDGE) have been evaluated, as well. Absorbent properties of the prepared superabsorbent polymers were evaluated in saline solution and results showed high dependency of the absorbent properties on the cross-linking agent polarity and concentration. Superabsorbent polymers cross-linked with EAS and GDGE showed the highest absorbency under loading and indicated that they formed gels with high strength in the aqueous solution. Absorbent properties of the prepared SAPs showed reversible correlation with cross-linking agent concentration. The pH of the reaction mixture was optimized to achieve the highest free swell and absorbency under loading. The biodegradation properties of the superabsorbent polymers cross-linked with sucrose-based cross-linking agents were also evaluated and they showed degradation behavior under the influence of organisms Pseudomonas aeruginosa and Trichophyton rubrum.
机译:在这项研究中,合成了不含丙烯酸酯交联剂的新系列高吸收性聚合物,并对其吸收性能进行了评估。新的超吸收性聚合物在负载下显示出高的自由溶胀和吸收性。它们是在交联剂烯丙基蔗糖(AS)和环氧烯丙基蔗糖(EAS)存在的情况下,通过部分中和的丙烯酸的溶液聚合,以一步法合成的。通过使蔗糖与烯丙基氯在碱性介质中反应来合成烯丙基蔗糖。然后通过用过乙酸氧化将烯丙基蔗糖转化为EAS。与市售的非蔗糖基环氧交联剂交联的超吸收性聚合物(SAPs)的合成和吸收性能,例如甘油二缩水甘油醚(GDGE),1,4-丁二醇二缩水甘油醚(1,4-BDGE )和1,4-环己烷二甲醇二缩水甘油醚(1,4-CHDDMDGE)也已进行了评估。在盐溶液中评估了所制备的超吸收性聚合物的吸收性能,结果表明吸收性能高度依赖于交联剂的极性和浓度。与EAS和GDGE交联的超吸收性聚合物在负载下显示出最高的吸收性,表明它们在水溶液中形成了具有高强度的凝胶。制备的SAP的吸收性能显示出与交联剂浓度的可逆相关性。优化反应混合物的pH以在负载下获得最高的自由溶胀和吸收性。还评估了用基于蔗糖的交联剂交联的高吸收性聚合物的生物降解性能,并在铜绿假单胞菌和毛癣菌的影响下显示出降解行为。

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