Kim Jung Soo, Kim Dong Hyun, Lee Youn Suk
Department of Packaging, Yonsei University, Wonju 26493, Korea.
Human Convergence Technology R&D Departments, Korea Institute of Industrial Technology (KITECH), Ansan 15588, Korea.
Polymers (Basel). 2021 Feb 23;13(4):663. doi: 10.3390/polym13040663.
In this study, a superabsorbent polymer (SAP) comprising poly (IA-co-cellulose-co-VSA-co-AA; ICVA) core-SAP (CSAP) was synthesized through radical polymerization using itaconic acid (IA), acrylic acid (AA), cellulose, and vinyl sulfonic acid (VSA) as monomers. The absorption performances and relative biodegradability of various compositions prepared by adjusting the amounts of cellulose and VSA with constant IA and AA content were compared. Increasing the cellulose content in CSAP contributed to improved biodegradation of the surface-crosslinked SAP (SSAP) and gel strength, although the free absorbency (FA) and centrifuge retention capacity (CRC) decreased. Increasing the VSA content resulted in strong anionicity, which enables the absorption of large amounts of water. Surface-crosslinking technology was applied to the CSAP synthesized with the optimal composition ratio to increase its absorption performance and gel strength. Improved performance of the synthesized SSAP (a CRC of 30.4 g/g, absorbency under load (AUL) of 23.3 g/g, and permeability of 55 s) was achieved by selecting the optimal surface-crosslinking treatment time and the amount of distilled water in the surface-crosslinking solution: as the latter was increased in the surface-crosslinking solution, the AUL and permeability of the SSAP were improved, and its biodegradability was found to be 54% compared to the 100% biodegradable cellulose hydrogel in the control group.
在本研究中,以衣康酸(IA)、丙烯酸(AA)、纤维素和乙烯基磺酸(VSA)为单体,通过自由基聚合反应合成了一种包含聚(IA-共-纤维素-共-VSA-共-AA;ICVA)核-高吸水性聚合物(CSAP)的高吸水性聚合物(SAP)。比较了在IA和AA含量恒定的情况下,通过调整纤维素和VSA的用量制备的各种组合物的吸收性能和相对生物降解性。增加CSAP中的纤维素含量有助于提高表面交联高吸水性聚合物(SSAP)的生物降解性和凝胶强度,尽管其自由吸水率(FA)和离心保留率(CRC)有所下降。增加VSA含量会导致强阴离子性,从而使其能够吸收大量水分。将表面交联技术应用于以最佳组成比合成的CSAP,以提高其吸收性能和凝胶强度。通过选择最佳的表面交联处理时间和表面交联溶液中的蒸馏水用量,合成的SSAP性能得到改善(CRC为30.4 g/g,负载下吸水率(AUL)为23.3 g/g,渗透率为55 s):随着表面交联溶液中蒸馏水用量的增加,SSAP的AUL和渗透率得到提高,并且发现其生物降解性为54%,而对照组中100%可生物降解的纤维素水凝胶的生物降解性为100%。