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模型建立与研究:羧甲基纤维素钠/淀粉/柠檬酸高吸水性聚合物溶胀动力学。

Modeling and investigation of swelling kinetics of sodium carboxymethyl cellulose/starch/citric acid superabsorbent polymer.

机构信息

Department of Fashion Design, Dong-A University, Busan 49315, Republic of Korea.

Department of Chemical Engineering, Dong-A University, Busan 49315, Republic of Korea.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 4):127013. doi: 10.1016/j.ijbiomac.2023.127013. Epub 2023 Sep 19.

Abstract

Crosslinked hydrophilic polymers with high water absorption rates are known as superabsorbent polymers (SAPs). Most commercial superabsorbent polymers are made with acrylic acid, which is difficult to biodegrade. So, in this investigation, carboxymethyl cellulose (CMC) was utilized as a significant component in the synthesis of polysaccharide-based SAPs. Citric acid (CA) and starch were chosen as crosslinking agents because they are more eco-friendly, non-toxic, and biodegradable than traditional crosslinking agents. FTIR analysis revealed that the superabsorbent polymer product contains a crosslinked structure of CMC and starch with side chains that carry carboxylate functional groups. Superabsorbent weight loss and grafting data were satisfactorily studied using the TGA approach. Under optimum circumstances, the SAP2 water absorbency capacity in distilled water was 287.37 g.g and SAP1 absorbency capacity in a solution containing 0.9 wt% NaCl was 52.18 g.g. Moreover, Schott's pseudo-second-order model was used to determine the kinetic swelling of the superabsorbent. The initial swelling rate of SAPs can be calculated using the Q data acquired in the following order: SAP2 > SAP1 > SAP3 > SAP4 in distilled water and SAP1 > SAP2 > SAP3 > SAP4 in 0.9 wt% NaCl solution, respectively. The findings suggested that a small amount of citric acid introduced into the SAPs matrix could enhance the swelling rate of SAPs. The results of the cytotoxicity tests show that the extraction liquid of composite hydrogel fibers is less cytotoxic than the positive control. As well, SAP underwent in silico docking investigations on the DNA Gyrase enzyme. As the ligand is a monomer of SAP, it was a long chain of carbohydrate molecules with alcoholic groups, esters groups, and keto groups forms a strong binding interaction with DNA gyrase.

摘要

具有高吸水性的交联亲水性聚合物通常被称为高吸水性聚合物 (SAP)。大多数商业 SAP 都是用丙烯酸制成的,而丙烯酸很难生物降解。因此,在这项研究中,羧甲基纤维素 (CMC) 被用作合成多糖基 SAP 的重要成分。柠檬酸 (CA) 和淀粉被选为交联剂,因为它们比传统交联剂更环保、无毒且可生物降解。FTIR 分析表明,高吸水性聚合物产品含有 CMC 和淀粉的交联结构,侧链带有羧酸官能团。使用 TGA 方法对超吸水性聚合物的失重和接枝数据进行了满意的研究。在最佳条件下,SAP2 在蒸馏水中的吸水率为 287.37 g.g,SAP1 在含有 0.9 wt% NaCl 的溶液中的吸水率为 52.18 g.g。此外,Schott 拟二级动力学模型用于确定高吸水性聚合物的动力学溶胀。可以使用 Q 数据计算 SAPs 的初始溶胀率,按照以下顺序:在蒸馏水中,SAP2 > SAP1 > SAP3 > SAP4,而在 0.9 wt% NaCl 溶液中,SAP1 > SAP2 > SAP3 > SAP4。结果表明,少量柠檬酸引入 SAPs 基质中可以提高 SAPs 的溶胀率。细胞毒性试验结果表明,复合水凝胶纤维的提取液比阳性对照的细胞毒性更小。此外,SAP 还对 DNA 拓扑异构酶进行了计算机对接研究。由于配体是 SAP 的单体,它是长链碳水化合物分子,具有醇基、酯基和酮基,与 DNA 拓扑异构酶形成强结合相互作用。

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