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Effect of carboxymethylation conditions on the water-binding capacity of chitosan-based superabsorbents

机译:羧甲基化条件对壳聚糖基高吸收剂水结合能力的影响

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A superabsorbent polymer (SAP) from chitosan was provided via carboxymethylation of chitosan, followed by cross-linking with glutaraldehyde and freeze-drying. This work was focused on an investigation of the effects of monochloroacetic acid (MCAA), sodium hydroxide, and reaction time on preparation of carboxymethyl chitosan (CMCS). The CMCS products were characterized using FTIR spectroscopy, and their degrees of substitution (DS) were measured using conductimetry and FTIR analysis. The highest DS value was obtained when the carboxymethylation reaction was carried out using 1.75 g MCAA and 1.75 g NaOH per g of chitosan in 4 h. The water solubilities of the CMCS products at various pHs were also evaluated, and the results indicated a significant impact of the reaction parameters on the solubility of CMCS. The CMCSs with the highest DS value resulted in SAPs having the highest water-binding capacity (WBC). The WBC of the best SAP measured after 10 min exposure in distilled water, 0.9% NaCl solution, synthetic urine, and artificial blood was 104, 33, 30, and 57 g/g, respectively. The WBC of this SAP at pH 2-9 passed a maximum at pH 6.
机译:通过壳聚糖的羧甲基化提供来自壳聚糖的超吸收性聚合物(SAP),然后与戊二醛交联并冷冻干燥。这项工作的重点是研究一氯乙酸(MCAA),氢氧化钠和反应时间对羧甲基壳聚糖(CMCS)制备的影响。使用FTIR光谱对CMCS产品进行表征,并使用电导和FTIR分析测量其取代度(DS)。当使用每克壳聚糖1.75 g MCAA和1.75 g NaOH在4小时内进行羧甲基化反应时,可获得最高的DS值。还评估了CMCS产品在各种pH值下的水溶性,结果表明反应参数对CMCS的溶解度有重大影响。 DS值最高的CMCS导致SAP的水结合能力(WBC)最高。在蒸馏水,0.9%NaCl溶液,合成尿和人造血中暴露10分钟后测得的最佳SAP的WBC分别为104、33、30和57 g / g。此SAP在pH 2-9时的WBC在pH 6时达到最大值。

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