壳聚糖-果胶交联生物吸附剂复合聚电解质膜的制备

F. Silitonga
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引用次数: 1

摘要

生物聚合物是由天然聚合物制成的可生物降解、无毒、可再生的聚合物。本研究以壳聚糖和果胶为原料合成生物聚合物,并对其进行表征,制备戊二醛交联膜。壳聚糖-果胶交联戊二醛聚电复合物(PEC)和膜可作为金属和阳离子染料的生物吸附剂。首先将壳聚糖溶解于乙酸中,果胶溶解于蒸馏水中,加入戊二醛作为交联剂,在70℃下加热,合成了PEC膜壳聚糖-果胶交联戊二醛。加入1M NaOH溶液12小时后,用蒸馏水清洗,室温干燥。随后,用FTIR分光光度计、介质酸度测试和吸水率测试对膜进行了表征。用FTIR对PEC膜壳聚糖-果胶交联戊二醛进行表征,结果表明壳聚糖- nh3 +与果胶- coo -基团在1604.77 cm-1波长处发生相互作用。介质酸度试验表明,壳聚糖-果胶与戊二醛交联的PEC膜在pH为3-9时稳定,吸水率为266.67%,壳聚糖-果胶膜与30%戊二醛的比例为70:30
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Fabrication of Complex Polyelectrolyte Membrane of Chitosan-Pectin Crosslinked as Bioadsorbent
Biopolymers are polymers fabricated from natural polymers which are biodegradable, non-toxic and renewable. This research was aimed to synthesize and characterize biopolymer made from chitosan and pectin and was made to be a membrane cross-linked with glutaraldehyde and then characterized. The chitosan-pectin crosslinked glutaraldehyde polyelectrolite complex (PEC) and membrane can be used as a bioadsorbent for metal and cationic dyes. Firstly, PEC membrane chitosan-pectin crosslinked glutaraldehyde was synthesized by dissolving chitosan in acetic acid and pectin in distilled water and added with glutaraldehyde as a crosslinked agent, then heated at 70 °C. The amount of 1M NaOH solution was added for 12 hours and then cleaned with distilled water and dried at room temperature. Subsequently, the membrane was characterized with FTIR spectrophotometer, medium acidity test, and water uptake. The results of the characterization of PEC mebmbrane chitosan-pectin crosslinked glutaraldehyde with FTIR showed the interaction between –NH3+ of chitosan with –COO- group of pectin at a wavelength of 1604.77 cm-1. The medium acidity test showed that the PEC membrane chitosan-pectin crosslinked with glutaraldehyde was stable at pH 3-9 with water absorption of 266.67%, with the composition of chitosan-pectine membrane of 70:30 with 30% glutaraldehyde
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