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酵母菌的致孔作用对PVA/CMC水凝胶性能的影响
引用本文:万豫,张敏,翁云宣,李成涛.酵母菌的致孔作用对PVA/CMC水凝胶性能的影响[J].化工学报,2020,71(4):1828-1835.
作者姓名:万豫  张敏  翁云宣  李成涛
作者单位:1.陕西科技大学环境科学与工程学院,陕西 西安 710021;2.北京工商大学塑料卫生与安全质量评价技术 北京市重点实验室,北京 100048
基金项目:陕西省科技厅项目;北京市重点实验室项目
摘    要:利用酵母菌发泡制备了聚乙烯醇/羧甲基纤维素多孔水凝胶(D-PC),采用FTIR对其化学结构进行了表征和Zeta电位分析共同证明了酵母菌和材料之间的相互作用;利用SEM和BET分别对其三维网络结构进行了观察以及比表面积、孔径进行了测定;研究了D-PC在不同条件下对亚甲基蓝(MB)的去除,通过纤维素降解酶实验测试了D-PC的降解性。研究结果表明:酵母菌通过静电作用包覆在D-PC内;随着酵母菌量的增加,D-PC的比表面积增大、平均孔径减小;D-PC对MB的去除机制以化学吸附为主,且吸附动力学符合伪二级动力学方程;去除效率随着酵母菌的增加而增大,随着pH、温度的增加先增大后减小;一定条件下D-PC能降解水凝胶中的聚乙烯醇。

关 键 词:凝胶  酵母菌致孔  吸附作用  降解  多功能性  
收稿时间:2019-08-05
修稿时间:2019-09-20

Effect of porogenic of yeast on adsorption and degradation of PVA/CMC hydrogel
WAN Yu,ZHANG Min,WENG Yunxuan,LI Chengtao.Effect of porogenic of yeast on adsorption and degradation of PVA/CMC hydrogel[J].Journal of Chemical Industry and Engineering(China),2020,71(4):1828-1835.
Authors:WAN Yu  ZHANG Min  WENG Yunxuan  LI Chengtao
Affiliation:1.School of Environmental Science and Engineering, Shaanxi University of Science and Technology, Xi an 710021, Shaanxi, China;2.Beijing Key Laboratory of Plastic Hygiene and Safety Quality Evaluation Technology, Beijing Technology and Business University, Beijing 100048, China
Abstract:A polyvinyl alcohol/carboxymethyl cellulose porous hydrogel (D-PC) was prepared by yeast foaming. The chemical structure was characterized by FTIR and combined with Zeta potential analysis to prove the interaction between yeast and materials. The three-dimensional network structure was observed by SEM and BET, and the specific surface area and pore size were measured. The effects of D-PC on the removal of the basic dye methylene blue (MB) at different conditions were studied, and the removal mechanism was explored. Degradability of D-PC was tested by cellulose degrading enzyme experiment. The results showed that yeast was encapsulated in D-PC by electrostatic action. As the amount of yeast increases, the specific surface area of D-PC increased and the average pore size decreased. The removal efficiency of MB by D-PC increased with the increase of yeast, and increased first and then decreased with the increase of pH and temperature. The removal mechanism was dominated by chemical adsorption. The kinetic data were fitted to the pseudo-second-order kinetic model reasonably well. Under certain conditions, the yeast could degrade the polyvinyl alcohol in the hydrogel, so the hydrogel had double degradation versatility.
Keywords:gel  yeast foaming  absorption  degradation  multifunction  
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