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以质量分数为1.0%的魔芋葡甘聚糖水溶液为原料,质量分数为3.0%的氢氧化钠乙醇溶液为凝固浴,采用冷冻诱导相分离的方法制备了能够大量吸收水分而不溶解的海绵材料.研究结果表明,该海绵的表面和内部具有均匀、连通的孔隙结构,孔径大小为400 μm左右,孔隙率为93.87%,透气率为45.30%,对人造血浆的吸液量和保液量分别为25.98g/g和3.36 g/g,海绵的厚度为3 mm,表观密度为25.15 mg/cm3,拉伸强度为0.43 MPa.各项性能均优于或接近市售的海藻酸钙争粘胶非织造布创面敷料的水平,可用于治疗手术伤口、烧烫伤创面等各种类型的皮肤创伤.

参考文献

[1] Ian Ratcliffe;Peter A.Williams;Christer Viebke;John Meadows .Physicochemical Characterization of Konjac Glucomannan[J].Biomacromolecules,2005(4):1977-1986.
[2] Jianguang Chen;Changhua Liu;Yanqing Chen .Structural characterization and properties of starch/konjac glucomannan blend films[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,2008(4):946-952.
[3] Ying-qing Zhang;Bi-jun Xie;Xin Gan .Advance in the applications of konjac glucomannan and its derivatives[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,2005(1):27-31.
[4] Weixuan Fang;Pengwu Wu .Variations of Konjac glucomannan (KGM) from Amorphophallus konjac and its refined powder in China[J].Food hydrocolloids,2004(1):167-170.
[5] Orawan Tatirat;Sanguansri Charoenrein;William L. Kerr .Physicochemical properties of extrusion-modified konjac glucomannan[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,2012(2):1545-1551.
[6] 张传杰,徐琪,熊春华,冉建华,刘云,朱平.海藻酸钙海绵的结构与性能[J].高分子材料科学与工程,2012(09):24-27.
[7] Zhi-Gang Chen;Min-Hua Zong;Guang-Ji Li .Lipase-catalyzed acylation of konjac glucomannan in organic media[J].Process biochemistry,2006(7):1514-1520.
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