Center for Degradable and Flame-Retardant Polymeric Materials, College of Chemistry, Sichuan University, Chengdu 610064, People's Republic of China.
ACS Appl Mater Interfaces. 2013 Mar 13;5(5):1715-21. doi: 10.1021/am3028603. Epub 2013 Feb 25.
Biodegradable, foamlike materials based on renewable pectin and sodium montmorillonite clay were fabricated through a simple, environmentally friendly freeze-drying process. The addition of multivalent cations (Ca(2+) and Al(3+)) resulted in apparent cross-linking of the polymer and enhancement of aerogel properties. The compressive properties increased as the solid contents (both pectin and clay) increased; moduli in the range of 0.04-114 MPa were obtained for materials with bulk densities ranging from 0.03 g/cm(3) to 0.19 g/cm(3), accompanied by microstructural changes from a lamellar structure to a cellular structure. Biodegradability of the aerogels was investigated by detecting CO2 release for 4 weeks in compost media. The results revealed that pectin aerogels possess higher biodegradation rates than wheat starch, which is often used as a standard for effective biodegradation. The addition of clay and multivalent cations surprisingly increased the biodegradation rates.
通过简单、环保的冷冻干燥工艺,制备了基于可再生果胶和钠基蒙脱石粘土的可生物降解泡沫材料。添加多价阳离子(Ca(2+) 和 Al(3+))导致聚合物明显交联,并增强气凝胶性能。随着固含量(果胶和粘土)的增加,压缩性能增加;对于密度范围为 0.03 g/cm(3) 至 0.19 g/cm(3)、弹性模量在 0.04-114 MPa 范围内的材料,伴随着从层状结构到细胞结构的微观结构变化。通过在堆肥介质中检测 4 周的 CO2 释放来研究气凝胶的生物降解性。结果表明,果胶气凝胶具有比常用作有效生物降解标准的小麦淀粉更高的生物降解率。添加粘土和多价阳离子出人意料地提高了生物降解率。