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Development of Cross-Linked Starch Microcellular Foam by Solvent Exchange and Reactive Supercritical Fluid Extrusion

机译:溶剂交换和反应超临界流体挤出技术开发交联淀粉微孔泡沫

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摘要

Starch microcellular foams (SMCFs) are prepared by pore preserving drying or formation processes and contain pores in the micron size range. SMCFs h,we high specific surface area and are useful for applications such as opacifying pigments or as adsorbent materials. The objective of this research was to determine how the processing conditions and use of a crosslinking agent would affect the foam structure and properties. SMCFs (crosslinked and uncrosslinked) were prepared from molded aquagels and carbon dioxide extrusion processes separately and then solvent exchanged. Extruded samples showed macroscopic pores whereas samples from aquagels showed a much finer micropore structure. Aquagel-based SMCF samples had lower density and higher brightness than did extruded samples. The starch foams with micropore structure had low density and high brightness. The solvent exchange process was the most important variable in generating a microcellular structure. Micropores and not macropores contributed to increased brightness of these materials. The brightness and density of the foams were found to be linearly related. Crosslinking with epichlorohydrin imparted significant water resistance to the extruded samples as evidenced in lower water swelling and higher contact angles. Equilibrium moisture content was correlated with the microporous structure. (C) 2008 Wiley Periodical, Inc. J Appl Polym Sci 111: 2917-2929, 2009
机译:淀粉微孔泡沫(SMCF)通过保持孔的干燥或形成过程来制备,并且包含微米尺寸范围内的孔。 SMCF具有较高的比表面积,可用于不透明颜料或吸附材料等应用。这项研究的目的是确定加工条件和交联剂的使用如何影响泡沫的结构和性能。 SMCF(交联和未交联)分别由模制水凝胶和二氧化碳挤出工艺制备,然后进行溶剂交换。挤出样品显示出宏观的孔,而水凝胶样品显示出更细的微孔结构。基于水凝胶的SMCF样品比挤出样品具有更低的密度和更高的亮度。具有微孔结构的淀粉泡沫具有低密度和高亮度。溶剂交换过程是产生微孔结构最重要的变量。微孔而非大孔有助于增加这些材料的亮度。发现泡沫的亮度和密度线性相关。与表氯醇的交联赋予挤出的样品明显的耐水性,如较低的水溶胀和较高的接触角所证明。平衡水分含量与微孔结构相关。 (C)2008 Wiley Periodical,Inc. J Appl Polym Sci 111:2917-2929,2009

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