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Design of Aerogels Cryogels and Xerogels of Alginate: Effect of Molecular Weight Gelation Conditions and Drying Method on Particles’ Micromeritics

机译:海藻酸盐气凝胶冰冻凝胶和干凝胶的设计:分子量胶凝条件和干燥方法对颗粒微团聚体的影响

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摘要

Processing and shaping of dried gels are of interest in several fields like alginate aerogel beads used as highly porous and nanostructured particles in biomedical applications. The physicochemical properties of the alginate source, the solvent used in the gelation solution and the gel drying method are key parameters influencing the characteristics of the resulting dried gels. In this work, dried gel beads in the form of xerogels, cryogels or aerogels were prepared from alginates of different molecular weights (120 and 180 kDa) and concentrations (1.25, 1.50, 2.0 and 2.25% (w/v)) using different gelation conditions (aqueous and ethanolic CaCl2 solutions) and drying methods (supercritical drying, freeze-drying and oven drying) to obtain particles with a broad range of physicochemical and textural properties. The stability of physicochemical properties of alginate aerogels under storage conditions of 25 °C and 65% relative humidity (ICH-climatic zone II) during 1 and 3 months was studied. Results showed significant effects of the studied processing parameters on the resulting alginate dried gel properties. Stability studies showed small variations in aerogels weight and specific surface area after 3 months of storage, especially, in the case of aerogels produced with medium molecular weight alginate.
机译:干凝胶的加工和成型在几个领域都令人关注,例如藻酸盐气凝胶珠在生物医学应用中用作高度多孔和纳米结构的颗粒。藻酸盐源的物理化学性质,凝胶溶液中使用的溶剂和凝胶干燥方法是影响所得干燥凝胶特性的关键参数。在这项工作中,使用不同的凝胶化法,从不同分子量(120和180 kDa)和浓度(1.25、1.50、2.0和2.25%(w / v))的藻酸盐制备干凝胶,冻凝胶或气凝胶形式的干燥凝胶珠。条件(CaCl2水溶液和乙醇溶液)和干燥方法(超临界干燥,冷冻干燥和烘箱干燥)以获得具有广泛理化和质地特性的颗粒。研究了藻酸盐气凝胶在25°C和65%相对湿度(ICH气候区II)的储存条件下1个月和3个月内的理化性质的稳定性。结果表明,所研究的加工参数对所得藻酸盐干燥凝胶的性能有重大影响。稳定性研究表明,储存3个月后,气凝胶的重量和比表面积有很小的变化,特别是在用中等分子量海藻酸盐生产气凝胶的情况下。

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