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用单宁酸和海藻酸钠改性的冰模板交联聚乙烯醇气凝胶

Ice-Template Crosslinked PVA Aerogels Modified with Tannic Acid and Sodium Alginate.

作者信息

De la Cruz Lucía G, Abt Tobias, León Noel, Wang Liang, Sánchez-Soto Miguel

机构信息

Centre Català del Plàstic, Universitat Politècnica de Catalunya Barcelona Tech (EEBE-UPC), Av. d'Eduard Maristany, 16, 08019 Barcelona, Spain.

Key Laboratory of Advanced Textiles Composites of Ministry of Education, Tiangong University, Binshui West Road 399, Xiqing District, Tianjin 300387, China.

出版信息

Gels. 2022 Jul 5;8(7):419. doi: 10.3390/gels8070419.

Abstract

With the commitment to reducing environmental impact, bio-based and biodegradable aerogels may be one approach when looking for greener solutions with similar attributes to current foam-like materials. This study aimed to enhance the mechanical, thermal, and flame-retardant behavior of poly(vinyl alcohol) (PVA) aerogels by adding sodium alginate (SA) and tannic acid (TA). Aerogels were obtained by freeze-drying and post-ion crosslinking through calcium chloride (CaCl) and boric acid (HBO) solutions. The incorporation of TA and SA enhanced the PVA aerogel's mechanical properties, as shown by their high compressive specific moduli, reaching up to a six-fold increase after crosslinking and drying. The PVA/TA/SA aerogels presented a thermal conductivity of 0.043 to 0.046 W/m·K, while crosslinked ones showed higher values (0.049 to 0.060 W/m·K). Under TGA pyrolytic conditions, char layer formation reduced the thermal degradation rate of samples. After crosslinking, a seven-fold decrease in the thermal degradation rate was observed, confirming the high thermal stability of the formed foams. Regarding flammability, aerogels were tested through cone calorimetry. PVA/TA/SA aerogels showed a significant drop in the main parameters, such as the heat release rate (HRR) and the fire growth (FIGRA). The ion crosslinking resulted in a further reduction, confirming the improvement in the fire resistance of the modified compositions.

摘要

出于减少环境影响的考虑,在寻求具有与当前泡沫状材料类似特性的更环保解决方案时,生物基和可生物降解的气凝胶可能是一种途径。本研究旨在通过添加海藻酸钠(SA)和单宁酸(TA)来增强聚乙烯醇(PVA)气凝胶的机械、热和阻燃性能。气凝胶通过冷冻干燥以及通过氯化钙(CaCl)和硼酸(HBO)溶液进行后离子交联获得。TA和SA的加入增强了PVA气凝胶的机械性能,交联和干燥后其高压缩比模量表明性能提高了六倍。PVA/TA/SA气凝胶的热导率为0.043至0.046W/m·K,而交联后的气凝胶热导率更高(0.049至0.060W/m·K)。在热重分析(TGA)热解条件下,炭层的形成降低了样品的热降解速率。交联后,热降解速率下降了七倍,证实了所形成泡沫的高热稳定性。关于可燃性,通过锥形量热法对气凝胶进行了测试。PVA/TA/SA气凝胶在主要参数方面有显著下降,如热释放速率(HRR)和火灾增长速率(FIGRA)。离子交联导致进一步降低,证实了改性组合物耐火性的提高。

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