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Elaboration of light composite materials based on alginate and algal biomass for flame retardancy: preliminary tests

机译:基于藻酸盐和藻类生物质的轻质复合材料的阻燃性初步测试

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摘要

Alginate-based composites prepared by incorporation of bentonite into alginate or algal hydrogels show promising properties in terms of thermal degradation (mass-loss rate curves under epiradiator irradiation). They can be used as coating agent or as structured materials. Alginates characterized by high guluronic acid content are more efficient for retarding the ignition of tested materials after calcium gelation. Brown seaweed can be directly used for preparing composite blocks with clay; a pretreatment for partial extraction of alginate was introduced in the preparation of the composite material. In order to achieve a better control of drying procedures (with low apparent density, limited shrinking), another kind of composite was successfully elaborated by the incorporation of freeze-dried alginate/bentonite beads into an alginate matrix. Algal biomass (a renewable resource, which requires less processing than when using pure alginate) can be used for the green manufacturing of promising flame-retardant materials (associated to bentonite). Freeze-dried alginate/bentonite beads incorporated in alginate hydrogels show interesting thermal degradation properties allied to low-density characteristics.
机译:通过将膨润土掺入藻酸盐或藻类水凝胶中制备的藻酸盐基复合材料在热降解方面(在辐射源辐射下的质量损失速率曲线)显示出令人鼓舞的性能。它们可用作涂层剂或结构化材料。以高古卢糖醛酸含量为特征的藻酸盐在钙胶凝后能更有效地延迟被测材料的着火。棕色海藻可直接用于制备粘土复合砌块。在复合材料的制备中引入了部分提取藻酸盐的预处理。为了更好地控制干燥过程(表观密度低,收缩率有限),通过将冷冻干燥的藻酸盐/膨润土珠粒掺入藻酸盐基质中,成功开发出另一种复合材料。藻类生物质(一种可再生资源,比使用纯藻酸盐所需的加工更少)可用于绿色制造有前途的阻燃材料(与膨润土相关)。掺入藻酸盐水凝胶中的冻干藻酸盐/膨润土珠粒显示出与低密度特性相关的有趣的热降解性能。

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