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首页> 外文期刊>Journal of Applied Polymer Science >Bentonite in Biodegradable Alginate-Based Biocomposites
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Bentonite in Biodegradable Alginate-Based Biocomposites

机译:可生物降解藻酸盐基生物复合物中的膨润土

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摘要

Functionalized next generation biodegradable polymeric systems (bioplastics) that have better compatibility, enhanced relaxation, and thermal properties were designed using bentonite-added alginate biocomposite films in the presence of borax. A series of bentonite-added biocomposite films crosslinked with CaCl_2 were characterized by using methods like XRD, FTIR, TGA, DTA/DSC, DMA, and AFM. A plausible structural mechanism with Ca~(2+) crosslinking gel formation known as egg-box and borate ion complexes was proposed to elucidate the interactions between borax and bentonite/alginate biocomposites. Enhanced compatibility and hybrid properties of raw fillers were confirmed by mineral processing steps involving hydrocyclone purification for bentonite and recrystallization steps for borax. The structure of bentonite and also bentonite hybrid biocomposites were clearly improved upon small additions of borax into the matrix. The presence of borax was found to provide a more intercalated or exfoliated morphology for a given hybrid biocomposite structure. Borate ions dissociated in aqueous solution provided a better effect on the intercalation of bentonite by imparting new hydrogen bonding sites, diol-complexes, and didiol-crosslinking gels.
机译:在硼砂存在下,使用添加了膨润土的藻酸盐生物复合膜设计了功能性更好的相容性,增强的松弛性和热性能的下一代可生物降解聚合物系统(生物塑料)。采用XRD,FTIR,TGA,DTA / DSC,DMA,AFM等方法对一系列CaCl_2交联的膨润土生物复合膜进行了表征。为了阐明硼砂与膨润土/藻酸盐生物复合材料之间的相互作用,提出了一种具有Ca〜(2+)交联凝胶形成的合理的结构机理,称为卵盒和硼酸根离子络合物。通过矿物加工步骤(包括膨润土的水力旋流器纯化和硼砂的重结晶步骤)证实了原料填料的相容性和杂化性能得到提高。在基体中少量添加硼砂后,膨润土以及膨润土杂化生物复合材料的结构得到了明显改善。发现硼砂的存在为给定的杂化生物复合结构提供了更嵌入或脱落的形态。在水溶液中解离的硼酸根离子通过赋予新的氢键位,二醇配合物和二二醇交联凝胶,对膨润土的插层提供了更好的效果。

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