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Sustainable polysaccharide-based biomaterial recovered from waste aerobic granular sludge as a surface coating material

机译:从废弃的好氧颗粒污泥中回收的可持续的基于多糖的生物材料作为表面涂层材料

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摘要

To evaluate the possibility of utilizing polysaccharide-based biomaterial recovered from aerobic granular sludge as a coating material, the morphology, molecular weight distribution and chemical composition of the recovered biomaterial were investigated by atomic force microscopy, size exclusion chromatography and pyrolysis–GC–MS to have a better understanding of the properties of the biomaterial. The biomaterial recovered from aerobic granular sludge demonstrates chain-like structure. The molecular weight of 1/3 of the biomaterial is higher than 70 kDa. It is amphiphilic due to containing polysaccharides as a major fraction and lipids as a minor fraction. The biomaterial easily forms a film on a hydrophilic surface (e.g. paper), and functions as a water resistant barrier. Biomaterial recovery from waste aerobic granular sludge in biological wastewater treatment process provides a new resource of sustainable materials.
机译:为了评估利用从好氧颗粒污泥中回收的多糖基生物材料作为涂层材料的可能性,通过原子力显微镜,尺寸排阻色谱法和热解-GC-MS技术对回收的生物材料的形态,分子量分布和化学组成进行了研究。对生物材料的特性有更好的了解。从好氧颗粒污泥中回收的生物材料显示出链状结构。生物材料的1/3的分子量高于70 kDa。它是两亲性的,因为其主要成分为多糖,次要成分为脂质。该生物材料容易在亲水性表面(例如纸)上形成膜,并用作防水屏障。在生物废水处理过程中从好氧颗粒污泥中回收生物材料提供了可持续材料的新资源。

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