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Utilization of Waste Lignin and Hydrolysate From Chromium Tanned Waste in Blends of Hot-Melt Extruded PVA-Starch

机译:热熔挤压PVA-淀粉共混物中铬鞣废料中木质素和水解产物的利用

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摘要

The demand for biodegradable plastic material is increasing worldwide. However, the cost remains high in comparison with common forms of plastic. Requirements comprise low cost, good UV-stability and mechanical properties, as well as solubility and water uptake lead to the preparation of multi-component polymer blends based on polyvinyl alcohol and starch in combination with waste products that are hard to utilize-waste lignin and hydrolysate extracted from chromium tanned waste. Surprisingly the addition of such waste products into PVA gives rise to blends with better biodegradability than commercial PVA in an aquatic aerobic environment with non-adapted activated sludge. These blends also exhibited greater solubility in the water and UV stability than commercial PVA. Tests on the processing properties of the blends (melt flow index, tensile strength and elongation at break of the films) as well as their mechanical properties showed that materials based on these blends might be applied in agriculture (for example as the systems for controlled-release pesticide or fertilizer) and, somewhat, in the packaging sector.
机译:全球对生物可降解塑料的需求正在增长。但是,与普通形式的塑料相比,成本仍然很高。要求包括低成本,良好的紫外线稳定性和机械性能,以及溶解性和吸水率,从而导致制备基于聚乙烯醇和淀粉的多组分聚合物共混物,以及难以利用的废物-木质素和从铬鞣制废料中提取的水解产物。出乎意料的是,在无适应性活性污泥的水生需氧环境中,将这些废品添加到PVA中所得到的混合物具有比商业PVA更好的生物降解性。这些共混物还显示出比市售PVA更高的水溶性和紫外线稳定性。对混合物的加工性能(熔体流动指数,拉伸强度和薄膜的断裂伸长率)及其机械性能的测试表明,基于这些混合物的材料可用于农业(例如,作为可控释放农药或化肥),并且在包装行业中也有一些。

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