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Process analysis of waste bamboo materials using solvent liquefaction

机译:溶剂液化废竹料的工艺分析

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Bamboo is one of the most significant biomass resources which has been used in houses, flooring, construction of scaffolding and bridges, etc. The solvent liquefaction process is one promising technique for effective utilization of waste bamboo materials for the lignocelluloses which can be converted to liquid reactive materials as biomass-based materials. Bamboo has the advantage of providing liquefied products with a small range of variances. The components of bamboo have high acidity in the presence of mineral acid catalysts and possess constituents which can react with polyethylene glycol 400 (PEG 400). In this study, waste bamboo materials have been used in liquefaction experiments. The liquefaction process and liquefied residue have been measured according to the liquefied conditions and the surface changes of waste bamboo samples observed by a scanning electron microscope. The changes in the functional groups have been analysed by a Fourier transform infrared spectrometer and the behavior of the crystalline structures of liquefied bamboo has been determined by X-ray diffraction. Other experiments, such as the degree of polymerization, have also been carried out to confirm the results. It was found that increments of the temperature and the amount of the acid catalysts improved the efficiency of liquefaction. Meanwhile, the dissolution time of lignin was significantly shorter than that of cellulose in the solvent liquefaction process of PEG 400.
机译:竹子是最重要的生物质资源之一,已用于房屋,地板,脚手架和桥梁的建筑等。溶剂液化工艺是有效利用废弃竹子材料制备木质纤维素的一种有前途的技术,可将其转化为液体。反应性材料作为基于生物质的材料。 Bamboo的优势在于可以提供变化范围较小的液化产品。竹的成分在无机酸催化剂存在下具有高酸度,并具有可与聚乙二醇400(PEG 400)反应的成分。在这项研究中,废竹材料已用于液化实验。根据液化条件和废竹样品的表面变化,通过扫描电子显微镜观察其液化过程和液化残渣。通过傅里叶变换红外光谱仪分析了官能团的变化,并通过X射线衍射确定了液化竹的晶体结构的行为。还进行了其他实验,例如聚合度,以确认结果。发现温度的升高和酸催化剂的量的提高提高了液化的效率。同时,在PEG 400的溶剂液化过程中,木质素的溶解时间明显短于纤维素。

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