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Nanostructural, Chemical, and Thermal Changes of Oil Palm Empty Fruit Bunch Cellulose Nanofibers Pretreated with Different Solvent Extractions

机译:不同溶剂萃取预处理的油棕空果束纤维素纳米纤维的纳米结构,化学和热变化

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The aim of this study was to analyze the effect of different extraction solvents in cellulose nanofibers (CNFs) isolation and properties, including nanostructures, chemical functional groups, chemical substances, and thermal stabilities. Physical oven-dried CNFs had a varied diameter of self-aggregated nanofibers from 2 to 20 mu m with different aggregate shapes of nanofibers, whereas individual nanostructure of CNFs suspension was akin to grape-like flocking nanofibers with a diameter of about 50nm. FTIR spectra showed that hot water extraction for CNFs isolation was able to remove low-molecular weight carbohydrates (hemicellulose and pectin), whereas ethanol and ethanol/benzene extraction for CNFs isolation was able to remove tannin, fatty acids, and waxes. However, amorphous lignin was still present indicated with IR transmission peak at 1558 cm(-1). Carboxylic acids, esters, ketones, and benzoyl units were the chemical compounds of CNFs, indicating the presence of cellulose, hemicellulose, and lignin in which long-chain fatty acids were the most dominant compounds. There were five thermal degradation peaks for ethanol- and hot water-pretreated CNFs thermal stability, whereas ethanol/benzene- and non-extraction-pretreated CNFs had four thermal degradation peaks. Solvent-pretreated CNFs had better thermal stability and higher char residue obtained above 8.51% than that of non-extracted-pretreated CNFs.
机译:这项研究的目的是分析不同萃取溶剂对纤维素纳米纤维(CNF)分离和特性的影响,包括纳米结构,化学官能团,化学物质和热稳定性。物理烘箱干燥的CNF的自聚集纳米纤维直径从2到20μm不等,具有不同聚集形状的纳米纤维,而CNF悬浮液的单个纳米结构类似于直径约50nm的葡萄状植绒纳米纤维。 FTIR光谱表明,热水萃取用于CNF分离能够去除低分子量的碳水化合物(半纤维素和果胶),而乙醇和乙醇/苯萃取用于CNF分离则能够去除单宁,脂肪酸和蜡。但是,仍然存在无定形木质素,其红外透射峰位于1558 cm(-1)。羧酸,酯,酮和苯甲酰基单元是CNF的化学化合物,表明存在纤维素,半纤维素和木质素,其中长链脂肪酸是最主要的化合物。乙醇和热水预处理的CNF有5个热降解峰,而乙醇/苯预处理和非萃取预处理的CNF有4个热降解峰。溶剂预处理的CNF与未萃取的CNF相比,具有更高的热稳定性和高于8.51%的炭渣残留率。

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