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Remarkable Physical and Thermal Properties of Hydrothermal Carbonized Nanoscale Cellulose Observed from Citric Acid Catalysis and Acetone Rinsing

机译:柠檬酸催化和丙酮冲洗观察到的热液碳化纳米级纤维素的显着物理和热学性质

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摘要

Citric acid (CA) was used for the hydrothermal carbonization (HTC) of cellulose nanofiber and found to exert remarkable effects on the chemistry and physical aspects of the product distribution. More specifically, the morphology, yield, elemental and proximate composition, chemical functional groups, thermal properties and surface properties of the resultant hydrochars were studied extensively. The morphological properties of the final char were the singularly most surprising and unique finding of this study. The cellulose nanofiber hydrochars were contrasted to hydrochars from bleached softwood pulp, having a similar composition with the former, to pinpoint the role of nano-dimensions. Without the presence of CA, the pulp hydrochar lacked several of the spherical dimensions shown in the nanocellulose; however, and unexpectedly, the presence of CA caused a homogenization of the final product distribution for both samples. Finally, thermally stable and high surface area hydrochars were obtained when the hydrochar was rinsed with acetone.
机译:柠檬酸(CA)用于纤维素纳米纤维的水热碳化(HTC),并发现其对产品分布的化学和物理方面产生显着影响。更具体地,广泛研究了所得水炭的形态,产率,元素和邻近组成,化学官能团,热性质和表面性质。最终炭的形态学特性是这项研究最令人惊讶和独特的发现。纤维素纳米纤维水煤渣与漂白软木纸浆的水煤渣形成对比,具有与前者相似的成分,以查明纳米尺寸的作用。没有CA的情况下,果肉水炭缺乏纳米纤维素中显示的几个球形尺寸;但是,出乎意料的是,CA的存在导致两个样品的最终产物分布均匀化。最终,当用丙酮冲洗烃时,获得了热稳定且高表面积的烃。

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