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Cellulose Nanocrystal Isolation from Hardwood Pulp using Various Hydrolysis Conditions

机译:使用各种水解条件从硬木浆中分离纤维素纳米晶体

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摘要

To expand the application field of the pulping industry, this study conducted a series of sample preparations for processing cellulose nanocrystals (CNCs) from a dry hardwood pulp to achieve optimal sulfuric acid hydrolysis. The properties of laboratory-prepared pulp CNCs (P-CNCs) were investigated with different preparation conditions including sulfuric acid concentrations, hydrolysis temperatures, and hydrolysis durations. Results showed a gradient of color changes observed with the increase of hydrolysis duration and temperature. Under certain conditions, the derived P-CNCs exhibited nanoscale dimensions, detected by transmission electron microscopy, and a crystallinity index similar to commercial products. In addition, the surface sulfate groups were assumed to be contributed by sulfuric acid hydrolysis. However, a high acid concentration and long hydrolysis processing duration introduced more sulfate groups on the derived P-CNCs, which may have acted as flame retardants and, thus, increased the amount of char residue.
机译:为了扩大制浆工业的应用领域,这项研究进行了一系列样品制备,以从干燥的硬木纸浆中加工纤维素纳米晶体(CNC),以实现最佳的硫酸水解。在不同的制备条件(包括硫酸浓度,水解温度和水解持续时间)下,研究了实验室制浆CNC(P-CNC)的性能。结果显示随着水解时间和温度的增加,观察到颜色变化的梯度。在某些条件下,衍生的P-CNC表现出纳米级尺寸(通过透射电子显微镜检测),并且其结晶度指标与商品相似。另外,假定表面硫酸根基团是由硫酸水解贡献的。然而,高酸浓度和长水解过程持续时间在衍生的P-CNC上引入了更多的硫酸根基团,这些硫酸根基团可能已起阻燃剂的作用,因此增加了残炭的数量。

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