首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Effects of hemicellulose pre-extraction and cellulose nanofiber on the properties of rice straw pulp
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Effects of hemicellulose pre-extraction and cellulose nanofiber on the properties of rice straw pulp

机译:半纤维素预萃取和纤维素纳米纤维对稻草浆性能的影响

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The aim of this study was to evaluate the influence of mild alkaline pre-extraction on the hemicel-luloses removal of rice straw. In addition, the performance of cellulose nanofibers (CNFs) addition on some physico-mechanical properties obtained from extracted and un-extracted (control) samples were investigated. An optimum compromise was found as operating conditions (10% soda, 50°C, and 90 min) that provided moderate hemicelluloses removal (48.1%). The residual extracted rice straw particles were subjected to soda-anthraquinone pulping at 160°C for 30-60min with 6 to 18% active alkali charge. Compared with the control samples, the screened yield and Kappa number for extracted pulps decreased slightly. Extracted samples showed better air resistance compared with the un-extracted (control) pulps. However, pre-extraction was found to negatively impact on some mechanical properties such as decrease in burst and tensile indices while addition of CNFs and refining of fibers could improve the strength properties considerably. In general, the addition of CNFs in any concentrations considerably enhanced tensile and burst indices of the sheets in extracted and un-extracted conditions, compared with the unfilled ones. The improvement in mechanical properties was considered one of the key benefits brought by CNFs reinforcement. On the other hand, the stretch properties of the beaten pulps are higher than those of control samples. SEM observations showed that CNFs were deposited on the voids between the rice straw fibers.
机译:这项研究的目的是评估温和的碱性预萃取对稻草半球状脂质去除的影响。此外,还研究了添加纤维素纳米纤维(CNF)对从提取和未提取(对照)样品中获得的某些物理力学性能的性能。发现最佳的折衷方案是可以中等程度地去除半纤维素(48.1%)的操作条件(10%的苏打水,50°C和90分钟)。将残留的提取的稻草颗粒在具有6%至18%活性碱的情况下,于160°C进行苏打蒽醌制浆30-60分钟。与对照样品相比,提取纸浆的筛选收率和卡伯值略有下降。与未提取(对照)的纸浆相比,提取的样品显示出更好的耐空气性。但是,发现预萃取会对某些机械性能产生负面影响,例如破裂强度和拉伸指数的降低,而添加CNF和纤维细化可以显着改善强度性能。通常,与未填充的条件相比,在任何浓度下添加CNF都可以显着提高纸张在提取和未提取条件下的拉伸指数和破裂指数。机械性能的改善被认为是CNF增强带来的主要好处之一。另一方面,打浆的纸浆的拉伸性能高于对照样品的拉伸性能。 SEM观察表明CNF沉积在稻草纤维之间​​的空隙上。

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