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Effect of p-TsOH pretreatment on separation of bagasse components and preparation of nanocellulose filaments

机译:P-TSOH预处理对甘蔗渣组分分离的影响及纳米纤维素长丝的制备

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The efficient separation of bagasse components was achieved by p -toluenesulfonic acid ( p -TsOH) pretreatment. The effects of p -TsOH dosage, reaction temperature and reaction time on cellulose, hemicellulose and lignin contents were studied. Eighty-five per cent of lignin was dissolved, whereas the cellulose loss was minimal (less than 8.1%). Cellulose-rich water-insoluble residual solids were obtained. The degree of polymerization of cellulose decreased slightly, but the crystallinity index (CrI) increased from 52.0% to 68.1%. It indicated that the highly efficient delignification of bagasse was achieved by p -TsOH pretreatment. The nanocellulose filaments (CNFs) were produced by the treated samples. The physico-chemical properties of CNFs were characterized by transmission electron microscopy and thermogravimetric analysis. The results show that the CNFs have smaller average size and higher thermal stability. It provides a new method for CNFs.
机译:通过p-硫磺酸(P -TSOH)预处理实现了甘蔗渣组分的有效分离。研究了P -TSOH剂量,反应温度和反应时间对纤维素,半纤维素和木质素含量的影响。八十五个百分之一的木质素被溶解,而纤维素损失最小(小于8.1%)。获得富含纤维素的水不溶性残留固体。纤维素的聚合程度略微下降,但结晶性指数(CRI)从52.0%增加至68.1%。它表明,通过P -TSOH预处理实现了甘蔗渣的高效脱野。纳米纤维素细丝(CNFS)由处理过的样品生产。通过透射电子显微镜和热重分析表征CNF的物理化学性质。结果表明,CNF具有较小的平均尺寸和更高的热稳定性。它为CNF提供了一种新方法。

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