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Properties of Jute Pulps from AtmosphericOrganosolv Process

机译:大气有机溶剂法制得的黄麻纸浆的性能

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It was realized that extended reaction time did not affect either kappa number or yield for both untreated and bio-treated ethanol-alkali jute pulps. The delignification ability of the ethanol-alkali organosolv system was somewhat better than the caustic soda system. However, the ethanol addition into the caustic soda reflux system improved yield with probably carbohydrate retention in the pulp. Moreover, bio-treatment of jute prior to ethanol-alkali pulping under reflux system does not affect the delignification and yield.The maximum burst and tensile strength for ethanol-alkali system was found to be at 1 h. Cooking time with 3.9 kPa m~(2)/g and 66.1 N m/g, respectively. However, increasing the reflux time for beyond 1 hour markedly reduce strengths. Moreover, the tear strengths of jute pulps from the caustic soda system were higher than pulps from the both untreated and bio-treated ethanol-alkali systems. The highest tear strength of 22.5 mN m~(2)/g was also found with 1 h. Cooking in caustic soda system.
机译:已经认识到,对于未处理的和生物处理的乙醇-碱式黄麻纸浆,延长的反应时间既不影响κ值也不影响产率。乙醇-碱式有机溶剂系统的脱木素能力比苛性钠系统好一些。但是,将乙醇添加到苛性苏打回流系统中可提高产量,并可能使糖类保留在纸浆中。此外,在回流系统中进行乙醇-碱制浆之前对黄麻进行生物处理不会影响脱木素作用和收率。发现乙醇-碱系统的最大破裂强度和拉伸强度为1 h。蒸煮时间分别为3.9 kPa m〜(2)/ g和66.1 N m / g。但是,增加回流时间超过1小时会明显降低强度。而且,来自苛性苏打系统的黄麻纸浆的撕裂强度高于未处理和生物处理的乙醇-碱系统的纸浆。在1 h时也发现了最高的22.5 mN m〜(2)/ g撕裂强度。在烧碱系统中烹饪。

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