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Alkali treatment of birch kraft pulp to enhance its TEMPO catalyzed oxidation with hypochlorite

机译:碱处理桦木牛皮纸浆以增强次氯酸盐对TEMPO的催化氧化作用

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摘要

Alkali treatment was used to increase the reactivity of birch kraft pulp prior to its 2,2,6,6- tetramethyl-1-piperidinyloxy (TEMPO) catalyzed oxidation with hypochlorite, which is a process commonly applied to prepare nanofibrillated cellulose. On contrary to the traditional use of NaBr as a cocatalyst, TEMPO was activated with HOCl prior to the oxidation. Commonly, the lack of bromide increases the oxidation time and impairs the formation of carboxylic groups. However, the reaction time of the bromide-free TEMPO catalyzed oxidation could be shortened from 2.5 to 0.5 h when the pulp was treated with 1 M NaOH prior to the oxidation(2.4 mmol NaOCl/g pulp). The beneficial effect was obtained even if the alkali treatment was executed at room temperature and only for few minutes. Moreover, the alkali pretreatment enabled selective production of a pulp with carboxylate content as high as1.6 mmol/g with NaOCl dosage of 4.4 mmol/g. The changes in the cellulosic raw material during the alkali treatment were assessed by water retention value and carbohydrate analysis.
机译:在其2,2,6,6-四甲基-1-哌啶基氧基(TEMPO)催化用次氯酸盐氧化之前,采用碱处理来提高桦木牛皮纸浆的反应性,该工艺通常用于制备纳米原纤化纤维素。与传统上使用NaBr作为助催化剂相反,TEMPO在氧化之前先用HOCl活化。通常,缺少溴化物会增加氧化时间并损害羧基的形成。但是,当纸浆在氧化之前用1 M NaOH处理(2.4 mmol NaOCl / g纸浆)时,无溴化物TEMPO催化的氧化反应时间可以从2.5 h缩短到0.5 h。即使在室温下仅进行几分钟碱处理也获得了有益的效果。而且,碱预处理使得能够选择性地生产具有高达1.6mmol / g的羧酸盐含量的纸浆,其中NaOCl剂量为4.4mmol / g。通过保水值和碳水化合物分析评价碱处理期间纤维素原料的变化。

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