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A comparison of softwood and birch kraft pulp fibers as raw materials for production of TEMPO-oxidized pulp, MFC and superabsorbent foam

机译:软木和桦木牛皮纸浆纤维作为生产TEMPO氧化纸浆,MFC和超吸收性泡沫的原料的比较

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This study compares the suitability of using birch kraft pulp or softwood kraft pulp in the preparation of TEMPO-oxidized pulp, MFC and superabsorbent foam. TEMPO oxidation was performed using five different dosages of primary oxidant. The time of disintegration treatment was varied to study its influence on the properties of the produced MFCs and foams. Both the birch and the softwood pulps could be used for producing superabsorbent foams, depending on the process conditions, the absorption capacities were about the same for the two pulps and varied between 25 and 55 g saline solution/g absorbent. The foams based on birch pulp had, however, on average, 30 % higher retention capacity than the foams based on softwood pulp. The maximum retention capacity obtained was 16.6 g saline solution/g absorbent. The greater retention capacity of birch-based foams is not fully understood, but a smaller pore size may be the reason, which in turn would generate greater capillary forces. In addition to this, it was found that birch pulps, contrary to softwood pulps, had a substantial amount of fibers that were relatively unaffected by the disintegration treatment. These oxidized fibers are likely to reinforce the foam, thereby making the foam more resistant to external pressures, which is in accordance with earlier findings.
机译:本研究比较了使用桦木牛皮纸浆或软木牛皮纸浆制备TEMPO氧化纸浆,MFC和超吸收性泡沫的适用性。使用五种不同剂量的一级氧化剂进行TEMPO氧化。改变崩解处理的时间以研究其对生产的MFC和泡沫的性能的影响。桦木纸浆和针叶木纸浆均可用于生产超吸收性泡沫,具体视工艺条件而定,两种纸浆的吸收容量大致相同,并且在25至55 g盐溶液/ g吸收剂之间变化。但是,基于桦木纸浆的泡沫比基于软木纸浆的泡沫平均保留容量高30%。获得的最大保留容量为16.6 g盐溶液/ g吸收剂。桦木基泡沫塑料的较大保留能力尚不完全清楚,但是较小的孔径可能是原因,这反过来会产生较大的毛细作用力。除此之外,发现与软木纸浆相反,桦木纸浆具有大量的纤维,这些纤维相对不受崩解处理的影响。这些氧化的纤维可能会增强泡沫,从而使泡沫对外部压力更具抵抗力,这与先前的发现一致。

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