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首页> 外文期刊>Wood and Fiber Science >The effects of hydrolytic enzyme treatments on three British Columbian interior fir kraft pulps differing in their initial fiber coarseness
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The effects of hydrolytic enzyme treatments on three British Columbian interior fir kraft pulps differing in their initial fiber coarseness

机译:水解酶处理对三种不列颠哥伦比亚省内部冷杉牛皮纸浆初始纤维粗度不同的影响

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摘要

The effects of carbohydrate-degrading enzymes on three softwood [Abies spp.] kraft pulps, differing primarily in their initial fibre coarseness, were assessed. The pulps were treated with three different enzyme preparations (a crude cellulase, an endoglucanase, and a xylanase) to assess the potential of the different enzymes to alter handsheet properties and to evaluate their effects on fibre coarseness. All enzymatic treatments increased handsheet densities irrespective of the furnish used. The most significant modifications in handsheet properties were evident after treatment with either the crude cellulase or the endoglucanase. Although increased densification occurred with all the pulps, the degree of fibre coarseness of the original pulp influenced the magnitude of response to the different enzymatic treatments. While the tensile index of the coarser pulp was improved by treatment with the crude cellulase, a similar trend was not evident with the pulps of lower coarseness. In contrast, the tensile strength of all pulps, irrespective of the inherent fibre coarseness, was improved by the endoglucanase treatments. The tear strength decreased after treatments with both the crude cellulase and endoglucanase. Xylanase treatments did not significantly alter the handsheet properties of any of the pulps, regardless of the nature of the starting furnish.
机译:评估了碳水化合物降解酶对三种针叶木(Abies spp。)牛皮纸浆的影响,这些纸浆的初始纤维粗度主要不同。用三种不同的酶制剂(粗纤维素酶,内切葡聚糖酶和木聚糖酶)处理纸浆,以评估不同酶改变手抄纸性能的潜力,并评估其对纤维粗度的影响。不论使用何种配料,所有酶处理均会增加手抄纸的密度。用粗纤维素酶或内切葡聚糖酶处理后,手抄纸性能的最明显改变是显而易见的。尽管所有纸浆的致密化程度都有所提高,但原始纸浆的纤维粗糙程度影响了对不同酶处理反应的幅度。通过使用粗纤维素酶处理可以提高粗纸浆的拉伸指数,而较低粗度的纸浆则没有类似的趋势。相反,通过内切葡聚糖酶处理,所有纸浆的抗张强度,无论固有的纤维粗糙度如何,都得到了改善。用粗纤维素酶和内切葡聚糖酶处理后,撕裂强度降低。不管起始配料的性质如何,木聚糖酶处理都不会显着改变任何纸浆的手抄纸性能。

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