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Effects of Xylanase Pretreatment on the Quality of Refiner Mechanical Mulberry Branch Fibers

机译:木聚糖酶预处理对炼油厂质量的影响

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摘要

We performed xylanase pretreatment prior to mechanical refining in the production of mulberry branch fibers, with the objective of saving energy and studying the effects of such pretreatment on the quality of the fibers. To determine the effects of the enzyme action, we analyzed the energy required for refining, related yield, and the dimension, deformation, and morphology of the fibers. We found that, with the xylanase pretreatment, the refining energy was reduced by 4%, with the yield of fibers being maintained at >85%. In addition, the fiber bundles were defibered further, resulting in reduced average length of the fiber. Furthermore, the fiber widths increased because of the improved swelling effect of the xylanase pretreatment. However, in some instances, the fine elements were reduced. With a low enzyme dosage, the fiber coarseness decreased remarkably and, because of the swelling and softening effects of the xylanase pretreatment on the mulberry branches, the fiber kink ratios and curl were reduced. Additionally, the mulberry branch tissue was loosened, facilitating fiber separation. In view of these findings, the biomechanical process could be a potentially green and efficient process for the manufacturing of mulberry branch fibers.
机译:我们机械精炼生产桑枝纤维之前进行预处理木聚糖酶,与客观节能和学习上的纤维的质量,例如预处理的影响。为了确定酶作用的影响,我们分析了纤维的用于精炼,相关产率所需的能量,和所述尺寸,变形,和形态。我们发现,与木聚糖酶预处理,精制能量减少4%,与纤维的产率保持在> 85%。另外,纤维束进一步脱纤维,从而导致在纤维的降低的平均长度。此外,纤维宽度增加,因为所述木聚糖酶预处理的改进的溶胀作用。然而,在某些情况下,精细元素减少。具有低的酶剂量时,纤维粗度显着降低,因为在分支桑木聚糖酶预处理的溶胀和软化效果和,中,纤维扭结比和卷曲减少。此外,该桑枝组织被松开,促进纤维分离。鉴于这些发现,生物力学过程可以是用于制造桑枝纤维的潜在绿色和有效的方法。

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