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Improving the use of kenaf for kraft pulping by using mixtures of bast and core fibers

机译:通过使用韧皮和芯纤维的混合物来改善洋麻在牛皮纸制浆中的应用

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摘要

Kenaf (Hibiscus cannabinus L.) is a herbaceous annual plant amenable to use as a papermaking raw material. Kraft and soda pulping of kenaf have so far been done exclusively on the bark fraction (about 34-38% of the stem) or whole stem of the plant. Using kenaf bark exploits the higher quality of its bast fibers but reduces the typically high crop yields of this plant. In any case, core kraft pulp has acceptable properties some of which (e.g. tensile index, burst index) can even surpass those of bark pulp. Pulp made from both fractions has been found to exhibit better bonding properties than bark pulp. However, too high a proportion of core fibers can result in difficult drainage, a low tear strength or poor air permeability. These problems restrict the proportion of core that can be mixed with bast fibers, hinders separation of the two fractions and raises operational costs. The primary purpose of this study was to examine the influence of the core-bark ratio on the properties of mixed kenaf pulp. We used unrefined core pulp and refined bark pulp. Based on the results for kraft sacks, obtaining kenaf paper from both fractions has some advantages. Because Gurley air porosity changed dramatically with the proportion of core pulp used, it was used to determine the maximum amount of core fibers to be added to bast fibers. A proportion of up to 34% was found to have no adverse effect on air permeability. Such a proportion allowed paper strength to be preserved with an acceptable tear index (19.8mNmpo/g) and excellent tensile index (72Nm/g). Also, energy consumption was reduced if only the bark fraction was refined. The proposed strategy thus provides increased fiber yields of kenaf per hectare per year and valorizes the core fraction.
机译:红麻(Hibiscus cannabinus L.)是一年生草本植物,适合用作造纸原料。到目前为止,洋麻的牛皮纸和苏打纸浆仅在植物的树皮部分(约占茎的34-38%)或整个茎上进行。使用洋麻树皮可利用其韧皮纤维的更高质量,但会降低这种植物通常的高作物产量。在任何情况下,核心牛皮纸浆都具有可接受的特性,其中某些特性(例如拉伸指数,破裂指数)甚至可以超过树皮纸浆。已经发现由两种馏分制成的纸浆比树皮纸浆显示出更好的粘合性能。但是,芯纤维比例过高会导致排水困难,撕裂强度低或透气性差。这些问题限制了可与韧皮纤维混合的纤芯的比例,阻碍了两部分的分离并增加了运营成本。这项研究的主要目的是研究核皮比对混合洋麻纸浆性能的影响。我们使用了未精制的核心纸浆和精制的树皮纸浆。根据牛皮纸麻袋的结果,从两个部分中获得洋麻纸具有一些优势。由于Gurley气孔率随芯纸浆比例的变化而急剧变化,因此可用于确定要添加到韧皮纤维中的芯纤维的最大量。发现高达34%的比例对透气性没有不利影响。这样的比例使得可以以可接受的撕裂指数(19.8mNmpo / g)和优异的拉伸指数(72Nm / g)保持纸张强度。而且,如果仅对树皮部分进行精制,则可以降低能耗。因此,提出的策略可提高每年每公顷洋麻的纤维产量,并使核心部分增值。

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