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The effect of NaOH concentration variation in the process of paper making from bamboo fiber

机译:NaOH浓度变化在竹纤维造纸过程中的影响

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摘要

Bamboo cropping period is quite short compared to wood, but fiber and bamboo pulp have not been optimally used as a substitute for wood in composite industry, such as fiber board. It is worth to be investigated because of the availability of wood is declining. Therefore, this research aimed at revealing the use of fiber and bamboo pulp (G. apus) for fiberboard. The study was conducted using bamboo fibers from bamboo strips cooked with soda process and bamboo pulp from chips of bamboo cooked with soda process and Kraft process. Composite of bamboo fiber is made with a variety of fiber weight fraction to the epoxy resin matrix. Furthermore composite of bamboo pulp is made under optimal condition for making fiber composite. Based on the test results, it is known that the quality of the bamboo fiber composite from bamboo strips cooked with soda process is better than the composite of bamboo pulp. Besides, the produced bamboo fiber composites can be categorized as the high-density fiberboard meanwhile for the aspect of water content, water absorption, length and thickness changes, flexural strength and modulus of elasticity are in accordance with applicable standard for fiberboard (SNI 01-4449-2006).
机译:与木材相比,竹种植期非常短,但纤维和竹浆尚未最佳地用作复合工业中木材的替代品,如纤维板。值得被调查,因为木材的可用性正在下降。因此,该研究旨在揭示使用纤维和竹浆(G.APU)的纤维板。通过用苏打工艺和用牛油工艺和牛皮纸工艺烹饪的竹子煮熟的竹纤维进行竹纤维进行研究。竹纤维复合物由各种纤维重量馏分制成环氧树脂基质。此外,竹浆的复合材料是在制造纤维复合材料的最佳条件下进行的。基于测试结果,已知用苏打工艺烹饪的竹条的竹纤维复合材料的质量优于竹浆的复合材料。此外,所生产的竹纤维复合材料可以分类为高密度纤维板,同时对于水含量,吸水,长度和厚度变化,弯曲强度和弹性模量符合纤维板的适用标准(SNI 01- 4449-2006)。

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