Investigation on the Mechanical Properties of Paper Water Hyacinth (Eichhornia Crassipes)

B. D. Wembe, Rolland Djomi, N. Konai, G. Ntamack, F. A. Tsopmo, O. Olubusoye, L. Meva’a
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Abstract

The widely use of papers and for the promotion of conservation of the forest ecosystem in making papers from the falling of trees. This work is focused on the realization of paper and its mechanical properties. Water hyacinth (Eichornia crassipes) is aquatic plant with a high growth rate that usually cover the river surface and has an impact to the environment and other living things. The work done was to produce a paper from water hyacinth through cutting, grinding, refining, molding, the bleaching process and drying process we obtained different papers. In the realization process of the papers, we have used Hydrogen peroxides for the bleaching process to obtain white paper (Bleached paper). In our case we have both the bleached and the unbleached paper. Papers were successfully produced under experimental condition. Mechanical properties of each paper were investigated. The various density of paper water hyacinth plant of the bleached and unbleached was 21.68 g/m3 and 26.37 g/m3 respectively, average tensile rupture stress 1.337MPa & 0.405MPa and young modulus was found to be 36.278MPa and 17.604MPa, the elongation at break 4.744% and 2.879%, average moisture content of 4.82% to 9.59% and 3.57% to 6.62% respectively for the Unbleached and Bleached paper water hyacinth plant. For this reason, Unbleached Paper with certain different strength ranges could be considered to be applied as packaging, seedling pot, mulching or insulating material in advance application. The use of water hyacinth as biomass with the used of the roots and leaf shows a bulky structure. The study concludes that water hyacinth is a potential fiber for paper production especially in areas where it is abundant, but the tensile strength of unbleached paper is more than the bleached paper. So that the paper can be used for other purpose than writing.
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纸水葫芦的力学性能研究
纸张的广泛使用和促进森林生态系统的保护,以树木为原料造纸。本文主要研究纸张的实现及其力学性能。水葫芦(Eichornia crassipes)是一种生长速度很高的水生植物,通常覆盖在河流表面,对环境和其他生物有影响。本课题以水葫芦为原料,经过切割、研磨、精制、成型、漂白、干燥等工艺,得到了不同的纸张。在纸张的实现过程中,我们采用过氧化氢进行漂白工艺,得到白纸(Bleached paper)。我们这里有漂白纸和未漂白纸。在实验条件下成功地制备了论文。研究了每种材料的力学性能。漂白和未漂白的水葫芦纸株密度分别为21.68 g/m3和26.37 g/m3,平均拉伸断裂应力分别为1.337MPa和0.405MPa,杨氏模量分别为36.277 mpa和17.604MPa,断裂伸长率分别为4.744%和2.879%,平均含水率分别为4.82% ~ 9.59%和3.57% ~ 6.62%。因此,具有一定不同强度范围的未漂白纸可考虑作为包装、苗盆、覆盖或绝缘材料提前应用。利用水葫芦的根和叶作为生物质,水葫芦的结构笨重。该研究得出结论,水葫芦是一种潜在的造纸纤维,特别是在水葫芦丰富的地区,但未漂白的纸的抗拉强度高于漂白后的纸。这样纸就可以用于写作以外的其他目的。
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