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首页> 外文期刊>Advances in materials science and engineering >Characterization of Prototype Formulated Particleboards from Agroindustrial Lignocellulose Biomass Bonded with Chemically Modified Cassava Peel Starch
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Characterization of Prototype Formulated Particleboards from Agroindustrial Lignocellulose Biomass Bonded with Chemically Modified Cassava Peel Starch

机译:用化学改性木薯剥离淀粉键合的农业工业木质纤维素生物质的原型配制刨花板的表征

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Conventional methods of making particleboards utilize wood chips. This has resulted in a decrease in the tree cover due to the increase in wood demand. The effect has been climatic change. Wood is bound using phenol formaldehyde resin. Because of the decrease in the forest cover, alternative lignocellulose materials are required. In this study, lignocellulose materials used include sugarcane bagasse, maize stock, and rice husks. The cassava-starch mix with borax was used as a binder in particleboard formulation. The lignin content was determined, and its effect on properties of boards was investigated. The resultant composite material was molded at a pressure of 6.5?N/mm2 and at 30°C. The resultant particleboards had mean densities ranging from 0.604 to 0.611?g/cm3. The modulus of elasticity ranged from 2364.2?N/mm2 to 3329.93?N/mm2, modulus of rupture ranged from 13.55?N/mm2 to 14.83?N/mm2, and internal bonding ranged from 1.613?N/mm2 to 2.370?N/mm2. The performance of the board was dependent on the lignocellulose material used. Fourier transform infrared spectroscopy analysis showed that main chemical bonding in the particleboard resulted from esterification of –COOH from lignocellulose and OH- from starch. The particleboards formulated were found to be of low-density-fibre standard used in a similar manner to the conventional low-density particleboards.
机译:制造刨花板的常规方法利用木屑。由于木材需求的增加,这导致树木覆盖率下降。效果一直是气候变化。木材是使用苯酚甲醛树脂的束缚。由于森林覆盖物减少,需要替代的木质纤维素材料。在本研究中,使用的木质纤维素材料包括甘蔗甘蔗渣,玉米股和稻壳。用硼砂混合物用作刨花板配方中的粘合剂。确定了木质素含量,研究了其对板性质的影响。将所得复合材料以6.5·n / mm 2和30℃的压力模塑。所得刨花板的平均密度范围为0.604至0.611Ω·克/厘米。弹性模量范围为2364.2〜n / mm 2至3329.93Ω·n / mm2,破裂模量范围为13.55Ω·n / mm2至14.83Ω·n / mm 2,内部键合范围为1.613Ω·n / mm2至2.370?n / mm2。板的性能取决于使用的木质纤维素材料。傅里叶变换红外光谱分析显示,刨花板中的主要化学键合由木质纤维素和OH-从淀粉的酯化酯化产生。被配制的刨花板被发现为以与传统的低密度刨花板类似的方式使用的低密度 - 纤维标准。

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