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Crop residues used as lignocellulose materials for particleboards formulation

机译:用于刨花板配方的种植残留物用作木质纤维素材料

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摘要

Efforts to reduce pressure on use of wood in particleboard formulation have included the use of non-wood materials such as crop residues. Physical and mechanical properties are determined by the number of the hydroxyl (-OH) groups. Hydroxyl (-OH) groups attracts water molecules through hydrogen bonding affecting water absorption (WA) and thickness swelling (TS). WA and TS affect curing process of adhesive. Curing process of adhesives affects the mechanical characteristics of formulated particleboards. These challenges have been acted upon continuously through research. This review paper presents crop residues used as alternative lignocellulose material source in particleboard formulation and the various advances that have been made to improve on the properties of the resultant particleboards. Improvement over time of the non-wood material in composite materials focusses on increasing water resistance and compatibility between lignocellulose and binder. Crop residues-based are used in making medium and low density particleboards. These boards have shown good mechanical characteristics which include modulus of rupture (MOR), modulus of elasticity (MOE) and internal bonding (IB). MOR, MOE and IB have over time been improved by enhancing chemical compatibility of lignocellulose material and the binders. Water absorption and thickness swelling remain challenge. This review paper further explored various methods of improving water absorption and thickness swelling of crop-residue based particleboards.
机译:减少刨花板配方使用木材压力的努力包括使用非木材如作物残留物。物理和机械性能由羟基(-OH)基团的数量决定。羟基(-OH)基团通过影响吸水率(WA)和厚度溶胀(TS)的氢键吸收水分子。 WA和TS影响粘合剂的固化过程。粘合剂的固化过程影响配制刨花板的机械特性。这些挑战已经通过研究不断采取行动。该综述纸张呈现作为刨花板配方中的替代木质纤维素材料源的作物残留物,并对所得刨花板的性质进行改善的各种进展。复合材料中非木材的改善侧重于木质纤维素和粘合剂之间的耐水性和相容性。作物残留物用于制备培养基和低密度的刨花板。这些板显示出良好的机械特性,包括破裂(MOR),弹性模量(MOE)和内键合(IB)。通过提高木质纤维素材料和粘合剂的化学相容性,MORE和IB随着时间的推移而得到改善。吸水和厚度肿胀保持挑战。本文进一步探讨了种类基于作物基础的刨花板的各种改善吸水和厚度肿胀的各种方法。

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