首页> 外文期刊>Journal of Polymers and the Environment >Improved Chemical Reactivity of Lignocellulose from High Solids Content Micro-fibrillation by Twin-screw Extrusion
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Improved Chemical Reactivity of Lignocellulose from High Solids Content Micro-fibrillation by Twin-screw Extrusion

机译:双螺杆挤出改善高固含量微纤化木质纤维素的化学反应性

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摘要

The low reactivity of lignocellulose limits the effective chemical conversion of lignocellulose biomass into functional bioproducts. Mechanical micro-fibrillation treatment can improve the chemical accessibility of lignocellulose but usually has limited productivity by the low processing solids content. The presented work demonstrates effective micro-fibrillation of lignocellulose at high solids content up to 60wt% can be achieved by twin-screw extrusion. Morphological characterizations of the extruded wood pulp lignocellulose show the degree of micro-fibrillation is enhanced by operating at higher solids content. The lignocellulose treated at 60wt% solids content presents 2.1 and 4.8 times higher water retention capacity and specific surface area, respectively, than the original material. Acetylation results show the twin-screw extrusion pre-treatment can significantly accelerate the chemical modification of lignocellulose by 50%. This high productivity method for micro-fibrillating lignocellulose should be of great interest to the bioplastics industry.
机译:木质纤维素的低反应性限制了木质纤维素生物质向功能性生物产品的有效化学转化。机械微纤化处理可以改善木质纤维素的化学可及性,但通常由于处理固体含量低而生产率有限。提出的工作表明,通过双螺杆挤出可实现高达60wt%的高固含量木质纤维素纤维的有效微纤化。挤出的木浆木质纤维素的形态表征表明,通过在较高的固体含量下操作,微纤化程度得到了增强。以60wt%的固含量处理的木质纤维素的保水量和比表面积分别比原始材料高2.1倍和4.8倍。乙酰化的结果表明,双螺杆挤压预处理可以显着加速木质纤维素的化学改性50%。这种用于微纤化木质纤维素的高生产率方法应该对生物塑料行业非常感兴趣。

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