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Approach to Renewable Lignocellulosic Biomass Film Directly from Bagasse

机译:直接从蔗渣中获取可再生木质纤维素生物质薄膜的方法

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Lignocellulosic biomass in the form of plant materials offers the most abundant renewable resource in replacing traditional fossil resources. In the present study, lignocellulosic biomass films were prepared directly from bagasse solutions in DMSO/LiCl without additional film-forming additives by coagulation either in an acetone/water (9/1, v/v) mixture or in water following a freezing treatment. The physicochemical properties of bagasse films were studied by FT-IR, UV/vis, SEM, XRD, and tensile testing. The films were semi-transparent with a yellow color and showed strong abilities in UV light blocking due to the presence of lignin. Relatively high mechanical strength comparable to cellulose-starch-lignin composite films was observed. The physical cross-link and the stress buffer of micropores formed in the freezing treatment resulted in enhanced mechanical strength of the film. The facile and environmentally friendly process creates a new strategy for converting abundant lignocellulosic materials to novel value-added bioproducts.
机译:植物材料形式的木质纤维素生物质为替代传统化石资源提供了最丰富的可再生资源。在本研究中,通过在蔗糖/水(9/1,v / v)混合物中或在冷冻处理后的水中进行混凝,直接由甘蔗渣溶液在DMSO / LiCl中直接制备木质纤维素生物质薄膜,而无需添加其他成膜添加剂。通过FT-IR,UV / vis,SEM,XRD和拉伸试验研究了甘蔗渣膜的理化性质。膜是半透明的,带有黄色,由于木质素的存在,显示出很强的阻挡紫外线的能力。观察到与纤维素-淀粉-木质素复合膜相当的较高机械强度。在冷冻处理中形成的物理交联和微孔的应力缓冲导致膜的机械强度提高。简便且环保的过程为将丰富的木质纤维素材料转化为新颖的增值生物产品创造了新的战略。

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