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用于无粘结剂材料生产的木质纤维素生物质的水相预处理:双螺杆挤出配置和液固比的影响

Aqueous Pretreatment of Lignocellulosic Biomass for Binderless Material Production: Influence of Twin-Screw Extrusion Configuration and Liquid-to-Solid Ratio.

作者信息

Cavailles Julie, Vaca-Medina Guadalupe, Wu-Tiu-Yen Jenny, Labonne Laurent, Evon Philippe, Peydecastaing Jérôme, Pontalier Pierre-Yves

机构信息

Laboratoire de Chimie Agro-Industrielle (LCA), Université de Toulouse, INRAE, Toulouse INP, 31030 Toulouse, France.

eRcane, Sainte-Clotilde, 97490 La Réunion, France.

出版信息

Molecules. 2024 Jun 26;29(13):3020. doi: 10.3390/molecules29133020.

Abstract

This study was carried out to investigate the continuous aqueous pretreatment of sugarcane bagasse (SCB) through twin-screw extrusion for a new integrated full valorization, where the solid residue (extrudate) was used for the production of bio-based materials by thermocompression and the filtrate for the production of high-value-added molecules. Two configurations, with and without a filtration module, were tested and the influence of the SCB composition and structure on the properties of the materials were determined. The impact of the liquid-to-solid (L/S) ratio was studied (0.65-6.00) in relation to the material properties and the biomolecule extraction yield in the filtrate (with the filtration configuration). An L/S ratio of at least 1.25 was required to obtain a liquid filtrate, and increasing the L/S ratio to 2 increased the extraction yield to 11.5 g/kg of the inlet SCB. The extrudate obtained without filtration yielded materials with properties equivalent to those obtained with filtration for L/S ratios of at least 1.25. Since the molecule extraction process was limited, a configuration without filtration would make it possible to reduce water consumption in the process while obtaining high material properties. Under the filtration configuration, an L/S ratio of 2 was the best tradeoff between water consumption, extraction yield, and the material properties, which included 1485 kg/m density, 6.2 GPa flexural modulus, 51.2 MPa flexural strength, and a water absorption (WA) and thickness swelling (TS) of 37% and 44%, respectively, after 24 h of water immersion. The aqueous pretreatment by twin-screw extrusion allowed for the overall valorization of SCB, resulting in materials with significantly improved properties compared to those obtained with raw SCB due to fiber deconstruction.

摘要

本研究旨在通过双螺杆挤压对甘蔗渣(SCB)进行连续水相预处理,以实现新的综合全价值利用,其中固体残余物(挤出物)用于通过热压生产生物基材料,滤液用于生产高附加值分子。测试了两种配置,一种有过滤模块,一种没有过滤模块,并确定了SCB组成和结构对材料性能的影响。研究了液固(L/S)比(0.65 - 6.00)对材料性能和滤液中生物分子提取产率(有过滤配置时)的影响。至少需要1.25的L/S比才能获得液体滤液,将L/S比提高到2可使提取产率提高到11.5 g/kg进料SCB。对于至少1.25的L/S比,未经过滤获得的挤出物所产生材料的性能与经过滤获得的材料相当。由于分子提取过程有限,无过滤配置将有可能减少该过程中的水消耗,同时获得较高的材料性能。在过滤配置下,2的L/S比是水消耗、提取产率和材料性能之间的最佳权衡,这些性能包括1485 kg/m的密度、6.2 GPa的弯曲模量、51.2 MPa的弯曲强度,以及在水浸24小时后分别为37%和44%的吸水率(WA)和厚度膨胀率(TS)。通过双螺杆挤压进行的水相预处理实现了SCB的整体价值利用,与原始SCB相比,由于纤维解构,所得材料的性能有显著改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d26/11243502/7a4b72ecf312/molecules-29-03020-g001.jpg

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