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热压条件对源自木质纤维素生物质的生物基材料的性能和化学成分的影响

Influence of Thermocompression Conditions on the Properties and Chemical Composition of Bio-Based Materials Derived from Lignocellulosic Biomass.

作者信息

Cavailles Julie, Vaca-Medina Guadalupe, Wu-Tiu-Yen Jenny, 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

Materials (Basel). 2024 Apr 9;17(8):1713. doi: 10.3390/ma17081713.

Abstract

The aim of this study was to assess the influence of thermocompression conditions on lignocellulosic biomasses such as sugarcane bagasse (SCB) in the production of 100% binderless bio-based materials. Five parameters were investigated: pressure applied (7-102 MPa), molding temperature (60-240 °C), molding time (5-30 min), fiber/fine-particle ratio (0/100-100/0) and moisture content (0-20%). These parameters affected the properties and chemical composition of the materials. The density ranged from 1198 to 1507 kg/m, the flexural modulus from 0.9 to 6.9 GPa and the flexural strength at breaking point from 6.1 to 43.6 MPa. Water absorption (WA) and thickness swelling (TS) values ranged from 21% to 240% and from 9% to 208%, respectively. Higher mechanical properties were obtained using SCB with fine particles, low moisture content (4-10%) and high temperature (≥200 °C) and pressure (≥68 MPa), while water resistance was improved using more severe thermocompression conditions with the highest temperature (240 °C) and time (30 min) or a higher moisture content (≥12.5%). Correlations were noted between the mechanical properties and density, and the material obtained with only fine particles had the highest mechanical properties and density. Material obtained with a 30 min molding time had the lowest WA and TS due to internal chemical reorganization followed by hemicellulose hydrolysis into water-soluble extractables.

摘要

本研究的目的是评估热压条件对木质纤维素生物质(如甘蔗渣)在生产100%无粘结剂生物基材料中的影响。研究了五个参数:施加的压力(7-102MPa)、成型温度(60-240℃)、成型时间(5-30分钟)、纤维/细颗粒比(0/100-100/0)和水分含量(0-20%)。这些参数影响了材料的性能和化学成分。密度范围为1198至1507kg/m,弯曲模量为0.9至6.9GPa,断裂点处的弯曲强度为6.1至43.6MPa。吸水率(WA)和厚度膨胀率(TS)值分别为21%至240%和9%至208%。使用含有细颗粒、低水分含量(4-10%)以及高温(≥200℃)和高压(≥68MPa)的甘蔗渣可获得更高的机械性能,而使用温度最高(240℃)和时间最长(30分钟)或更高水分含量(≥12.5%)的更严格热压条件可提高耐水性。机械性能与密度之间存在相关性,仅由细颗粒制成的材料具有最高的机械性能和密度。由于内部化学重组以及半纤维素水解成水溶性可提取物,成型时间为30分钟的材料具有最低的吸水率和厚度膨胀率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fe8/11051507/8f5b95b5efa8/materials-17-01713-g001.jpg

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