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Ionic liquid pretreatment at high solids loading: A clean approach for fabrication of renewable resource based particulate composites

机译:高固体的离子液体预处理负荷:一种清洁方法,用于制造可再生资源基颗粒复合材料

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Recently, the concept of high solids loading in ionic liquid (IL) based pretreatment of lignocellulosic biomass has gained numerous attention due to significant economic, environmental, and sustainability benefits. The objective of the present work was to investigate the impact of ILs pretreatment of lignocellulosic oil palm frond (OPF) biomass at high solids loading on the mechanical and thermal properties of the composite panels. The process combines the pretreatment of OPF particles with ILs [bmim][Cl] (1-butyl-3-methylimidazolium chloride) and [emim][OAc] (1-ethyl-3-methylimidazolium acetate) followed by IL recovery by rinsing with acetone-water mixture prior to mixing of OPF particles with polymer binder to fabricate compression-molded composite panels. Untreated and treated OPF particles were characterized by scanning electron microscopy, X-ray diffraction, thermogravimetric analysis, and chemical composition analysis. Further, the effect of ILs pretreatment on kinetics of thermal degradation of biocomposites was evaluated by activation energy approach. Maximal flexural strength, modulus, and strain energy density (SED) of 25 MPa, 1,928 MPa, and 0.48 MJ/m(3), respectively, were found for IL [emim][OAc] treated composite. Besides, thermal properties of IL treated composites were also improved. Present study could be a significant step toward practical IL pretreatment strategies for manufacturing of lignocellulosic based composite materials. POLYM. COMPOS., 39:1994-2003, 2018. (c) 2016 Society of Plastics Engineers
机译:最近,由于显着的经济,环境和可持续性益处,基于离子液体(IL)的离子液体(IL)的预处理的高固体载荷的概念在很大程度上受到了许多关注。本作工作的目的是探讨ILS预处理木质纤维素油棕榈叶(OPF)生物质在复合板的机械和热性能的高固体载荷下的影响。该方法将OPF颗粒与ILS [Bmim] [Cl](1-丁基-3-甲基咪唑氯化铵)和[eAM] [OAC](1-乙基-3-甲基咪唑鎓乙酸钙)进行预处理,然后通过漂洗IL恢复丙酮 - 水混合物在用聚合物粘合剂混合OPF颗粒之前制造压缩模塑复合板。通过扫描电子显微镜,X射线衍射,热重分析和化学成分分析,表征了未处理和处理的OPF颗粒。此外,通过激活能量方法评价ILS对生物复合材料热劣化动力学进行预处理的影响。分别为IL [eMIM] [OAC]处理的复合材料分别为25MPa,1,928MPa和0.48mJ / m(3)的最大抗弯强度,模量和应变能量密度(SED)。此外,IL处理复合材料的热性能也得到改善。目前的研究对于实际IL的制造基于木质纤维素的复合材料的实际IL预处理策略可能是一项重要的一步。聚合物。 Compos。,39:1994-2003,2018。(c)2016年塑料工程师协会

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