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Lignin extraction from Mediterranean agro-wastes: Impact of pretreatment conditions on lignin chemical structure and thermal degradation behavior

机译:从地中海农业废料中提取木质素:预处理条件对木质素化学结构和热降解行为的影响

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摘要

Three different types of Mediterranean, agro-industrial wastes (olive kernels, grape pomace/seeds, peach kernels), were subjected to two pretreatment processes, a chemical/organosolv and a physicochem-ical one. The organosolv process included lignocellulosic biomass treatment with formic acid/acetic acid/water (30/50/20, v/v%), for 3h at 107 °C, while the physicochemical method was conducted by immersing the biomass in a water/ethanol (8/92, v/v%), H2SO4 0.32 M, solvent and further exposing the slurry to microwave irradiation (maximum 250W) for 1/2h at 150°C Both processes were evaluated regarding the achieved delignification and the purity of the extracted lignins. The effect of the pretreatment processes onto the structure and thermal decomposition behavior of the extracted lignins was investigated via FT-IR and TGA analysis, respectively. The objective of the research work was to investigate potential valorization routes for these biomass agro-residues in the context of a biorefinery, focusing on lignin extraction. The pretreatment results showed that the obtained lignins, derived from both procedures, were of high purity (>82 wt%). Under the organosolv procedure, peach kernel delignification showed the maximum value (~16 wt%), while under microwave pretreatment, olive kernel delignification showed the maximum value (~35 wt%). Grape pomace/seeds appeared to be the most resistant in both treatments.
机译:对三种不同类型的地中海农业工业废料(橄榄果仁,葡萄渣/种子,桃仁)进行了两种预处理过程,一种化学/有机溶剂处理和一种物理化学处理。有机溶剂工艺包括在107°C下用甲酸/乙酸/水(30/50/20,v / v%)处理木质纤维素生物质3小时,而理化方法是将生物质浸入水/乙醇中进行(8/92,v / v%),H2SO4 0.32 M,溶剂,然后进一步在150°C下将浆液暴露于微波辐射(最大250W)中1 / 2h,以评估所获得的脱木素度和提取液的纯度。木质素。分别通过FT-IR和TGA分析研究了预处理工艺对提取的木质素的结构和热分解行为的影响。研究工作的目的是在生物炼油厂中研究这些生物质农业残留物的潜在增值途径,重点是木质素的提取。预处理结果表明,两种方法所得的木质素均具有较高的纯度(> 82 wt%)。在有机溶剂法中,桃仁脱木质素显示最大值(〜16 wt%),而在微波预处理下,橄榄仁脱木质素显示最大值(〜35 wt%)。在两种处理中,葡萄渣/种子似乎都具有最强的抵抗力。

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