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首页> 外文期刊>Industrial Crops and Products >Multi-valorisation of giant reed (Arundo Donax L.) to give levulinic acid and valuable phenolic antioxidants
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Multi-valorisation of giant reed (Arundo Donax L.) to give levulinic acid and valuable phenolic antioxidants

机译:巨型芦苇(Arundo Donax L.)的多算法给予乙酰丙酸和有价值的酚醛抗氧化剂

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摘要

Up to now, on the industrial scale, the acid-catalysed hydrothermal conversion of lignocellulosic biomass has been targeted to the production of levulinic acid (LA), while the lignin fate has been neglected, and its use has been limited at most to the energy recovery. Now, an integrated investigation of the hydrothermal process for the synthesis of LA starting from giant reed (Arundo Donax L.) was studied taking into account the lignin phenol derivatives present in the liquid phase and in the solid hydrochar. The analysis of the hydrochar was carried out adopting coupled pyrolysis techniques, e.g. Py-GC/MS, TGA/FTIR, and EGA-MS, paying a special attention to the contribution of the evolved simple phenolics. The hydrochar washing fractions were analyzed for the total phenolic content (TPC) and antioxidant activity (AA), adopting TEAC, FRAP, and DPPH standard essays, comparing the antioxidant activities with those deriving from the starting LA-rich mother liquor. Two washing cycles allowed the complete recovery of the phenolic compounds of interest, leached from the porous hydrochar. Also the starting LA-rich liquor was of great interest for the same purpose, having the highest content of these compounds, which must be necessarily removed for the production of the commercial pure LA. Promising antioxidant properties were ascertained for the mother liquor and the hydrochar washings, obtaining good linear correlations between total phenolic compounds (TPC) and antioxidant capacity (TEAC, FRAP, and DPPH). This multi-valorisation approach contributes to improving the sustainability of the entire LA process and shifts the attention towards the antioxidants, new niche bioproducts of great interest, which add significant economic value to the overall Biorefinery of the lignocellulosic biomass.
机译:截至目前,在工业规模上,木质纤维素生物量的酸性水热转化已经靶向乙酰丙酸(LA)的生产,而木质素命运被忽视,其使用最多限于能量恢复。现在,研究了从巨芦苇(Arundo Donax L.)开始合成La的水热过程的整合研究,考虑到液相和固体氢乙酸中存在的木质素酚衍生物。采用偶联的热解技术进行氢乙酸的分析,例如偶联的热解技术。 PY-GC / MS,TGA / FTIR和EGA-MS,特别注意进化简单酚类的贡献。分析氢淀粉的总酚类含量(TPC)和抗氧化活性(AA),采用茶叶,FRAP和DPPH标准散文,将抗氧化活性与来自起始的La-Rich的母液进行比较。两个洗涤循环允许完全恢复酚类化合物的感兴趣的化合物,从多孔氢乙酰浸出。此外,富含La-Rich的液体对具有最高含量的相同目的具有极大的兴趣,这些化合物的含量必须必须除去商业纯LA的生产。对母液和羟基丙酸洗涤确定有前途的抗氧化性能,得到总酚类化合物(TPC)和抗氧化能力(TEAC,FRAP和DPPH)之间的良好线性相关性。这种多算法方法有助于提高整个洛杉矶工艺的可持续性,并将注意力转移到抗氧化剂,新的利益生物化学效应,这增加了对木质纤维素生物质的总体生物术语的显着经济价值。

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