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Fractionation and characterization of lignin from steam-exploded corn stalk by sequential dissolution in ethanol-water solvent

机译:顺序溶解于乙醇-水溶剂中的蒸汽爆破玉米秸秆中木质素的分离和表征

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Due to the intricate process of traditional lignin fractionation by multi-organic solvent extraction, single solvent system consisted of ethanol and water was established in this work to fractionate and purify lignin from steam-exploded corn stalk. Three alkali-extracted lignin fractions (Fraction 1, 2 and 3) were obtained by sequential dissolution and subsequently characterized by the following analysis technologies: GPC, HPLC, UV, FTIR and ~1H NMR spectra and thermogravimetric analysis. The GPC analysis showed the molecular weight of lignin fractions increased gradually from Fraction 1 to 3 and their polydispersity decreased dramatically compared with the unfractionated lignin. Besides, the purity of lignin Fraction 1 and 2 increased from 87.57% to 93.12% and 91.59% respectively due to the polysaccharide elimination effect of ethanol solutions. The subsequent characterization indicated that the content of phenolic acids decreased considerably from 3.379% to 0.095% with increasing molecular weight whereas the guaiacyl unit content and thermal stability increased. Meanwhile, the results of solubility determination revealed that the solubility of lignin enhanced when the molecular weight decreased and the water content of mixed solvent increased, which successfully elucidated the fractionation mechanism. Since ethanol is the only organic solvent used in the process, this study provides a relatively simple and efficient route to fractionate lignin from steam-exploded corn stalk for the subsequent utilization to produce stable and high-value lignin products.
机译:由于传统的木质素通过多有机溶剂萃取的复杂过程,在这项工作中建立了由乙醇和水组成的单一溶剂系统,以从蒸汽爆破的玉米秸秆中分离和纯化木质素。通过顺序溶解获得三个碱提取的木质素级分(级分1、2和3),然后通过以下分析技术进行了表征:GPC,HPLC,UV,FTIR和〜1H NMR光谱以及热重分析。 GPC分析表明,与未分级木质素相比,木质素级分的分子量从级分1逐渐增加到级分3,其多分散性急剧下降。此外,由于乙醇溶液的多糖消除作用,木质素级分1和2的纯度分别从87.57%增加到93.12%和91.59%。随后的表征表明,随着分子量的增加,酚酸的含量从3.379%显着降低至0.095%,而愈创木酰基单元的含量和热稳定性则提高。同时,溶解度测定的结果表明,木质素的溶解度随着分子量的降低和混合溶剂中水含量的增加而增加,从而成功地阐明了分离机理。由于乙醇是该过程中使用的唯一有机溶剂,因此本研究提供了一种相对简单有效的方法,可从蒸汽爆破的玉米秸秆中分离木质素,随后用于生产稳定和高价值的木质素产品。

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