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Extraction and characterization of lignin from corncob residue after acid-catalyzed steam explosion pretreatment

机译:酸催化蒸汽爆炸预处理后玉米螟残留物的木质素提取与表征

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Corncob residue after acid catalyzed steam explosion (CRSE) is rich in cellulose and lignin. However, the structure of the lignin present in the CRSE has not been studied in detail and this hinders its application. An enzymatic mild acidolysis lignin (EMAL) extraction is adopted to process the CRSE where the extraction conditions are modified to improve lignin recovery and purity. Extraction severity factor is calculated and correlations between it and lignin recovery, lignin purity and total phenolic groups are evaluated. The best extraction condition produces lignin with a purity of 99.0% and a yield of 57.3%. A comparative study between lignin samples extracted under the best condition from the CRSE and untreated corncob (CC) is conducted. The structures of extracted lignin samples are investigated by using P-31 NMR, 2D-HSQC NMR, FTIR and GPC. Although SE pretreatment caused degradation of lignin, the abundance per 100 aromatic units of beta-O-4' linkages is 46.0, which is higher than most technical lignins. The molecular weight of CRSE EMAL is found to be higher than that of CC EMAL due to condensation reactions. Antioxidant property of CC EMAL and CRSE EMAL is measured and compared. The data shows that CRSE EMAL possesses better antioxidant activity (IC50 = 128 mu g/mL) than CC EMAL (IC50 = 238 mu g/mL), which makes CRSE EMAL an ideal additive for polymer composites.
机译:酸催化蒸汽爆炸(CRSE)纤维素和木质素中的玉米绒残留物。然而,在CRSE中存在的木质素的结构尚未详细研究,并且这阻碍了其应用。采用酶滑酸性酸性木质素(EmAL)提取来处理修饰提取条件以改善木质素回收和纯度的CRSE。计算提取严重程度因子,并评估其与木质素回收率之间的相关性,木质素纯度和总酚醛基团。最好的提取条件产生纯度为99.0%的木质素,产率为57.3%。对来自CRSE和未处理玉米浦(CC)的最佳状况提取的木质素样品之间的比较研究。使用P-31 NMR,2D-HSQC NMR,FTIR和GPC研究提取的木质素样品的结构。虽然SE预处理引起木质素的降解,但每100个芳香族单位的β-O-4'联系的丰度为46.0,其高于大多数技术木质素。由于缩合反应,发现Crse Emal的分子量高于CC Emal的分子量。测量并比较CC Emal和Crse Emal的抗氧化性能。数据显示Crse Emal具有比CC Emal(IC50 =238μg/ ml)具有更好的抗氧化活性(IC50 =128μg/ ml),这使得CRSE Emal成为聚合物复合材料的理想添加剂。

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