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Structural Characterization and Antioxidant Activity Evaluation of Lignins from Rice Husk

机译:稻壳木质素的结构表征及抗氧化活性评价

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In recent years, lignin and extractives from herbaceous plants and crops are receiving increasing attention for their renewability and large annual biomass stock. It is worth noting that only a few studies deal with the chemical characterization of rice husk, a side product of one of the most important crops with regard to human nutrition. Thus, in this study lignin from rice husk was isolated and characterized. Two different extraction procedures were optimized and tested: acidolysis and alkaline enzymatic (AE). The different lignins isolated were fully characterized by mean's of gravimetric, chromatographic (GPC), and spectroscopic (~(31)P NMR, 2D-HSQC-NMR) analyses with the aim to compare yields, sample purity, and chemical properties, recognized as key parameters for future development. Notwithstanding the extraction procedure, the results highlighted that rice husk lignin is mainly formed by guaiacyl and p-hydroxyphenyl units. The acidolytic approach showed an appreciable lignin recovery and high purity, whereas the AE lignin sample was found to be rich in residual polysaccharides and oxidized functionalities. Moreover, different rice husk extracts, along with acidolysis lignin and AE lignin specimens, were assayed for their antioxidant activity by means of a DPPH radical scavenging test.
机译:近年来,来自草本植物和农作物的木质素和提取物因其可再生性和每年大量的生物量储备而受到越来越多的关注。值得注意的是,仅有少数研究涉及稻壳的化学特性,稻壳是人类营养方面最重要的作物之一的副产品。因此,在这项研究中,从稻壳中分离出木质素并对其进行了表征。优化和测试了两种不同的提取程序:酸解和碱性酶(AE)。分离出的不同木质素通过重量分析,色谱分析(GPC)和光谱分析(〜(31)P NMR,2D-HSQC-NMR)进行了全面表征,目的是比较产率,样品纯度和化学性质,未来发展的关键参数。尽管采用了提取工艺,结果仍表明稻壳木质素主要由愈创木基和对羟基苯基单元形成。酸解法显示出可观的木质素回收率和高纯度,而AE木质素样品富含残余多糖和氧化功能。此外,还通过DPPH自由基清除试验测定了不同的稻壳提取物以及酸解木质素和AE木质素样品的抗氧化活性。

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