首页> 外文期刊>Journal of Agricultural and Food Chemistry >Characterization of Miscanthus giganteus Lignin Isolated by Ethanol Organosolv Process under Reflux Condition
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Characterization of Miscanthus giganteus Lignin Isolated by Ethanol Organosolv Process under Reflux Condition

机译:回流条件下乙醇有机溶剂法分离的芒草木质素的表征

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Miscanthus giganteus lignin was extracted by an organosolv process under reflux conditions (4 h) with varying concentrations of ethanol (65%, 75%, 85%, 95%) and 0.2 M hydrochloric acid as catalyst. The resulting lignin was extensively characterized by size exclusion chromatography (SEC), Fourier-transform infrared spectroscopy (FTIR), gas chromatography— mass spectrometry (GC/MS), two-dimensional nuclear magnetic resonance spectroscopy (2D-NMR), and chemical analysis (residual sugars, Klason lignin, ash). The predominant linkage units present were β-O-4' (82—84%), resinol (6—7%), and phenylcoumaran (10—11%). The 65% ethanol solvent system gave the lowest lignin yield (14% of starting biomass) compared to 29—32% of the other systems. Increasing ethanol concentration resulted in decreasing carbohydrate content of the lignins (3.6— 1.1%), a higher solubility in tetrahydrofuran (THF), a slight reduction of the molecular weight (M_w 2.72—2.25 KDa), an increasing α-ethoxylation, and an increase in ethoxylated phenylpropenoic compounds (p-coumaric and ferulic acid), but the S/G ratio of the monolignols (0.63, GC/MS) and Klason lignin content (86—88%) were unaffected. An extraction method for these ethyl-esterified phenylpropenoids and smaller molecular weight lignin compounds was developed. The effect of reaction time (2, 4, and 8 h) was investigated for the 95% ethanol solvent system. Besides increased lignin yield (13—43%), a slight increase in M_w (2.21—2.38 kDa) and S/G ratio (0.53—0.68, GC-MS) was observed. Consecutive extractions suggested that, these changes were not from lignin modifications (e.g., condensations) but rather from extraction of lignin of different composition. The results were compared to similar solvent systems with 9S% acetone and 95% dioxane.
机译:在回流条件(4 h)下,通过有机溶剂法用不同浓度的乙醇(65%,75%,85%,95%)和0.2 M盐酸作为催化剂萃取芒草(Miscanthus giganteus)木质素。所得的木质素通过尺寸排阻色谱(SEC),傅立叶变换红外光谱(FTIR),气相色谱-质谱(GC / MS),二维核磁共振谱(2D-NMR)和化学分析进行了广泛表征(残糖,克拉森木质素,灰分)。存在的主要连接单元是β-O-4'(82-84%),树脂醇(6-7%)和苯香豆素(10-11%)。与其他系统的29-32%相比,65%乙醇溶剂系统的木质素收率最低(占起始生物量的14%)。乙醇浓度的增加导致木质素的碳水化合物含量降低(3.6- 1.1%),在四氢呋喃(THF)中的溶解度更高,分子量略微降低(M_w 2.72-2.25 KDa),α-乙氧基化增加以及乙氧基化苯丙酸化合物(对香豆酸和阿魏酸)的含量增加,但单木酚的S / G比(0.63,GC / MS)和Klason木质素含量(86-88%)不受影响。开发了这些乙基酯化的苯基丙烯醛和较小分子量的木质素化合物的提取方法。对于95%乙醇溶剂系统,研究了反应时间(2、4和8 h)的影响。除了增加的木质素收率(13-43%),还观察到M_w(2.21-2.38 kDa)和S / G比(0.53-0.68,GC-MS)略有增加。连续提取表明,这些变化不是来自木质素修饰(例如缩合),而是来自具有不同组成的木质素的提取。将结果与使用9S%丙酮和95%二恶烷的类似溶剂系统进行了比较。

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