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Characterization and degradation of lignin from steam explosion of pine and corn stalk of lignin: The role of superoxide ion and ozone

机译:木质素的松树和玉米秸秆蒸汽爆炸中木质素的表征和降解:超氧离子和臭氧的作用

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Steam explosion of corn stalk in the presence of 3% sulphuric acid at 200pC for 5min gave the highest recovery of lignin. Lignin has M w =2640 and M z =93,994. In the UV spectrum absorptions at =231 and 280nm were recorded. p#H NMR spectrum of lignin showed signals attributable to cinnamaldehyde units, guaiacyl units, and syringyl units. Syringyl and guaiacyl units are in 1:1 ratio. p#pdC NMR spectrum showed signals for guaiacyl, syringyl, and p-hydroxyphenyl units. The spectrum showed a prevalence of guaiacyl units. The p#pdC NMR spectrum is in agreement with the presence of cinnamic units. The same characterization was performed on lignin from pine. The irradiation of lignin from pine from steam explosion process in the presence of oxygen, in conditions described for the formation of superoxide ion, for different irradiation time was followed isolating the lignin and determining the average molecular weight. The experiments showed that, until 8h irradiation, M n decreases, while M w and M z increases. After 8h irradiation an inverse behaviour was observed, with an increase of M n and a decrease of M w and M z. These results are in agreement with an initial polymerization process followed by a photoinduced degradation. Ozonization was carried out in acetonitrile-methanol solution. The reaction showed a zero-order kinetics. After 50min the average molecular weight of lignin is the half. The reaction mixture was analyzed by using GC-MS. Oxalic acid was determined.
机译:在3%硫酸存在下于200pC蒸汽爆破玉米秸秆5分钟,木质素的回收率最高。木质素具有M w = 2640和M z = 93,994。在UV光谱中,记录了在= 231和280nm处的吸收。木质素的p#H NMR谱显示归因于肉桂醛单元,愈创木基单元和丁香基单元的信号。丁香基和愈创木基单元的比例为1:1。 p#pdC NMR光谱显示了愈创木基,丁香基和对羟基苯基单元的信号。光谱显示普遍存在愈创木单位。 p#pdC NMR光谱与肉桂酸酯单元的存在一致。对来自松树的木质素进行了相同的表征。在描述的形成超氧离子的条件下,在有氧存在的条件下,在有氧存在的条件下,对蒸汽爆炸过程中松木中的木质素进行辐照,以分离出木质素并确定平均分子量。实验表明,直到照射8h,M n降低,而M w和M z升高。照射8h后,观察到相反的行为,M n增加,M w和M z减少。这些结果与随后的光致降解的初始聚合过程一致。臭氧化在乙腈-甲醇溶液中进行。反应显示出零级动力学。 50分钟后,木质素的平均分子量为一半。通过使用GC-MS分析反应混合物。测定草酸。

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