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首页> 外文期刊>Holzforschung >Revisiting alkaline nitrobenzene oxidation: quantitative evaluation of biphenyl structures in cedar wood lignin (Cryptomeria japonica) by a modified nitrobenzene oxidation method
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Revisiting alkaline nitrobenzene oxidation: quantitative evaluation of biphenyl structures in cedar wood lignin (Cryptomeria japonica) by a modified nitrobenzene oxidation method

机译:再探碱性硝基苯氧化:通过改进的硝基苯氧化方法定量评估雪松木木质素(柳杉)中联苯的结构

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摘要

A modified alkaline nitrobenzene oxidation (NBO) method was developed to enable the analysis of the biphenyl structures of cedar wood lignin. The most essential point of the process is a modified work-up process in pyridine and a prolonged gas chromatography analysis of the silylated products. By applying this mean to cedar wood meal, a novel biphenyl product, dehydrovanillin-vanillic acid (1-carboxy-1'-formyl-4,4'-dihydroxy-3,3'-dimethoxy5,5'-biphenyl), was detected together with known products, dehydrodivanillin and dehydrodivanillic acid. The highest total yield of biphenyl products was detected when NBO was carried out for 2-4 h at 170 degrees C. The workup procedure was slightly modified so that the biphenyl products can be quantified. The NBO conversion rates of biphenyl linkages of lignin were also examined with a biphenyl-type lignin model compound, and this gave rise to 75% biphenyl-type NBO degradation products. Under the same condition, the total yield of vanillin and vanillic acid (VA) from a non-condensed-type beta-O-4 model compound was 89%. Because the latter did not exhibit any peak of the biphenyl products, it can be concluded that all the biphenyl products obtained by NBO (0.17 mmol g(-1)) were from the lignin of the native wood. It was calculated that at least 6.7 of 100 phenylpropanoid units of cedar lignin were involved in biphenyl structures even if the NBO conversion rate was not taken into consideration. The synthesis and analytical data of 11 lignin model compounds is described.
机译:开发了一种改良的碱性硝基苯氧化(NBO)方法,以分析雪松木木质素的联苯结构。该方法最重要的一点是对吡啶进行了改进的后处理过程,并延长了对甲硅烷基化产物的气相色谱分析的时间。通过将该平均值应用于雪松木粉中,检测到一种新型联苯产物脱氢香兰素-香兰酸(1-羧基-1'-甲酰基-4,4'-二羟基-3,3'-二甲氧基5,5'-联苯)与已知的产品,脱氢二香草醛和脱氢二香草酸。当在170摄氏度下进行NBO 2-4小时时,检测到联苯产品的最高总收率。对后处理程序进行了稍微修改,以便可以定量联苯产品。还用联苯型木质素模型化合物检查了木质素联苯键的NBO转化率,这产生了75%联苯型NBO降解产物。在相同条件下,非缩合型β-O-4模型化合物的香兰素和香草酸(VA)的总收率为89%。由于后者未显示联苯产物的任何峰,因此可以得出结论,NBO(0.17 mmol g(-1))获得的所有联苯产物均来自天然木材的木质素。据计算,即使不考虑NBO转化率,雪松木质素的100个苯基丙烷类单元中至少有6.7个参与联苯结构。描述了11种木质素模型化合物的合成和分析数据。

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