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Continuous catalytic depolymerisation and conversion of industrial kraft lignin into low-molecular-weight aromatics

机译:连续催化解聚和将工业牛皮纸木质素转化为低分子量芳烃

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摘要

Base-catalysed depolymerisation of lignin using sodium hydroxide has been shown to be an effective approach towards exploiting industrial (technical) lignins within the pulp and paper industry. In the present work, a pine kraft lignin (Indulin AT) which is precipitated from black liquor of linerboard-grade pulp was depolymerised via base catalysis to produce low-molecular-mass aromatics without any organic solvent/capping agent in a continuous-flow reactor setup for the first time. The catalytic conversion of lignin was performed/screened at temperatures varying from 170 to 250 °C, using NaOH/lignin weight ratio ≈ 1 with 5 wt% lignin solids loadings for residence times of 1, 2 and 4 min, respectively, with comprehensive characterisation of substrate and produced reaction mixtures. The products were characterised using size exclusion chromatography (SEC), nuclear magnetic resonance spectroscopy (NMR) and supercritical fluid chromatography-diode array detector-tandem mass spectrometry (SFC-MS). The optimum operating conditions for such depolymerisation appeared to be at 240 °C and 30 h−1, yielding the highest concentration of low-molecular-weight phenolics below the coking point. It was also found that the depolymerised lignin products exhibited better chemical stability during long-term storage at lower temperatures (~ 4 °C).
机译:已经证明使用氢氧化钠的碱催化木质素解聚是在纸浆和造纸工业中开发工业(技术)木质素的有效方法。在目前的工作中,在连续流反应器中,通过碱催化使从挂面纸板级纸浆黑液中沉淀的松树牛皮纸浆木质素(Indulin AT)解聚,生成低分子量的芳烃,而无需任何有机溶剂/封端剂。首次设置。木质素的催化转化是在170至250°C的温度下进行/筛选的,使用NaOH /木质素重量比≈1,木质素固体负载量为5 wt%,停留时间分别为1、2和4分钟,具有全面的表征底物和产生的反应混合物。使用尺寸排阻色谱(SEC),核磁共振波谱(NMR)和超临界流体色谱-二极管阵列检测器-串联质谱(SFC-MS)对产品进行表征。此类解聚反应的最佳操作条件似乎是在240°C和30 h-1时,在低于焦化点的情况下产生最高浓度的低分子量酚类。还发现解聚的木质素产物在较低温度(〜4℃)下长期储存期间表现出更好的化学稳定性。

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