首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Fast pyrolysis of tannins from pine bark as a renewable source of catechols
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Fast pyrolysis of tannins from pine bark as a renewable source of catechols

机译:松树皮中单宁酸的快速热解作为邻苯二酚的可再生来源

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Fast pyrolysis of water-insoluble (W-I) tannins-mainly composed of condensed tannins-obtained from Pinus radiata bark methanol-water extraction was carried out in pursuit of a renewable source of high-value chemicals, in particular catechols. Micropyrolysis in an isothermal furnace unit (Py-GC-MS/FID) was performed between 450-600 degrees C. Catechin and W-I tannins were compared to establish thermal degradation behavior between this fraction and its representative monomer constituent. Additionally, W-I tannins were compared with typical sources of renewable phenols such as pine bark and organosolv-lignin in order to highlight its potential. Bench-scale experiments of W-I tannins were performed in a fluidized bed reactor between 400-600 degrees C to provide information related to yield and concentration of catechols.The Py-GC-MS/FID results showed that W-I tannins are prolific of catechol and 4-methylcatechol, similar to their most abundant monomer constituent catechin. However, W-I tannins are not only composed of condensed tannins and some substituted polycyclic aromatic hydrocarbons, triterpenes and carbohydrate-derived compounds were detected. The comparison of pyrolysis products among the renewable sources of phenols showed that W-I tannins yielded the highest relative content of catechols while guaiacols and carbohydrate-derived compounds predominated in the composition of lignin and bark products, respectively. The optimal pyrolysis-oil yield for bench scale assays (37 wt%) was found at 550 degrees C and maximum yield of both catechol (4.4 wt%) and 4-methylcatechol (2.3 wt%) were also obtained at 550 degrees C.
机译:为了寻求可再生的高价值化学品特别是儿茶酚的来源,对水不溶性单宁(主要由缩合单宁组成)进行了快速热解,这种单宁主要是由辐射松树皮的甲醇水萃取而得。在450-600摄氏度之间在等温炉装置(Py-GC-MS / FID)中进行微热解。将儿茶素和W-1单宁进行比较,以建立该馏分与其代表的单体成分之间的热降解行为。另外,将W-1单宁与可再生酚的典型来源如松树皮和有机溶剂-木质素进行了比较,以突出其潜力。在400-600摄氏度之间的流化床反应器中进行WI单宁的基准规模实验,以提供与邻苯二酚的收率和浓度有关的信息.Py-GC-MS / FID结果显示WI单宁多产于儿茶酚和4 -甲基邻苯二酚,类似于它们最丰富的单体成分儿茶素。然而,W-1单宁不仅由缩合的单宁组成,而且还检测到一些取代的多环芳烃,三萜和碳水化合物衍生的化合物。在可再生酚类中热解产物的比较表明,W-1丹宁酸的邻苯二酚含量最高,而愈创木酚和碳水化合物衍生的化合物分别占木质素和树皮产物的主要成分。在550摄氏度下发现了用于台式规模试验的最佳热解油产率(37 wt%),在550摄氏度下也获得了邻苯二酚(4.4 wt%)和4-甲基邻苯二酚(2.3 wt%)的最大产率。

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