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Understanding the nature of bio-asphaltenes produced during hydrothermal liquefaction

机译:了解水热液化过程中产生的生物沥青的性质

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Asphaltenes, the heaviest and most polar components of crudes, are generally associated with considerable operational issues in refineries. In order to understand potential operational issues during upgrading/processing of bio-crudes, structural and thermal behaviour of asphaltenes derived from bio-crude (bio-asphaltenes) from hydrothermal liquefaction of food-waste and wood residues were compared with petroleum derived asphaltenes derived from bitumen. Structural analysis using nuclear magnetic resonance and elemental analysis revealed 7 aromatic rings per unit structure for bitumen asphaltenes, 4 for food-waste asphaltenes, and 3 for wood asphaltenes. The calculated molecular weight per unit structure followed the order: bitumen asphaltenes (589-636 g mol(-1)) food-waste derived asphaltenes (338-358 g mol(-1)) wood residue derived asphaltenes (268-274 g mol(-1)). The carbon residues using thermal gravimetric analysis (bitumen asphaltenes = 40%, bio-asphaltenes = 19-25%) and glass transition temperature (bitumen asphaltenes = 80 degrees C, bio-asphaltenes = 4-64 degrees C) followed the same order. These results indicate a very different structural and thermal behaviour for petroleum and bio-asphaltenes. (C) 2021 Published by Elsevier Ltd.
机译:沥青质,最重和最极性的丘陵部件通常与炼油厂的相当大的操作问题相关。为了理解在升级/加工过程中的潜在操作问题,与来自食物废物和木质残留物的水热液化衍生自生物粗(生物沥青)的结构和热行为与来自的石油衍生的沥青质进行比较沥青。使用核磁共振和元素分析的结构分析显示了沥青沥青质的7个芳香环,4用于食物废弃物沥青,3种木沥青。每单位结构计算的分子量下调序列:沥青沥青质(589-636g mol(-1))&食物废弃物衍生的沥青质(338-358g mol(-1))&木质残渣衍生的沥青质(268-274g mol(-1))。使用热重分析的碳残留物(沥青沥青= 40%,生物 - 沥青质= 19-25%)和玻璃化转变温度(沥青沥青质= 80℃,生物沥青质= 4-64℃)遵循相同的顺序。这些结果表明石油和生物沥青质的具有非常不同的结构和热行为。 (c)2021由elestvier有限公司出版

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