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Non-catalytic liquefaction of bitumen with hydrothermal/solvothermal process

机译:水热/溶剂热法沥青的非催化液化

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Bitumen was mainly obtained as a residue of the petroleum refining process. In fact, bitumen is of great importance to the chemical industry because of the wide variety of special properties, which has favored the development of a wide field of applications. The development of process has been proposed to recover chemical resources from bitumen that can accomplish the destruction of the bitumen into harmless to produce useful compounds. In this work, an upgrading process for bitumen and its model compounds were investigated in supercritical water and solvothermal process by using batch reactor. It was well known that water at the hydrothermal condition is considered a promising and an environmentally acceptable solvent for a wide variety of chemical reactions such as organic syntheses and decomposition of hazardous wastes into harmless compounds. The experiments were conducted at temperature of 673 K and at various reaction pressures. Instead of water, benzyl alcohol (BZA) was used as a solvent in solvothermal process at temperatures of 523-573 K. The chemical species in the liquid products were analyzed by gas chromatography mass spectrometry. The effect of pressure and reaction time on the decomposition process was presented. Ultimate analysis of solid residue was also conducted using a CHN analyzer. Moreover, this method could become an efficient method for upgrading bitumen into harmless and high yield of valuable chemical intermediates on the basis of the experimental results.
机译:沥青主要是作为石油精炼过程的残余物而获得的。实际上,由于多种特殊性质,沥青在化学工业中非常重要,这有利于广泛应用领域的发展。已经提出了开发方法来从沥青中回收化学资源,该化学资源可以完成将沥青破坏成无害的生产有用化合物的过程。在这项工作中,使用间歇反应器研究了超临界水和溶剂热法中沥青及其模型化合物的提质工艺。众所周知,处于水热条件下的水被认为是用于多种化学反应(例如有机合成和将危险废物分解成无害化合物)的有前途的和环境可接受的溶剂。实验在673 K的温度和不同的反应压力下进行。溶剂热法在523-573 K的温度下使用苄醇(BZA)代替溶剂。通过气相色谱质谱法分析了液体产物中的化学物质。提出了压力和反应时间对分解过程的影响。固体残留物的最终分析也使用CHN分析仪进行。而且,根据实验结果,该方法可以成为将沥青升级为无害且高收率的有价值的化学中间体的有效方法。

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