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首页> 外文期刊>Fuel Processing Technology >Effects of temperature on the hydrotreatment behaviour of pyrolysis bio-oil and coke formation in a continuous hydrotreatment reactor
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Effects of temperature on the hydrotreatment behaviour of pyrolysis bio-oil and coke formation in a continuous hydrotreatment reactor

机译:温度对连续加氢反应器内热解生物油加氢处理行为及焦炭形成的影响

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摘要

In this study, we investigated the effects of temperature on the hydrotreatment behaviour of bio-oil from the pyrolysis of mallee wood with a special focus on coke formation. The experiments were carried out in a continuous hydrotreatment reactor with pre-sulphided NiMo/gamma-Al2O3 as the main catalyst over a nominal temperature range from 375 to 450 degrees C while the outlet pressure was set at 70 bar. GC-MS, TGA, UV-Fluorescence spectroscopy, elemental analysis and FT-Raman spectroscopy were used to characterise the reaction products and spent catalyst. While an upstream Pd/C catalyst bed had some effects of stabilising bio-oil, it was insufficient to ensure long-term operation under all conditions. Aromatic ring growth and polymerisation could take place continuously even under the overall dominating hydrotreatment/hydrocracking conditions. Temperature drastically affected the hydrotreatment product quality and coke formation. Increasing temperature favours the polymerisation for the formation of coke. At high temperature (e.g. 450 degrees C), the coke formation could be so severe that the reactor was blocked before the heavy liquid could reach the end of the reactor. The coke formed mainly from heavy liquid showed very different properties (different aromatic ring systems) from the coke formed mainly from the light species. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们研究了温度对木槌木材热解过程中生物油的加氢处理行为的影响,特别是焦炭的形成。在连续加氢处理反应器中进行实验,该反应器以预硫化的NiMo /γ-Al2O3作为主要催化剂,在375至450摄氏度的标称温度范围内,出口压力设定为70 bar。使用GC-MS,TGA,紫外荧光光谱,元素分析和FT-拉曼光谱来表征反应产物和废催化剂。虽然上游的Pd / C催化剂床具有稳定生物油的作用,但不足以确保在所有条件下都能长期运行。甚至在整个主要的加氢处理/加氢裂化条件下,芳族环的生长和聚合也可以连续发生。温度极大地影响了加氢处理产品的质量和焦炭的形成。温度升高有利于聚合以形成焦炭。在高温(例如450℃)下,焦炭的形成可能非常严重,以致在重液体到达反应器的末端之前反应器被堵塞。主要由重质液体形成的焦炭与主要由轻质物质形成的焦炭显示出非常不同的性能(不同的芳族环系)。 (C)2016 Elsevier B.V.保留所有权利。

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