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Importance of hydrogen and bio-oil inlet temperature during the hydrotreatment of bio-oil

机译:生物油加氢处理过程中氢气和生物油入口温度的重要性

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摘要

This paper reports the effects of hydrogen and bio-oil inlet temperature on the coke formation and product distribution during the hydrotreatment of bio-oil. A bench scale continuous hydrotreatment fixed-bed reactor setup was used with pre-sulphided NiMo/gamma-Al2O3 as the catalyst. The temperature of hot fluidised sand bath in which the hydrotreatment reactor was immersed was set at 390 degrees C while the pressure at the reactor exit was kept at around 70 bar. An LHSV of 1 h(-1) (on the basis of organics in the bio-oil feed) was used. Our results show that the presence of hot hydrogen in the injection point of bio-oil to the reactor reduced the coke formation and reactor blockage for prolonged catalyst activity. This was due to the enhanced cracking and minimised polymerisation of bio-oil fragments when hot hydrogen was used to heat and activate the catalyst at the injection point. Moreover, lighter products with less coking propensity and smaller aromatic ring systems were formed when:the injection point was maintained at a higher temperature with the use of hot hydrogen. These results indicate that the coke formation during hydrotreatment is at least partly because of the low heating up of the bio-oil and the resulting bond breakage not being matched by the supply of active hydrogen from the catalyst. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文报道了氢和生物油入口温度对生物油加氢处理过程中焦炭形成和产物分布的影响。使用台式规模的连续加氢处理固定床反应器,将预硫化的NiMo /γ-Al2O3用作催化剂。将加氢处理反应器浸入其中的热流化砂浴的温度设定为390℃,同时将反应器出口的压力保持在70 bar左右。 LHSV为1 h(-1)(基于生物油进料中的有机物)。我们的结果表明,在生物油注入反应器的注入点中存在热氢,可以减少焦炭的形成和反应器的堵塞,从而延长了催化剂的活性。这是由于当使用热氢在注入点加热和活化催化剂时,生物油碎片的裂化增强和聚合减至最少。而且,在以下情况下,形成了较轻的产物,其具有较低的焦化倾向和较小的芳环体系:通过使用热氢将注入点保持在较高的温度。这些结果表明,加氢处理期间的焦炭形成至少部分是由于生物油的低升温,并且所产生的键断裂与催化剂的活性氢供应不匹配。 (C)2016 Elsevier B.V.保留所有权利。

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