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Bio-oil upgrading using dispersed unsupported MoS2 catalyst

机译:使用分散的无支持MOS2催化剂进行生物油升级

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Fast pyrolysis bio-oil upgrading using a dispersed unsupported MoS2 catalyst, generated in-situ, was evaluated in a continuous flow reactor system. Light cycle oil (LCO), a typical petroleum refinery stream rich in aromatics, was selected as a reaction medium and a bio-oil-in-LCO microemulsion was used as a feeding strategy to ensure bio-oil is well distributed in LCO and suppress bio-oil polymerization especially at the reactor inlet. An aqueous solution of ammonium paramolybdate tetrahydrate was emulsified in LCO to form a stable water-in-oil microemulsion to ensure that the inorganic catalyst precursor is evenly dispersed in the feed stream. The impact of catalyst-to-bio-oil ratio on product properties, yields, oxygen removal and coke formation was investigated. Biooil deoxygenation as high as 90% was achieved and hydrogen consumption ranged between 316 and 723 L H-2/L bio-oil within the investigated range of reaction conditions. The present work shows that an oil-phase product with significantly reduced oxygen content (0.56 wt%) and acidity (total acid number of 0.48 mg KOH/g) can be produced from bio-oils with minimal solids (coke) formation (0.8 to 1.8 g/100 g bio-oil). The experimental results demonstrate that the use of unsupported catalysts could provide a promising bio-oil upgrading alternative to conventional packed bed using supported catalysts, in which catalyst bed plugging and deactivation issues are commonly encountered.
机译:在连续流量反应器系统中评估使用原位产生的分散的无支持MOS2催化剂的快速热解生物油升级。光循环油(LCO)是富含芳烃的典型石油炼油流,作为反应介质,使用生物油in-LCO微乳液作为进料策略,以确保生物油在LCO中分布得很好并抑制Bio-油聚合,特别是在反应器入口处。在LCO中乳化氨基钼酸铵四水合物的水溶液,形成稳定的油内微乳液,以确保无机催化剂前体均匀地分散在进料流中。研究了催化剂 - 生物油比对产品性质,产率,氧去除和焦炭形成的影响。在研究的反应条件范围内实现了高达90%的生物液脱氧,并且在316和723LH-2 / L生物油之间进行了316和723LH-2 / L生物油。本作者表明,具有显着降低的氧含量(0.56wt%)和酸度(0.48mg KOH / g)的油相产物可以由具有最小固体(焦炭)形成的生物油(0.8至1.8克/ 100克生物油)。实验结果表明,使用不支持的催化剂的使用可以使用负载型催化剂提供常规填充床的有希望的生物油升级替代品,其中通常遇到催化剂床堵塞和失活问题。

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