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Co-processing of hydrothermal liquefaction algal bio-oil and petroleum feedstock to fuel-like hydrocarbons via fluid catalytic cracking

机译:通过流体催化裂化将水热液化藻类生物油和石油原料的加工加工燃料烃

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摘要

In order to assess the utility of fluid catalytic cracking (FCC) for upgrading bio-oils derived from the hydro thermal liquefaction (HTL) of microalgae, 10 wt% HTL algae bio-oil was blended with heavy vacuum gas oil (HVGO) and co-processed in a Short Contact Time Microactivity unit. Compared to pure HVGO, addition of 10 wt% HTL algae bio-oil caused a modest decrease in conversion at all catalyst-to-oil ratios, with marginally increased catalyst coking being observed for the blended feed. The resulting liquid products contained a higher percentage of decant oil (DCO) and a lower percentage of gasoline than those obtained when HVGO alone was employed as feed, the amount of light cycle oil (LCO) being similar in both cases. Nearly complete heteroatom removal from the blended feed was observed, the extent of denitrogenation achieved being particularly note-worthy given that nitrogen-bearing compounds are much more abundant in algae-derived bio-oils than in HVGO. Overall, results indicated that while 10% bio-oil in HVGO would be economically unfavorable when compared to upgrading HVGO alone, it is nonetheless amenable to co-processing and may offer advantages over pyrolysis oils as an FCC feed. Finally, additional means to optimize the commercial application of this process are proposed based on techno-economic considerations.
机译:为了评估流体催化裂化(FCC)的效用来提高衍生自微藻水电热液化(HTL)的生物油,将10wt%HTL藻类生物油与重真空瓦(HVGO)和CO共混 - 在短接触时间微型间单位中进行处理。与纯HVGO相比,加入10wt%HTL藻类生物油导致所有催化剂 - 油比转化的温度下降,催化剂焦化的催化剂焦化率略微增加。所得液体产物含有较高百分比的滗析油(DCO)和汽油的较低百分比,当单独使用HVGO时获得的汽油较低,在两种情况下,光循环油(LCO)的量相似。观察到从混合饲料中除去的几乎完全的杂原子,所以尤其值得注意的脱氮的程度鉴于氮气衍生的生物油在HVGO中更丰富。总体而言,结果表明,与单独升级HVGO相比,HVGO中10%的生物油将在经济上是不利的,但是仍然可以加工,并且可以在作为FCC饲料上的热解油中提供优势。最后,基于技术经济考虑,提出了优化该过程的商业应用的额外方法。

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