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Upgrading of bio-oil and subsequent co-processing under FCC conditions for fuel production

机译:在FCC条件下升级生物油并进行后续共处理以生产燃料

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Hydrodeoxygenation of fast pyrolysis oil was first investigated on bimetallic catalysts (homogeneous Ni-Co alloy) supported on various carriers (HZSM-5, HBeta, HY and ZrO2). The bimetallic catalyst 10Ni10Co/ HZSM-5 outperformed the corresponding monometallic catalysts and Ni-Co supported on other support materials (HBeta, HY and ZrO2) with 39% deoxygenation degree and 37 wt% (wet basis) oil yield. 13C-NMR spectroscopy, GC, GC-MS, and elemental analysis revealed that the chemical composition of the product changed significantly and the higher heating value increased substantially from 23.6 to 33.3 MJ kg~(-1). The upgraded bio-oil was subsequently co-fed with a conventional feed (atmospheric distillation residue) using a commercial micro activity test setup under FCC conditions with an equilibrated commercial refinery catalyst to demonstrate a possible route for production of fuel from biomass. These tests showed similar conversion for both the conventional and co-processed feeds, whereas the latter case revealed a reduction of heavy cycle oil and a slight increase of gasoline, gas and light cycle oil yields.
机译:首先在负载于各种载体(HZSM-5,HBeta,HY和ZrO2)上的双金属催化剂(均相Ni-Co合金)上研究了快速热解油的加氢脱氧。双金属催化剂10Ni10Co / HZSM-5的性能优于相应的单金属催化剂和负载在其他载体材料(HBeta,HY和ZrO2)上的Ni-Co,脱氧度为39%,油产率为37%(湿基)。 13C-NMR,GC,GC-MS和元素分析表明,产物的化学组成发生了明显变化,较高的发热量从23.6 MJ kg〜(-1)大幅增加。随后,使用商业微活度测试装置在平衡催化裂化条件下使用平衡的商业炼油厂催化剂,将提纯后的生物油与常规进料(常压蒸馏残渣)共同进料,以证明从生物质生产燃料的可能途径。这些测试表明,常规进料和共同处理的进料具有相似的转化率,而后一种情况表明,重循环油减少了,汽油,天然气和轻循环油的产量略有增加。

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