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Effect of operating conditions on the coke nature and HZSM-5 catalysts deactivation in the transformation of crude bio-oil into hydrocarbons

机译:操作条件对原油生物油转化为烃类过程中焦炭性质和HZSM-5催化剂失活的影响

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A study has been carried out on the effect of operating conditions (bio-oil/methanol ratio in the feed, temperature) on the deactivation of HZSM-5 catalysts used in the production of hydrocarbons by catalytic conversion of crude bio-oil continuously fed into a fluidized bed reactor. The bio-oil to be fed into the reactor has previously been subjected to an on-line thermal transformation in which the pyrolytic lignin derivatives have been re-polymerized. The coke deposited on the catalyst has been studied using different analytical techniques (FTIR spectroscopy, MS/FTIR-TPO, ~(13)C CP-MAS NMR spectroscopy). The results evidence a direct relationship between coke deposition and deactivation and the concentration of bio-oil oxygenates in the reaction medium. Consequently, bio-oil conversion should be promoted in order to mitigate coke deposition. This is achieved using a HZSM-5 zeolite catalyst with a reduced SiO2/Al2O3 ratio and increasing reaction temperature and methanol/bio-oil ratio in the feed. The acidity of the HZSM-5 zeolite also has an influence on the nature of the coke, given that it contributes to increasing coke condensation towards polycondensed aromatic structures, although this has a minor effect on bio-oil conversion decrease with time on stream. The results obtained evidence the interest of the initiatives for co-feeding bio-oil with methanol to obtain hydrocarbons.
机译:通过连续进料入原油的生物油的催化转化,对操作条件(进料中的生物油/甲醇比,温度)对烃生产中使用的HZSM-5催化剂失活的影响进行了研究。流化床反应器。待进料到反应器中的生物油已经预先进行了在线热转化,其中热解木质素衍生物已经重新聚合。已经使用不同的分析技术(FTIR光谱,MS / FTIR-TPO,〜(13)C CP-MAS NMR光谱)研究了沉积在催化剂上的焦炭。结果证明了焦炭沉积和失活与反应介质中生物油含氧化合物的浓度之间存在直接关系。因此,应促进生物油转化以减轻焦炭沉积。使用具有降低的SiO2 / Al2O3比并提高进料中的反应温度和甲醇/生物油比的HZSM-5沸石催化剂可实现此目的。 HZSM-5沸石的酸度也会影响焦炭的性质,因为它有助于增加焦炭向缩聚芳族结构的缩合,尽管这对生物油转化率的影响不大,但随着生产时间的延长而降低。获得的结果证明了将生物油与甲醇共同进料以获得碳氢化合物的倡议的兴趣。

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