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首页> 外文期刊>Fuel Processing Technology >Selective generation of aromatic hydrocarbons from hydrotreating-cracking of bio-oil light fraction with MOx modified HZSM-5 (M = Ga, Mo and Zn)
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Selective generation of aromatic hydrocarbons from hydrotreating-cracking of bio-oil light fraction with MOx modified HZSM-5 (M = Ga, Mo and Zn)

机译:用MOX改性HZSM-5的生物油光馏分的加氢处理 - 裂解芳烃的选择性产生芳烃 - 5(M = GA,MO和Zn)

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摘要

The upgrading of highly unsaturated bio-oil by zeolite cracking suffers from severe catalyst deactivation due to the carbonaceous deposition. Therefore, the dual-stage hydrotreating-cracking process is developed for more stable operation. In this work, to further promote the generation of aromatic hydrocarbon in a hydrotreatingcracking process cofeeding bio-oil light fraction and methanol, the cracking catalyst HZSM-5 was modified by MOx (M = Ga, Mo and Zn). Compared with the blank HZSM-5, the promotion of aromatic hydrocarbon production by MoO3/HZSM-5 was mainly owing to the enhanced selective conversion of intermediate light alkenes to aromatics, while those by Ga2O3/HZSM-5 and ZnO/HZSM-5 were attributed to both the re-activation of hydrotreating-derived CH4 and the intensified selective aromatization of alkenes. Meanwhile, raising cracking temperature decreased the yield of aromatic hydrocarbon but favored the production of gases. Ga2O3/HZSM-5 was the most effective catalyst for aromatic hydrocarbon production and 400 degrees C was a suitable cracking temperature, under which the upgrading of a bio-oil aqueous fraction achieved the oil phase yield of above 22% with the aromatic hydrocarbon content of above 93%.
机译:由于碳质沉积引起的沸石裂化升高了高度不饱和生物油的升级患有严重的催化剂失活。因此,开发了双级加氢处理裂化过程以进行更稳定的操作。在这项工作中,为了进一步促进加氢加捻过程中芳烃的产生Cofeed Bio-油光级分和甲醇,通过MOX(M = Ga,Mo和Zn)改性裂化催化剂HZSM-5。与空白HZSM-5相比,MOO3 / HZSM-5的促进芳烃产生主要是由于增强中间光烯烃与芳烃的选择性转化,而GA2O3 / HZSM-5和ZnO / HZSM-5的选择性转化归因于加氢处理衍生的CH4的再活化和烯烃的强化选择性芳族化。同时,提高裂化温度降低了芳烃的产率,但偏爱了气体的生产。 Ga2O3 / HzSM-5是芳烃生产最有效的催化剂,400℃是合适的裂解温度,在该温度下,生物油含量的升级以芳烃含量达到22%的油相产率高于93%。

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