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氧化锆催化合成气直接转化制芳烃

杨成 张成华 许健 吴宝山 杨勇 李永旺

燃料化学学报2016,Vol.44Issue(7):837-844,8.
燃料化学学报2016,Vol.44Issue(7):837-844,8.

氧化锆催化合成气直接转化制芳烃

One-step catalytic conversion of syngas to aromatics over ZrO2 catalyst

杨成 1张成华 2许健 1吴宝山 3杨勇 4李永旺5

作者信息

  • 1. 中国科学院山西煤炭化学研究所 煤转化国家重点实验室,山西 太原 030001
  • 2. 中国科学院大学,北京 100049
  • 3. 煤炭间接液化国家工程实验室,北京 101407
  • 4. 中科合成油技术有限公司,北京 101407
  • 5. 煤炭间接液化国家工程实验室,北京 101407
  • 折叠

摘要

Abstract

A series of ZrO2 nanoparticles with different particle sizes and different crystalline phases were prepared using coprecipitation and hydrothermal methods. Their physico-chemical properties were characterized by N2 physisorption, XRD, TEM, Raman spectroscopy, XPS, and NH3-TPD techniques. The catalytic performances for syngas conversion were tested at 400 ℃, 3 MPa, gas hourly space velocity ( GHSV ) of 500 mL/(gcat·h), and H2/CO/Ar (volume ratio)=5:5:1. It was found that syngas can be directly converted into hydrocarbons over ZrO2 nanoparticles. The hydrocarbon products are mainly composed of isomerized olefins, cyclenes, and aromatics. The selectivity of C5+ hydrocarbons is up to 48%. Moreover, the aromatic concentration in C5+ ranges from 30% to 53% depending on ZrO2 structures. It is also found that the monoclinic ZrO2 shows higher activity than the tetragonal one. Monoclinic ZrO2 with larger specific surface area and acid amount show highest CO conversion as well as the yield of target products, but the monoclinic ZrO2 with lager particle size has the higher acid surface density and results in the higher aromatic selectivity. Consequently, acidity is the key factor for CO conversion. And high acid surface density promotes the formation of aromatics but acid amount affects the activity.

关键词

氧化锆/异构合成/合成气/一步法/直接芳烃

Key words

zirconia/isosynthesis/syngas/one-step/aromatics

分类

化学化工

引用本文复制引用

杨成,张成华,许健,吴宝山,杨勇,李永旺..氧化锆催化合成气直接转化制芳烃[J].燃料化学学报,2016,44(7):837-844,8.

基金项目

The project was supported by the National Natural Science Foundation of China (91545109,21173249).国家自然科学基金(91545109,21173249)资助 (91545109,21173249)

燃料化学学报

OA北大核心CSCDCSTPCD

2097-213X

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