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乌拉盖褐煤半焦气化特性试验

方顺利 姚伟 刘家利 姚斌 杨忠灿 王桂芳

热力发电2017,Vol.46Issue(12):75-79,128,6.
热力发电2017,Vol.46Issue(12):75-79,128,6.DOI:10.3969/j.issn.1002-3364.2017.11.075

乌拉盖褐煤半焦气化特性试验

Experimental study on gasification characteristics of Wulagai lignite semi-coke

方顺利 1姚伟 1刘家利 1姚斌 2杨忠灿 1王桂芳1

作者信息

  • 1. 西安热工研究院有限公司,陕西西安 710054
  • 2. 华中科技大学能源与动力工程学院,湖北武汉 430074
  • 折叠

摘要

Abstract

Four kinds of Wulagai lignite semi-coke samples were prepared by pyrolysis using different pyrolytic parameters. The BET area and pore structure of the samples was characterized through gas adsorption method, the CO2 gasification activity of the samples was examined by TGA method, and the samples were gasified in a tube furnace and the CO volume concentration variation with temperature was measured. The results show that, faster temperature rising rate and shorter pyrolysis time could help increasing the BET are and hole volume of the Wulagai semi-coke samples. The sample with final pyrolysis temperature of 700℃ had larger BET area than that with final pyrolysis temperature of 520℃, but its gasification reactivity was lower relatively. The temperature was about 850℃ when the four samples' gasification rate reached the maximum. Considering the pore structure, gasification activity, fuel property and gasifiers characteristics of the Wulagai lignite semi-coke, it is recommended that the pyrolysis of Wulagai lignite should be carried out at low temperature, with rapid heating rate and rapid pyrolysis process, and the gasification should be controlled by entrained-flow gasification technologies. This results can provide reference for optimizing the pyrolysis process and gasification utilization of Wulagai lignite semi-coke.

关键词

乌拉盖褐煤/半焦/气化特性/孔径结构/比表面积/热重分析/热解参数/气流床气化

Key words

Wulagai lignite/semi-coke/gasification characteristics/aperture structure/specific surface area/thermogravimetric analysis/pyrolysis parameter/entrained flow bed gasification

分类

能源科技

引用本文复制引用

方顺利,姚伟,刘家利,姚斌,杨忠灿,王桂芳..乌拉盖褐煤半焦气化特性试验[J].热力发电,2017,46(12):75-79,128,6.

基金项目

国家能源局褐煤低温热解半焦应用研究(NY20130303) Applied Research of Low Temperature Pyrolysis Lignite Semi-coke: National Energy Administration Project (NY20130303) (NY20130303)

热力发电

OA北大核心CSTPCD

1002-3364

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