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重整富氢气脱氯脱硫过程的研究与应用 被引量:5
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作者 周立进 邓永刚 +1 位作者 姚虎卿 刘晓勤 《石油与天然气化工》 CAS CSCD 北大核心 2001年第1期15-18,共4页
针对重整富氢脱除氯和硫所采用碱洗法存在的缺点 ,开发了干法常温脱氯、脱硫过程 ,该法工艺简单、操作灵活方便 ,减少了设备腐蚀。该工艺在工业应用及推广应用中均取得了成功 ,为同类装置改造提供了理论和实践基础。
关键词 重整富氢气 干法 脱氯 脱硫 炼油
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Hydrogen production from partial oxidation of dimethyl ether by plasma-catalyst reforming
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作者 宋凌珺 李兴虎 《Journal of Central South University》 SCIE EI CAS 2013年第12期3764-3769,共6页
Hydrogen was produced from partial oxidation reforming of DME (dimethyl ether) by spark discharge plasma at atmospheric pressure. A plasma-catalyst reformer was designed. A series of experiments were carried out to ... Hydrogen was produced from partial oxidation reforming of DME (dimethyl ether) by spark discharge plasma at atmospheric pressure. A plasma-catalyst reformer was designed. A series of experiments were carried out to investigate its performance of hydrogen-rich gas production. The effects of reaction temperature, catalyst and flow rate on gas concentrations (volume fraction), hydrogen yield, DME conversion ratio, specific energy consumption and thermal efficiency were investigated, respectively. The experimental results show that hydrogen concentration and the flow rate of produced H2 are improved when temperature increases from 300 ℃ to 700 ℃. Hydrogen yield, hydrogen concentration and the flow rate of produced H2 are substantially improved in the use of Fe-based catalyst at high temperature. Moreover, hydrogen yield and thermal efficiency are improved and change slightly when flow rate increases. When catalyst is 12 g, and flow rate increases from 35 mL/min to 210 mL/min, hydrogen yield decreases from 66.4% to 57.7%, and thermal efficiency decreases from 35.6% to 30.9%. It is anticipated that the results would serve as a good guideline to the application of hydrogen generation from hydrocarbon fuels by plasma reforming onboard. 展开更多
关键词 plasma-catalyst REFORMING hydrogen production dimethyl ether high temperature
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