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混合气气氛下纸浆黑液和钙混合催化剂的催化气化特性(英文) 被引量:7
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作者 jaffri gul-e-rana 张济宇 《燃料化学学报》 EI CAS CSCD 北大核心 2008年第4期406-414,共9页
采用热重法在单一和混合催化剂(即3%钙和5%钠-黑液单一催化剂及一种3%钙和5%钠-黑液混合催化剂),温度750℃-950℃及常压条件下对三种高变质无烟煤(福建龙岩、丰海和尤溪煤)研究了混合气气化过程中对碳转化率、气化反应速率及有害污... 采用热重法在单一和混合催化剂(即3%钙和5%钠-黑液单一催化剂及一种3%钙和5%钠-黑液混合催化剂),温度750℃-950℃及常压条件下对三种高变质无烟煤(福建龙岩、丰海和尤溪煤)研究了混合气气化过程中对碳转化率、气化反应速率及有害污染含硫气体相对量的催化效应。纸浆黑液和钙混合催化剂具有两者的的协同作用,在混合气气化过程中,3%钙和5%钠-黑液混合催化剂可极大地增加碳转化率和气化反应速率系由于该混合催化剂碱性表面化合物[—COM]、[—CO2M]及可交换的钙酚盐和羧酸钙[(—COO)2Ca]的存在加速了反应C+2CO2=2CO和C+H2O→CO+H2的结果,且这一催化作用比水蒸气气化过程更强烈。通过添加碳酸钙于纸浆黑液催化剂的气化方法,除去促进催化剂功效和增加碳转化率以外,也可达到有效的脱硫作用,但是这一较好的操作温度需低于900℃。 展开更多
关键词 混合催化剂 黑液 热重分析法 混合气催化气化 含硫气体
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Influence of temperature and Ca(OH)2 on releasing tar and coal gas during lignite coal pyrolysis and char gasification
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作者 Sunel Kumar Zhihua Wang +6 位作者 Zhang Kang Jun Xia Ronald Whiddon Yong He jaffri gul-e-rana Zain Ali Saleh Bairq Kefa Cen 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第11期2788-2798,共11页
The yield of tar and syngas has been investigated by catalytic pyrolysis of Pingzhuang lignite(PZL)over Ca(OH)2 catalyst in temperature range of 600℃-1000℃in a tube furnace.The results show that the yield of volatil... The yield of tar and syngas has been investigated by catalytic pyrolysis of Pingzhuang lignite(PZL)over Ca(OH)2 catalyst in temperature range of 600℃-1000℃in a tube furnace.The results show that the yield of volatile pyrolysis increases and char decreases with rising temperature for both raw and catalyzed Pingzhuang lignite.The hydrogen fraction(H2)increased from 20%to 40%for the PZL sample;but,for the PZL-Ca(OH)2 sample,H2 fraction fluctuated randomly between 35%to 42%,with the maximum H2 fraction found at 1000℃.The Gaschromatography mass-spectroscopic(GC-MS)analysis revealed that the maximum tar yield at 800℃and 700℃was obtained for PZL and PZL-Ca(OH)2,respectively.The surface morphology of PZL and PZL-Ca(OH)2 chars underwent different transformation in the presence of catalyst as illustrated by SEM/EDX,FTIR,and BET analysis.Furthermore,char sample was investigated for the carbon conversion and reactivity index using TGA analysis under N2 and CO atmosphere. 展开更多
关键词 Catalyzed COAL pyrolysis Release VOLATILES of TAR and COAL gas Surface area Pore volume
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