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Chemical looping coal gasification with calcium ferrite and barium ferrite via solid-solid reactions

机译:通过固-固反应用铁酸钙和铁酸钡进行化学循环煤气化

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Coal gasification to produce synthesis gas by chemical looping was investigated with two oxygen carriers, barium ferrite (BaFe2O4) and calcium ferrite (CaFe2O4). Thermo-gravimetric analysis (TGA) and fixed-bed flow reactor data indicated that a solid-solid interaction occurred between oxygen carriers and coal to produce synthesis gas. Both thermodynamic analysis and experimental data indicated that BaFe2O4 and CaFe2O4 have high reactivity with coal but have a low reactivity with synthesis gas, which makes them very attractive for the coal gasification process. Adding steam increased the production of hydrogen (H-2) and carbon monoxide (CO), but carbon dioxide (CO2) remained low because these oxygen carriers have minimal reactivity with H-2 and CO. Therefore, the combined steam-oxygen carrier produced the highest quantity of synthesis gas. It appeared that neither the water-gas shift reaction nor the water splitting reaction promoted additional H-2 formation with the oxygen carriers when steam was present. Wyodak coal, which is a sub-bituminous coal, had the best gasification yield with oxygen carrier-steam while Illinois #6 coal had the lowest. The rate of gasification and selectivity for synthesis gas production was significantly higher when these oxygen carriers were present during steam gasification of coal. The rates and synthesis gas yields during the temperature ramps of coal-steam with oxygen carriers were better than with gaseous oxygen. Published by Elsevier Ltd.
机译:研究了用两种氧载体钡铁氧体(BaFe2O4)和钙铁氧体(CaFe2O4)通过化学循环进行煤气化生产合成气的方法。热重分析(TGA)和固定床流动反应器数据表明,氧载体与煤之间发生固-固相互作用,生成合成气。热力学分析和实验数据均表明,BaFe 2 O 4和CaFe 2 O 4与煤具有高反应性,但与合成气具有低反应性,这使其对煤气化过程非常有吸引力。添加蒸汽增加了氢气(H-2)和一氧化碳(CO)的产生,但二氧化碳(CO2)仍然很低,因为这些氧气载体与H-2和CO的反应性极小。合成气量最高。似乎当存在蒸汽时,水煤气变换反应和水分解反应都不会促进与氧载体的另外的H-2形成。 Wyodak煤(次烟煤)的氧气气化蒸汽气化率最高,而伊利诺伊州#6煤的汽化率最低。当在煤的蒸汽气化过程中存在这些氧载体时,气化速率和合成气生产的选择性明显更高。带有氧气载体的煤蒸汽在升温过程中的速率和合成气产率要高于带有气态氧气的速率。由Elsevier Ltd.发布

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