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Inert chemical looping conversion of biochar with iron ore as oxygen carrier: Products conversion kinetics and structural evolution

机译:生物炭与铁矿石作为氧气载体的惰性化学循环转化:产品转化动力学和结构演变

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摘要

In this study, biochar obtained from pyrolysis of woody shavings at 550 degrees C was reacted with iron ore in N-2 to investigate its inert chemical looping conversion properties, including the gas products conversion kinetics and structural evolution process. Results found that both the release of CO and CO2 could be divided into rapid release stage and stable chemical looping reaction stage with activation energies of 17.69 and 45.65 kJ/mol, respectively. During the chemical looping process, the reaction reactivity of biochar reduced gradually with the amorphous char structure turning into fused ring structure and finally into graphite crystal structure. Simultaneously, Fe2O3 was reduced into Fe3O4, FeO and Fe. This work highlighted the chemical conversion of biochar using natural iron ore as oxygen carrier in inert N-2 atmosphere from the common in-situ gasification chemical looping process using CO2/H2O as agent.
机译:在该研究中,从550℃热解的玉石屑中获得的生物炭与N-2中的铁矿石反应,以研究其惰性化学循环转化性能,包括气体产品转化动力学和结构演变过程。 结果发现,CO和CO2的释放可以分为快速释放阶段和稳定的化学环路反应阶段,分别具有17.69和45.65 kJ / mol的活化能量。 在化学循环过程中,Biochar的反应反应性随着无定形的炭结构转变为稠环结构而逐渐降低,最后进入石墨晶体结构。 同时,Fe2O3减少到Fe3O4,Feo和Fe中。 这项工作强调了使用CO 2 / H 2 O作为试剂的惰性N-2气氛中的天然铁矿氧载体作为氧气载体的生物炭化学转化。

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