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Experimental evaluation of a Chinese sulfur-containing lean iron ore as the oxygen carrier for chemical-looping combustion

机译:中国含硫贫铁矿作为化学循环燃烧氧气载体的实验评估

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摘要

A series of chemical-looping combustion (CLC) tests were conducted in a thermogravimetric analysis (TGA) reactor to investigate the potential of a Chinese sulfur-containing lean iron ore as the oxygen carrier. Two main products of solidfuel pyrolysis and gasification, namely, CH4 and CO, were selected as the reducing gases. Consecutive reduction−oxidation cycles were first carried out in the TGA reactor to evaluate the cyclic stability and agglomeration tendency of the oxygen carrier. The effects of the temperature, fuel gas concentration, and reaction gas composition on the reduction reaction were further investigated. Increasing the reaction temperature or fuel gas concentration enhanced the reduction rate and reaction degree of the oxygen carrier. Meanwhile, CO showed much higher reduction reactivity than CH4. A comparison of the rate index of the iron ore used with those of high-grade minerals indicated that the iron ore had adequate reactivity for its application in solid-fuel CLC technology. The side reaction of carbon deposition was also discussed. Finally, the shrinking-core model with chemical reaction control was adopted to determine the chemical kinetics.
机译:在热重分析(TGA)反应器中进行了一系列化学循环燃烧(CLC)测试,以研究中国含硫的贫铁矿作为氧气载体的潜力。选择了固体燃料热解和气化的两种主要产物,即CH4和CO作为还原气体。首先在TGA反应器中连续进行还原-氧化循环,以评估氧载体的循环稳定性和附聚趋势。进一步研究了温度,燃料气体浓度和反应气体组成对还原反应的影响。提高反应温度或燃料气体浓度提高了氧载体的还原速率和反应程度。同时,CO显示出比CH4高得多的还原反应性。将铁矿石的速率指数与高品位矿物的速率指数进行比较表明,铁矿石具有足够的反应性,可用于固体燃料CLC技术。还讨论了碳沉积的副反应。最后,采用具有化学反应控制的收缩核模型来确定化学动力学。

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