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Biomass combustion with in situ CO2 capture by CaO in a 300 kWth circulating fluidized bed facility

机译:在300 kWth循环流化床设施中通过CaO捕获原位CO2进行生物质燃烧

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摘要

This paper reports experimental results from a new 300 kWth calcium looping pilot plant designed to capture CO2 “in situ” during the combustion of biomass in a fluidized bed. This novel concept relies on the high reactivity of biomass as a fuel, which allows for effective combustion around 700 °C in air at atmospheric pressure. In these conditions, CaO particles fed into the fluidized bed combustor react with the CO2 generated during biomass combustion, allowing for an effective CO2 capture. A subsequent step of regeneration of CaCO3 in an oxy-fired calciner is also needed to release a concentrated stream of CO2. This regeneration step is assumed to be integrated in a large scale oxyfired power plant and/or a larger scale post-combustion calcium looping system.\ud\udThe combustor-carbonator is the key reactor in this novel concept, and this work presents experimental results from a 300 kWth pilot to test such a reactor. The pilot involves two 12 m height interconnected circulating fluidized bed reactors. Several series of experiments to investigate the combustor-carbonator reactor have been carried out achieving combustion efficiencies close to 100% and CO2 capture efficiencies between 70 and 95% in dynamic and stationary state conditions, using wood pellets as a fuel. Different superficial gas velocities, excess air ratios above stoichiometric requirements, and solid circulating rates between combustor-carbonator and combustor-calciner have been tested during the experiments. Closure of the carbon and oxygen balances during the combustion and carbonation trials has been successful. A simple reactor model for combustion and CO2 capture in the combustor-carbonator has been applied to aid in the interpretation of results, which should facilitate the future scaling up of this process concept.
机译:本文报告了一个新的300 kWth钙环化中试装置的实验结果,该装置旨在在流化床中燃烧生物质时“原位”捕获CO2。这个新颖的概念依赖于生物质作为燃料的高反应性,从而可以在大气中大约700°C的空气中有效燃烧。在这些条件下,送入流化床燃烧器的CaO颗粒会与生物质燃烧过程中产生的CO2反应,从而有效地捕获CO2。还需要在氧气煅烧炉中再生CaCO3的后续步骤,以释放出浓的CO2流。假定此再生步骤已集成到大型的氧气火力发电厂和/或大型的燃烧后钙循环系统中。\ ud \ ud燃烧器-碳酸化器是这种新颖概念的关键反应器,这项工作提出了实验结果从一个300 kWth的飞行员那里测试这种反应堆。中试涉及两个12 m高的相互连接的循环流化床反应器。使用木屑颗粒作为燃料,已经进行了一系列系列的研究燃烧器-碳酸化器反应器的实验,以实现在动态和静止状态下的燃烧效率接近100%,CO2捕集效率在70%至95%之间。实验过程中测试了不同的表观气体速度,高于化学计量要求的过量空气比率以及燃烧器-碳酸化器和燃烧器-分解炉之间的固体循环速率。在燃烧和碳化试验过程中,碳和氧平衡的关闭是成功的。在燃烧器-碳酸化器中使用了一个简单的燃烧和二氧化碳捕集反应器模型来帮助解释结果,这将有助于将来扩大该工艺概念的规模。

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