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Demonstration of a kW-scale solid oxide fuel cell-calciner for power generation and production of calcined materials

机译:演示用于发电和煅烧材料生产的kW级固体氧化物燃料电池分解炉

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Carbonate looping (CaL) has been shown to be less energy-intensive when compared to mature carbon capture technologies. Further reduction in the efficiency penalties can be achieved by employing a more efficient source of heat for the calcination process, instead of oxy-fuel combustion. In this study, a kW-scale solid oxide fuel cell (SOFC)-integrated calciner was designed and developed to evaluate the technical feasibility of simultaneously generating power and driving the calcination process using the high-grade heat of the anode off-gas. Such a system can be integrated with CaL systems, or employed as a negative-emission technology, where the calcines are used to capture CO2 from the atmosphere. The demonstration unit consisted of a planar SOFC stack, operating at 750 degrees C, and a combined afterburner/calciner to combust hydrogen slip from the anode off-gas, and thermally decompose magnesite, dolomite, and limestone. The demonstrator generated up to 2 kW(el, DC) power, achieved a temperature in the range of 530-550 degrees C at the inlet of the afterburner, and up to 678 degrees C in the calciner, which was sufficient to demonstrate full calcination of magnesite, and partial calcination of dolomite. However, in order to achieve the temperature required for calcination of limestone, further scale-up and heat integration are needed. These results confirmed technical feasibility of the SOFC-calciner concept for production of calcined materials either for the market or for direct air capture (DAC).
机译:与成熟的碳捕获技术相比,碳酸盐循环(CaL)的能源密集度更低。通过采用更有效的热源代替煅烧燃料来进行煅烧,可以进一步降低效率。在这项研究中,设计并开发了集成了kW规模的固体氧化物燃料电池(SOFC)的煅烧炉,以评估利用阳极废气的高热量同时发电和驱动煅烧过程的技术可行性。这样的系统可以与CaL系统集成在一起,或用作负排放技术,其中煅烧炉用于从大气中捕获CO2。该示范装置由一个在750摄氏度下运行的平面SOFC烟囱和一个加力燃烧器/分解炉组成,以燃烧来自阳极废气的氢气,并热分解菱镁矿,白云石和石灰石。该演示器产生高达2 kW(el,DC)的功率,在加力燃烧器进口处达到530-550摄氏度的温度,在煅烧炉中达到678摄氏度,这足以证明完全煅烧菱镁矿和部分煅烧白云石。但是,为了达到石灰石煅烧所需的温度,需要进一步扩大规模和进行热整合。这些结果证实了SOFC-煅烧炉概念的技术可行性,可用于市场或直接空气捕集(DAC)的煅烧材料生产。

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