Erans María, Jeremias Michal, Manovic Vasilije, Anthony Edward J
Combustion and CCS Centre, Cranfield University;
Combustion and CCS Centre, Cranfield University.
J Vis Exp. 2017 Oct 25(128):56112. doi: 10.3791/56112.
Calcium looping (CaL) is a post-combustion CO2 capture technology that is suitable for retrofitting existing power plants. The CaL process uses limestone as a cheap and readily available CO2 sorbent. While the technology has been widely studied, there are a few available options that could be applied to make it more economically viable. One of these is to increase the oxygen concentration in the calciner to reduce or eliminate the amount of recycled gas (CO2, H2O and impurities); therefore, decreasing or removing the energy necessary to heat the recycled gas stream. Moreover, there is a resulting increase in the energy input due to the change in the combustion intensity; this energy is used to enable the endothermic calcination reaction to occur in the absence of recycled flue gases. This paper presents the operation and first results of a CaL pilot plant with 100% oxygen combustion of natural gas in the calciner. The gas coming into the carbonator was a simulated flue gas from a coal-fired power plant or cement industry. Several limestone particle size distributions are also tested to further explore the effect of this parameter on the overall performance of this operating mode. The configuration of the reactor system, the operating procedures, and the results are described in detail in this paper. The reactor showed good hydrodynamic stability and stable CO2 capture, with capture efficiencies of up to 70% with a gas mixture simulating the flue gas of a coal-fired power plant.
钙循环(CaL)是一种适合对现有发电厂进行改造的燃烧后二氧化碳捕集技术。钙循环工艺使用石灰石作为一种廉价且易于获取的二氧化碳吸附剂。虽然该技术已得到广泛研究,但仍有一些可行的选择可用于使其在经济上更具可行性。其中之一是提高煅烧炉中的氧气浓度,以减少或消除循环气体(二氧化碳、水和杂质)的量;从而减少或消除加热循环气流所需的能量。此外,由于燃烧强度的变化,能量输入会增加;该能量用于使吸热的煅烧反应在没有循环烟道气的情况下发生。本文介绍了在煅烧炉中采用100%天然气纯氧燃烧的钙循环中试装置的运行情况及初步结果。进入碳酸化器的气体是来自燃煤发电厂或水泥行业的模拟烟道气。还测试了几种石灰石粒度分布,以进一步探索该参数对这种运行模式整体性能的影响。本文详细描述了反应器系统的配置、操作程序和结果。该反应器显示出良好的流体动力学稳定性和稳定的二氧化碳捕集能力,对于模拟燃煤发电厂烟道气的混合气体,捕集效率高达70%。