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Experimental investigation of a circulating fluidized-bed reactor to capture CO2 with CaO

机译:循环流化床反应器用CaO捕集CO 2 的实验研究

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Calcium looping processes for capturing CO2 from large emissions sources are based on the use of CaO particles as sorbent in circulating fluidized-bed (CFB) reactors. A continuous flow of CaO from an oxyfired calciner is fed into the carbonator and a certain inventory of active CaO is expected to capture the CO2 in the flue gas. The circulation rate and the inventory of CaO determine the CO2 capture efficiency. Other parameters such as the average carrying capacity of the CaO circulating particles, the temperature, and the gas velocity must be taken into account. To investigate the effect of these variables on CO2 capture efficiency, we used a 6.5 m height CFB carbonator connected to a twin CFB calciner. Many stationary operating states were achieved using different operating conditions. The trends of CO2 capture efficiency measured are compared with those from a simple reactor model. This information may contribute to the future scaling up of the technology. ? 2010 American Institute of Chemical Engineers AIChE J, 57: 000–000, 2011
机译:用于从大量排放源捕获CO 2 的钙循环工艺是基于在循环流化床(CFB)反应器中使用CaO颗粒作为吸附剂。来自氧气煅烧炉的连续CaO进料到碳酸化器中,预计一定量的活性CaO会捕获烟道气中的CO 2 。循环速度和CaO的存量决定了CO 2 的捕获效率。必须考虑其他参数,例如CaO循环颗粒的平均承载能力,温度和气体速度。为了研究这些变量对CO 2 捕集效率的影响,我们使用了一个高度为6.5 m的CFB碳酸化​​器,该碳酸化器连接到双CFB煅烧炉。使用不同的运行条件可以实现许多固定的运行状态。将测量的CO 2 捕获效率趋势与简单反应器模型中的趋势进行了比较。这些信息可能有助于将来技术的扩展。 ? 2010美国化学工程师学会AIChE J,57:000–000,2011年

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