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Effects of water vapor pretreatment time and reaction temperature on CO_2 capture characteristics of a sodium-based solid sorbent in a bubbling fluidized-bed reactor

机译:水蒸气预处理时间和反应温度对鼓泡流化床反应器中钠基固体吸附剂CO_2捕集特性的影响

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摘要

CO_2 capture from flue gas using a sodium-based solid sorbent was investigated in a bubbling fluidized-bed reactor. Carbonation and regeneration temperature on CO_2 removal was determined. The extent of the chemical reactivity after carbonation or regeneration was characterized via ~(13)C NMR. In addition, the physical properties of the sorbent such as pore size, pore volume, and surface area after carbonation or regeneration were measured by gas adsorption method (BET). With water vapor pretreatment, near complete CO_2 removal was initially achieved and maintained for about 1-2 min at 50 ℃ with 2 s gas residence time, while without proper water vapor pretreatment CO_2 removal abruptly decreased from the beginning. Carbonation was effective at the lower temperature over the 50-70 ℃ temperature range, while regeneration more effective at the higher temperature over the 135-300 ℃ temperature range. To maintain the initial 90% CO_2 removal, it would be necessary to keep the regeneration temperature higher than about 135 ℃. The results obtained in this study can be used as basic data for designing and operating a large scale CO_2 capture process with two fluidized-bed reactors.
机译:在鼓泡的流化床反应器中研究了使用钠基固体吸附剂从烟气中捕获CO_2的方法。确定了去除CO_2时的碳酸化和再生温度。碳酸化或再生后的化学反应程度通过〜(13)C NMR表征。另外,通过气体吸附法(BET)测量吸附剂的物理性质,例如碳酸化或再生后的孔径,孔体积和表面积。通过水蒸气预处理,最初达到了接近完全的CO_2去除,并在50℃下以2 s的气体停留时间保持了约1-2分钟,而没有适当的水蒸气预处理,从一开始就突然减少了CO_2去除。碳酸化作用在50-70℃温度范围内的较低温度下有效,而再生在135-300℃温度范围内的较高温度下更有效。为了维持最初的90%CO_2去除率,必须使再生温度高于135℃。在这项研究中获得的结果可以用作设计和使用两个流化床反应器进行大规模CO_2捕集工艺的基础数据。

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