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Analysis of combined process flow sheet modifications for energy efficient CO_2 capture from flue gases using chemical absorption

机译:使用化学吸收的烟气捕获的节能CO_2捕获的组合过程流程图改造分析

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The energy penalty associated with solvent absorption based Post Combustion CO_2 Capture is one of the main stumbling blocks for the implementation of this technology into new and existing fossil-fired power stations. Modifying the flow sheet of the standard chemical absorption process can allow for reductions in the energy and resource usage of such plants. A review of the open and patented literature highlighted modifications, predominantly related to applications in the gas processing industry. These modifications were modelled using commercially available rate based simulation software. This allowed the expected energy consumption of a CO_2 capture pilot plant, based in Australia, to be estimated. The modelling results pointed towards the optimal conditions for each modification. Selected modifications were then added together to determine whether any synergistic effects could be observed. The split flow process was found to have one of the highest energy savings (reduction in reboiler duty) over the reference plant. Adding inter-cooling on the absorber column with splitting of the rich solvent stream entering the stripping column showed a reduction in reboiler duty slightly greater than anticipated based on the results of the individual modifications.
机译:与溶剂吸收的后燃烧CO_2捕获相关的能量惩罚是将该技术实施到新的和现有化石发电站的主要磕磕绊绊的块之一。改变标准化学吸收过程的流量表可以允许降低这些植物的能量和资源使用。审查开放和专利文献突出显示的修改,主要与天然气加工行业的应用相关。这些修改是使用基于市售的基于速率的仿真软件进行建模的。这允许估计基于澳大利亚的CO_2捕获试点工厂的预期能源消耗。建模结果指向每个修改的最佳条件。然后将所选择的修饰加在一起以确定是否可以观察到任何协同效应。发现分流流程在参考厂上具有最高能量节省(降低再沸器占额度)之一。在吸收柱上添加冷却柱,分裂进入汽提塔的富溶剂流显示再沸器的降低略大于预期的基于个体修饰的结果。

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