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Optimal Operation of Solvent-based Post-combustion Carbon Capture Processes with Reduced Models

机译:基于溶剂的后燃烧碳捕获过程的最佳操作

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This paper addresses the development of a methodology for optimal operation of solvent-based post-combustion carbon capture (PCC) with respect to techno-economical objectives. One of the main limitations in techno-economical analyses of PCC process is the unavailability of simple models for ease of use in PCC process optimization. Such mathematical models, even in reduced form, could facilitate performing efficient techno-economical studies without dealing with the complex physico-chemical models. In this study, a flowsheet PCC process model is developed and a sensitivity analysis is carried out around 1700 case studies. The resulting data were then modeled with Response Surface Methodology (RSM) to develop an explicit nonhnear reduced model. Optimal operating conditions were then found through the reduced model. Such optimal values are proposed as control set points in the PCC plant.
机译:本文涉及关于技术经济目标的基于溶剂基后燃烧碳捕获(PCC)的最佳运行方法的开发。 PCC工艺技术经济分析的主要局限之一是简单模型的不可用,以便于PCC过程优化的易用性。这种数学模型,即使是缩小的形式,也可以促进在不处理复杂的物理学模型的情况下进行高效的技术经济研究。在该研究中,开发了流程PCC过程模型,并进行了大约1700个案例研究的灵敏度分析。然后,由响应表面方法(RSM)建模产生的数据以开发显式非线性减少模型。然后通过减少模型发现最佳操作条件。这种最佳值被提出为PCC工厂中的控制设定点。

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