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Titlebook: CO2 Capture by Reactive Absorption-Stripping; Modeling, Analysis a Claudio Madeddu,Massimiliano Errico,Roberto Baratt Book 2019 The Author(

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发表于 2025-3-23 11:37:42 | 显示全部楼层
2191-5520 tical guidance on applying the proposed model in the Aspen PThis book focuses on modelling issues and their implications for the correct design of reactive absorption–desorption systems. In addition, it addresses the case of carbon dioxide (CO2) post-combustion capture in detail. The book proposes a
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Introduction,ctive solutions for the immediate mitigation of the anthropological CO. emissions, are introduced and described. In the end, the motivations and the objectives of the book are reported, together with a short summary of the different chapters.
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Model Validation for the Absorber,low like behavior. Then, the number of segments analysis is performed in order to obtain the correct representation of the process and investigate the possible effect of the backmixing due to the countercurrent. The proposed model suitably describes the experimental data and particularly the temperature bulge, independently on its location.
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Stripping Section Design Analysis, diameter is analyzed. Due to the impossibility to use the classic minimum and effective stripping agent design approach, a criterion for the definition of the stripper packing height based on the analysis of the liquid temperature gradient profiles is proposed.
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Complete Flowsheet and Economic Evaluation,he last part of the chapter is dedicated to the overall economic evaluation of the plant. In particular, the capital and the operating costs are determined and their impact on the total annual costs is discussed.
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Margaret S. Barrett,Sandra L. StaufferThe modeling of reactive absorption-stripping systems is known to be a challenging task, and even if sophisticated process simulators are available a high-level knowledge of the fundamental transfer and kinetics phenomena is essential.
发表于 2025-3-24 15:20:36 | 显示全部楼层
Conclusions,The modeling of reactive absorption-stripping systems is known to be a challenging task, and even if sophisticated process simulators are available a high-level knowledge of the fundamental transfer and kinetics phenomena is essential.
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