By Ying Wu, John J. Carroll, Weiyao Zhu
This is the 5th quantity in a chain of books concentrating on ordinary fuel engineering, targeting the extraction and disposal of acid gasoline. This quantity contains details for either upstream and downstream operations, together with chapters on modeling, carbon seize, chemical and thermodynamic versions, and masses more.
Written via probably the most recognized and revered chemical and strategy engineers operating with common gasoline this present day, the chapters during this very important quantity signify the main state-of-the-art and state of the art procedures and operations getting used within the field. now not on hand at any place else, this quantity is a must have for any chemical engineer, chemist, or technique engineer operating with average gas.
There are updates of recent applied sciences in different comparable components of normal gasoline, as well as the extraction and disposal of acid gasoline, together with checking out, reservoir simulations, acid gasoline injection, and typical gasoline hydrate formations. Advances in normal fuel Engineering is an ongoing sequence of books intended to shape the foundation for the operating library of any engineer operating in typical fuel today. each quantity is a must have for any engineer or library.
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Additional resources for Acid gas extraction for disposal and related topics
Vallée, P. Mougin, S. Jullian, W. Fürst. Ind. Eng. Chem. , 38, 3473–3480, 1999. 38. L. Chunxi, W. Fürst. Chem. Eng. , 55, 2975–2988, 2000. 39. A. Vrachnos, E. Voutsas, K. Magoulas, A. Lygeros. Ind. Eng. Chem. , 43, 2798–2804, 2004. 40. P. J. G. Huttenhuis, N. J. Agrawal, E. Solbraa, G. F. Versteeg. , 264, 99–112, 2008. 41. A. T. Zoghi, F. Feyzi. J. Chem. , 67, 153–162, 2013. 42. W. Böttinger, M. Maiwald, H. Hasse. , 263, 131–143, 2008. 43. F. Diab, E. Provost, N. Laloué, P. Alix, W. Fürst. , 353, 22–30, 2013.
W. Böttinger, M. Maiwald, H. Hasse. , 263, 131–143, 2008. 43. F. Diab, E. Provost, N. Laloué, P. Alix, W. Fürst. , 353, 22–30, 2013. 3 Thermodynamic Approach of CO2 Capture, Combination of Experimental Study and Modeling Karine Ballerat-Busserolles, Alexander R. -Y. Coxam Clermont Université, Université Blaise Pascal, Institut de Chimie de ClermontFerrand, BP 10448, F-63000 Clermont-Ferrand, France CNRS, UMR 6296, Institut de Chimie de Clermont-Ferrand, F-63171 Aubiere, France Abstract Carbon dioxide capture processes are investigated in order to reduce energetic costs or to improve the selectivity (purity of removed CO2).
Two models are available for the simulation of the absorber and regenerator units in Aspen HYSYS—Efficiency and Advanced Modeling. Both are based on AspenTech’s proprietary Rate-Based technology. Both Acid Gas Efficiency method and Advanced Modeling method try to improve the modeling of acid-gas columns by adopting some flavors of the two major modeling techniques mentioned above. The Efficiency model uses a conventional equilibrium-stage model to solve the column, but the nonequilibrium behavior inherent in acid gas systems is modeled by calculating a “rate-based” efficiency for CO2 and H2S at each stage.