Poster (Scientific congresses and symposiums)
Effect of solvent concentration on the energy demand of an absorption-based natural gas sweetening plant
Berchiche, Mohamed El Amine; Garcia, Monica; Belaadi, Salah et al.
201814th International Conference on Greenhouse Gas Control Technologies (GHGT14)
 

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Keywords :
Natural gas; CO2 capture; BTEX; Amine solvents
Abstract :
[en] Amine-based chemical absorption is the most advanced CO2 capture system. Yet, high energy requirement is a major hinder to its wide deployment. Among the possible routes of improvement is the use of novel amines that can achieve the trade-off between robustness and low regeneration energy. Our work investigates the use of MDEA/DEA as solvent for the capture of CO2 from natural gas. The presence of BTEX (Benzene, Toluene, Ethyl Benzene and Xylene) in the raw natural gas was taken into account. AspenHysys v9 was used to simulate the chemical absorption system. The impact of solvent composition on key process variables, the required flow rate to achieve transport specification, required reboiler duty, pumping energy, BTEX incineration energy and amine losses, were studied. The optimal operating point corresponding to the lowest energy requirement was identified and the separate contribution of each process parameter was estimated.
Disciplines :
Chemical engineering
Author, co-author :
Berchiche, Mohamed El Amine ;  Université de Liège - ULiège > Chemical engineering
Garcia, Monica;  IEAGHG
Belaadi, Salah;  Université des Sciences et de la Technologie Houari Boumediene
Léonard, Grégoire  ;  Université de Liège - ULiège > Department of Chemical Engineering > Intensif.des procéd. de l'indust.chim.basée sur l'anal.syst.
Language :
English
Title :
Effect of solvent concentration on the energy demand of an absorption-based natural gas sweetening plant
Publication date :
23 October 2018
Event name :
14th International Conference on Greenhouse Gas Control Technologies (GHGT14)
Event place :
Melbourne, Australia
Event date :
du 21 octobre 2018 au 25 octobre 2018
Audience :
International
Available on ORBi :
since 03 October 2020

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