Hydrogen Sulfide Solubility in Aqueous Solutions of MDEA, MEA, and DEA: Bridging Theory and Experiment with eCPA Equation of State

Publish Year: 1402
نوع سند: مقاله ژورنالی
زبان: English
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JR_CHM-7-12_002

تاریخ نمایه سازی: 18 آذر 1402

Abstract:

Gas treatment procedures play a crucial role in eliminating acidic gases from natural gas and other hydrocarbon streams. Within the confines of this investigation, we propose an innovative methodology that employs the eCPA equation of state to prognosticate the solubility of hydrogen sulfide (H۲S) in aqueous solutions containing N-methyl diethanolamine (MDEA), monoethanolamine (MEA), and diethanolamine (DEA). The electrolyte Cubic Plus Association (eCPA) equation of state takes into account six vital parameters, encompassing the molecular size, configuration, and polarity of the constituents, to accurately anticipate the equilibrium treatment of H۲S absorption in various conditions.The results acquired from the experimental assessment of H۲S solubility were juxtaposed with those derived from modeling, revealing a commendable concordance amidst the respective data. In order to gauge the accuracy of the projected model, we employed the absolute average relative deviation (AARD%) as a statistical error-index. The experimental data procured in this study exhibited an acceptable validation in accordance with the outcomes of modeling endeavors.The performance evaluation reveals that, within the temperature range of ۲۵-۱۴۰ °C, acid gas loadings of ۰-۱.۶ (mol gas/mol solution), and aqueous alkanolamine amounts of ۱۵-۴۹ wt. %, the absolute average relative deviation (AARD%) remains consistently below ۴.۵%. This emphasizes the reliability and efficiency of our model in accurately predicting H۲S solubility under diverse operating conditions.

Authors

Fariborz Fazelipour

Faculty of Chemical Engineering, Tarbiat Modares University, Tehran, Iran

Shahin Alizadeh

Faculty of Chemical Engineering, Tarbiat Modares University, Tehran, Iran

Abolfazl Mohammadi

Department of Chemical Engineering, University of Bojnord, Bojnord, Iran

Alireza Bozorgian

Department of Chemical Engineering, Mahshahr Branch, Islamic Azad University, Mahshahr, Iran

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