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An experimental based optimization of a novel water lean amine solvent for post combustion CO2 capture process

Title
An experimental based optimization of a novel water lean amine solvent for post combustion CO2 capture process
Authors
Hwang, JunhyeokKim, JeongnamLee, Hee WonNa, JonggeolAhn, Byoung SungLee, Sang DeukKim, Hoon SikLee, HyunjooLee, Ung
Ewha Authors
나종걸
SCOPUS Author ID
나종걸scopus
Issue Date
2019
Journal Title
APPLIED ENERGY
ISSN
0306-2619JCR Link

1872-9118JCR Link
Citation
APPLIED ENERGY vol. 248, pp. 174 - 184
Keywords
CO2 captureWater-lean amine solventGaussian process Bayesian optimizationPilot-scale testing
Publisher
ELSEVIER SCI LTD
Indexed
SCIE; SCOPUS WOS
Document Type
Article
Abstract
The development of new amine solvents without the major drawbacks of conventional amines is crucial to industrial applications of CO2 capture. This paper presents a water-lean CO2 capture solvent having a low regeneration energy and low degradation. The water-lean solvent, K(2)Sol, is a sterically hindered diamine; because of the hindered amine site, K(2)Sol easily forms bicarbonate, resulting in a high absorption capacity. The minimum solvent regeneration energy is obtained using Gaussian process Bayesian optimization (GPBO) and bench-scale pilot plant experiments. GPBO finds the optimal solution using the input and output relationship of experiments; thus, expensive first-principle model construction can be avoided. According to the pilot plant experiment, the optimal regeneration energies of monoethanolamine (MEA) and K(2)Sol are 4.3 and 2.8 GJ/t CO2, respectively, indicating that K(2)Sol requires only 65% of the regeneration energy of MEA. Fewer than 30 experiments are required to find the optimal pilot plant operation for both the MEA and K(2)Sol experiments. We also describe the superior properties of K(2)Sol in terms of the CO2 loading, cyclic capacity, regeneration temperature, and degradation.
DOI
10.1016/j.apenergy.2019.04.135
Appears in Collections:
공과대학 > 화공신소재공학과 > Journal papers
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