Multi-objective optimization of CO2 emission and thermal efficiency for on-site steam methane reforming hydrogen production process using machine learning

  • Hong, Seokyoung
  • Lee, Jaewon
  • Cho, Hyungtae
  • Kim, Minsu
  • Moon, Il
  • 외 1명
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80
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83

초록

Currently, hydrogen is produced primarily through steam methane reforming, a gray hydrogen production process that generates CO2 as a by-product. Thus, it is crucial to optimize the process thermal efficiency with minimizing CO2 generation in a hydrogen production process. This study focuses on the multi-objective optimization of low-carbon hydrogen production process, considering both process thermal efficiency maximization and CO2 emission minimization. To this end, a hybrid deep neural network model is developed to increase the robustness of the multi-objective optimization. The developed hybrid deep neural network model is incorporated into a proposed multi-objective particle swarm optimization algorithm that performs Pareto dominance-based multi-objective optimization. In experiments conducted, Pareto-optimal solutions with thermal efficiency distribution between 77.5 and 87.0% and CO2 emissions between 577.9 and 597.6 t/y were obtained. Furthermore, the Pareto-optimal front was analyzed to provide various representative solutions to assist decision-makers. The findings of this study can enable efficient and flexible process operations according to various requirements. © 2022 Elsevier Ltd

키워드

CO2 emissionLow-carbon hydrogen productionMulti-objective optimizationOn-site steam methane reforming processThermal efficiencyCOMPUTATIONAL FLUID-DYNAMICSMODEL-PREDICTIVE CONTROLWATER-GAS SHIFTEXERGY ANALYSISENERGYDEACTIVATIONREGENERATIONBIOGASPOWER
제목
Multi-objective optimization of CO2 emission and thermal efficiency for on-site steam methane reforming hydrogen production process using machine learning
저자
Hong, SeokyoungLee, JaewonCho, HyungtaeKim, MinsuMoon, IlKim, Junghwan
DOI
10.1016/j.jclepro.2022.132133
발행일
2022-07
유형
정기학술지(Article(Perspective Article포함))
저널명
Journal of Cleaner Production
359
페이지
1 ~ 12