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Dive into the research topics where Xiaobo Luo is active.

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Featured researches published by Xiaobo Luo.


Engineering | 2017

Improving Prediction Accuracy of a Rate-Based Model of an MEA-Based Carbon Capture Process for Large-Scale Commercial Deployment

Xiaobo Luo; Meihong Wang

Carbon capture and storage (CCS) technology will play a critical role in reducing anthropogenic carbon dioxide (CO2) emission from fossil-fired power plants and other energy-intensive processes. However, the increment of energy cost caused by equipping a carbon capture process is the main barrier to its commercial deployment. To reduce the capital and operating costs of carbon capture, great efforts have been made to achieve optimal design and operation through process modeling, simulation, and optimization. Accurate models form an essential foundation for this purpose. This paper presents a study on developing a more accurate rate-based model in Aspen Plus® for the monoethanolamine (MEA)-based carbon capture process by multistage model validations. The modeling framework for this process was established first. The steady-state process model was then developed and validated at three stages, which included a thermodynamic model, physical properties calculations, and a process model at the pilot plant scale, covering a wide range of pressures, temperatures, and CO2 loadings. The calculation correlations of liquid density and interfacial area were updated by coding Fortran subroutines in Aspen Plus®. The validation results show that the correlation combination for the thermodynamic model used in this study has higher accuracy than those of three other key publications and the model prediction of the process model has a good agreement with the pilot plant experimental data. A case study was carried out for carbon capture from a 250 MWe combined cycle gas turbine (CCGT) power plant. Shorter packing height and lower specific duty were achieved using this accurate model.


Fuel | 2015

Heat integration of natural gas combined cycle power plant integrated with post-combustion CO2 capture and compression

Xiaobo Luo; Meihong Wang; Jian Chen


Fuel | 2015

Study on heat integration of supercritical coal-fired power plant with post-combustion CO2 capture process through process simulation

Xiaoyan Liu; Jian Chen; Xiaobo Luo; Meihong Wang; Hui Meng


International Journal of Greenhouse Gas Control | 2016

Optimal operation of MEA-based post-combustion carbon capture for natural gas combined cycle power plants under different market conditions

Xiaobo Luo; Meihong Wang


Fuel | 2015

Modelling and process analysis of hybrid hydration–absorption column for ethylene recovery from refinery dry gas

Xiaobo Luo; Meihong Wang; Xingang Li; You Li; Chao Chen; Hong Sui


Fuel | 2018

Technical performance analysis and economic evaluation of a compressed air energy storage system integrated with an organic Rankine cycle

Hui Meng; Meihong Wang; Mathew Aneke; Xiaobo Luo; Olumide Olumayegun; Xiaoyan Liu


International Journal of Greenhouse Gas Control | 2017

Modelling and process analysis of post-combustion carbon capture with the blend of 2-amino-2-methyl-1-propanol and piperazine

Weiyu Zhang; Jian Chen; Xiaobo Luo; Meihong Wang


Applied Energy | 2017

Study of solvent-based carbon capture for cargo ships through process modelling and simulation

Xiaobo Luo; Meihong Wang


International Journal of Coal Science & Technology | 2017

A comparative study of MEA and DEA for post-combustion CO2 capture with different process configurations

Boyang Xue; Yanmei Yu; Jian Chen; Xiaobo Luo; Meihong Wang


Fuel | 2018

Study on the integration of fluid catalytic cracking unit in refinery with solvent-based carbon capture through process simulation

Min Wei; Feng Qian; Wenli Du; Jun Hu; Meihong Wang; Xiaobo Luo; Minglei Yang

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Meihong Wang

University of Sheffield

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