Self-sustained process scheme for high purity hydrogen production using sorption enhanced steam methane reforming coupled with chemical looping combustion

被引:42
|
作者
Alam, Shadab [1 ]
Kumar, J. Pradeep [1 ]
Rani, K. Yamuna [1 ]
Sumana, C. [1 ]
机构
[1] Indian Inst Chem Technol, CSIR, Chem Engn Div, Proc Dynam & Control Grp, Hyderabad 500007, Telangana, India
关键词
Chemical looping combustion; H-2; production; Steam reforming; Steady state model; Self-sustained process; CARBON-DIOXIDE CAPTURE; OXYGEN CARRIERS; THERMODYNAMIC ANALYSIS; POWER-PLANTS; TECHNOLOGY; ENERGY; PERFORMANCE; REACTOR; INTEGRATION; TRANSITION;
D O I
10.1016/j.jclepro.2017.05.136
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Chemical looping processes with their inherent feature of CO2 sequestration are found to be promising in developing alternative combustion and reforming technologies that are cleaner and safer. In the present work, a novel, self-sustained, efficient process scheme has been proposed for the production of high purity hydrogen by integrating sorption enhanced steam methane reforming (SESMR) with chemical looping combustion (CLC) and by incorporating heat recovery steam generation (HRSG) as well as power generation sections. The integration between SESMR and CLC is proposed with the objectives of increasing H-2 productivity, reducing CO2 emission while effectively conserving the process heat, which is achieved by coupling fuel reactor flue gases with reformer and air reactor outlet gases with regenerator. Thermodynamic investigation of the proposed process is carried out based on a steady state plant wide model developed using ASPEN Plus. Further, sensitivity analysis is carried out to analyse the process performance and to evaluate the optimum operating parameters. The results demonstrate the improved performance of proposed scheme over existing processes in terms of exhibiting 98.05% H-2 purity, 95.1% CO2 capture efficiency along with 70.3% energy and 68.24% exergy efficiencies. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:687 / 701
页数:15
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