Integrated process for synthetic natural gas production from coal and coke-oven gas with high energy efficiency and low emission

被引:69
作者
Man, Yi [1 ]
Yang, Siyu [1 ]
Qian, Yu [1 ]
机构
[1] S China Univ Technol, Sch Chem Engn, Guangzhou 510640, Guangdong, Peoples R China
关键词
Coal gasification; Coke-oven gas; SNG; Energy efficiency; CO2; emission; TECHNOECONOMIC ANALYSIS; POWER; POLYGENERATION; COGENERATION; PROGRESS;
D O I
10.1016/j.enconman.2016.03.040
中图分类号
O414.1 [热力学];
学科分类号
摘要
There was a rapid development of coal to synthetic natural gas (SNG) projects in the last few years in China. The research from our previous work and some other researchers have found coal based SNG production process has the problems of environmental pollution and emission transfer, including CO2 emission, effluent discharge, and high energy consumption. This paper proposes a novel co-feed process of coal and coke-oven gas to SNG process by using a dry methane reforming unit to reduce CO2 emissions, more hydrogen elements are introduced to improve resource efficiency. It is shown that the energy efficiency of the co-feed process increases by 4%, CO2 emission and effluent discharge is reduced by 60% and 72%, whereas the production cost decreases by 16.7%, in comparison to the conventional coal to SNG process. As coke-oven gas is a waste gas in most of the coking plant, this process also allows to optimize the allocation of resources. (c) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:162 / 170
页数:9
相关论文
共 25 条
[11]   Cogeneration of substitute natural gas and power from coal by moderate recycle of the chemical unconverted gas [J].
Li, Sheng ;
Jin, Hongguang ;
Gao, Lin .
ENERGY, 2013, 55 :658-667
[12]   Techno-economic evaluation of coal-based polygeneration systems of synthetic fuel and power with CO2 recovery [J].
Lin Hu ;
Jin Hongguang ;
Gao Lin ;
Han Wei .
ENERGY CONVERSION AND MANAGEMENT, 2011, 52 (01) :274-283
[13]   Simulation and assessment of an integrated acid gas removal process with higher CO2 capture rate [J].
Liu, Xia ;
Yang, Siyu ;
Hu, Zhigang ;
Qian, Yu .
COMPUTERS & CHEMICAL ENGINEERING, 2015, 83 :48-57
[14]   Design and Control of the Dry Methane Reforming Process [J].
Luyben, William L. .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2014, 53 (37) :14423-14439
[15]   Conceptual design of coke-oven gas assisted coal to olefins process for high energy efficiency and low CO2 emission [J].
Man, Yi ;
Yang, Siyu ;
Zhang, Jun ;
Qian, Yu .
APPLIED ENERGY, 2014, 133 :197-205
[16]   Environmental impact and techno-economic analysis of the coal gasification process with/without CO2 capture [J].
Man, Yi ;
Yang, Siyu ;
Xiang, Dong ;
Li, Xiuxi ;
Qian, Yu .
JOURNAL OF CLEANER PRODUCTION, 2014, 71 :59-66
[17]  
National Bureau of Statistics of China, 2012, CHIN EN STAT YB
[18]  
National Development and Reform Commission of China, 2015, NOT PRIC RED POW GEN
[19]   Integrated Process of Coke-Oven Gas Tr-Reforming and Coal Gasification to Methanol with High Carbon Utilization and Energy Efficiency [J].
Qian, Yu ;
Man, Yi ;
Peng, Lijuan ;
Zhou, Huairong .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2015, 54 (09) :2519-2525
[20]   Syngas production from reforming of greenhouse gases CH4/CO2 over Ni-Cu/Al2O3 nanocatalyst: Impregnated vs. plasma-treated catalyst [J].
Rahemi, Nader ;
Haghighi, Mohammad ;
Babaluo, Ali Akbar ;
Allahyari, Somaiyeh ;
Jafari, Mahdi Fallah .
ENERGY CONVERSION AND MANAGEMENT, 2014, 84 :50-59