Impact of choice of CO2 separation technology on thermo-economic performance of Bio-SNG production processes

被引:50
|
作者
Heyne, Stefan [1 ]
Harvey, Simon [1 ]
机构
[1] Chalmers Univ Technol, Environm & Energy Dept, S-41296 Gothenburg, Sweden
关键词
synthetic natural gas; thermo-economics; CO2; separation; biomass gasification; modelling; energy systems; biofuels; NATURAL-GAS SNG; PRESSURE-SWING ADSORPTION; CATALYTIC INCINERATORS; OPTIMIZE SCRUBBERS; MEMBRANE PROCESSES; POWER-PLANTS; ACID GASES; BIOMASS; GASIFICATION; REMOVAL;
D O I
10.1002/er.3038
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Three different CO2 separation technologies for production of synthetic natural gas (SNG) from biomass gasification - amine-based absorption, membrane-based separation and pressure swing adsorption - are investigated for their thermo-economic performance against the background of different possible future energy market scenarios. The studied scale of the SNG plant is a thermal input of 100 MWth,LHV to the gasifier at a moisture content of 20 wt-% with a preceding drying step reducing the biomass' natural moisture content of 50 wt-%. Preparation of the CO2-rich stream for carbon capture and storage is investigated for the amine-based absorption and the membrane-based separation technology alternatives. The resulting cold gas efficiency (cg) for the investigated process alternatives ranges between 0.65 and 0.695. The overall system efficiency (sys) ranges from 0.744 to 0.793, depending on both the separation technology and the background energy system. Amine-based absorption gives the highest cold gas efficiency whereas the potential for cogeneration of electricity from the process' excess heat is higher for membrane-based separation and pressure swing adsorption. The estimated specific production costs for SNG c(SNG) for a process input of 90.3 MWth,LHV at 50 wt-% moisture vary between 103-127 Euro(2010)/MWh(SNG). The corresponding production subsidy level c(subsidy) needed to achieve end-user purchase price-parity with fossil natural gas is in the range of 56-78 Euro(2010)/MWh(SNG) depending on both the energy market scenario and the CO2 separation technology. Sensitivity analysis on the influence of changes in the total capital cost for the SNG plant on the production cost indicates a decrease of about 12% assuming a 30% reduction in total capital investment. Capture and storage of biogenic CO2 - if included in the emission trading system - only becomes an option at higher CO2 charges. This is due to increased investment costs but, in particular, due to the rather high costs for CO2 transport and storage that have been assumed in this study. Copyright (c) 2013 John Wiley & Sons, Ltd.
引用
收藏
页码:299 / 318
页数:20
相关论文
共 50 条
  • [1] Thermo-economic analyses of IGCC power plants employing warm gas CO2 separation technology
    Rosner, Fabian
    Chen, Qin
    Rao, Ashok
    Samuelsen, Scott
    Jayaraman, Ambal
    Alptekin, Gokhan
    ENERGY, 2019, 185 : 541 - 553
  • [2] Process and economic data for the thermo-economic analyses of IGCC power plants employing warm gas CO2 separation technology
    Rosner, Fabian
    Chen, Qin
    Rao, Ashok
    Samuelsen, Scott
    Jayaraman, Ambal
    Alptekin, Gokhan
    DATA IN BRIEF, 2019, 27
  • [3] Techno-economic performance of sustainable international bio-SNG production and supply chains on short and longer term
    Batidzirai, Bothwell
    Schotman, Geert S.
    van der Spek, Mijndert W.
    Junginger, Martin
    Faaij, Andre P. C.
    BIOFUELS BIOPRODUCTS & BIOREFINING-BIOFPR, 2019, 13 (02): : 325 - 357
  • [4] H2 processes with CO2 mitigation: Thermo-economic modeling and process integration
    Tock, Laurence
    Marechal, Francois
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (16) : 11785 - 11795
  • [5] Effects on global CO2 emissions when substituting LPG with bio-SNG as fuel in steel industry reheating furnaces—the impact of different perspectives on CO2 assessment
    Maria T. Johansson
    Energy Efficiency, 2016, 9 : 1437 - 1445
  • [6] Economic viability of SNG production from power and CO2
    Guilera, Jordi
    Morante, Joan Ramon
    Andreu, Teresa
    ENERGY CONVERSION AND MANAGEMENT, 2018, 162 : 218 - 224
  • [7] Effects on global CO2 emissions when substituting LPG with bio-SNG as fuel in steel industry reheating furnaces-the impact of different perspectives on CO2 assessment
    Johansson, Maria T.
    ENERGY EFFICIENCY, 2016, 9 (06) : 1437 - 1445
  • [8] Thermo-economic performance of a compressed CO2 energy storage system with a flexible gas holder
    Zhao, Rijing
    Liu, Zhan
    JOURNAL OF ENERGY STORAGE, 2023, 60
  • [9] THERMO-ECONOMIC ANALYSIS OF A RECOMPRESSION SUPERCRITICAL CO2 CYCLE COMBINED WITH A TRANSCRITICAL CO2 CYCLE
    Wang, Xurong
    Wu, Yi
    Wang, Jiangfeng
    Dai, Yiping
    Xie, Danmei
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2015, VOL 9, 2015,
  • [10] Thermo-economic analysis of SOFC-CLC cogeneration system based on CO2 separation with natural cooling
    Zhang, Hongsheng
    Li, Hanlin
    Yang, Xiaoyu
    Zhang, Yipeng
    Liu, Yifeng
    Duan, Chenghong
    Qin, Jiyun
    ENERGY CONVERSION AND MANAGEMENT, 2024, 322