Location Planning for the Production of CO2-Based Chemicals Using the Example of Olefin Production

被引:5
|
作者
Thonemann, Nils [1 ]
Stiessel, Sebastian [1 ]
Maga, Daniel [1 ]
Hiebel, Markus [1 ]
Dresen, Boris [1 ]
Hunstock, Bjorn [1 ]
Deerberg, Goerge [1 ]
Weidner, Eckhard [1 ]
机构
[1] Fraunhofer UMSICHT, Osterfelder Str 3, D-46047 Oberhausen, Germany
关键词
Carbon capture and use; CO2; sources; use; Location planning; Methanol-to-olefins; CARBON-DIOXIDE CAPTURE; LIFE-CYCLE ASSESSMENT; METHANOL PRODUCTION; ENERGY-STORAGE; CO2; CAPTURE; TECHNOLOGIES; HYDROGENATION; CONVERSION; OPTIONS; GAS;
D O I
10.1002/cite.201800147
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The use of CO2 as raw material is increasingly gaining in importance as an option for climate protection and as an alternative raw material feedstock. Both direct electrochemical syntheses and thermochemical processes are associated with a high demand for electrical energy. A contribution to climate protection is only possible in the case of low-carbon power generation, as can be realized, e.g., by wind power or solar energy. This article presents a methodology for identifying suitable sites for the CO2-based production of olefins in Germany.
引用
收藏
页码:1238 / 1250
页数:13
相关论文
共 50 条
  • [21] Cleaning using CO2-based solvents
    Zhang, Xiaogang
    Han, Buxing
    CLEAN-SOIL AIR WATER, 2007, 35 (03) : 223 - 229
  • [22] Applications of light olefin oligomerization to the production of fuels and chemicals
    Nicholas, Christopher P.
    APPLIED CATALYSIS A-GENERAL, 2017, 543 : 82 - 97
  • [23] Life cycle assessment of CO2-based C1-chemicals
    Sternberg, Andre
    Jens, Christian M.
    Bardow, Andre
    GREEN CHEMISTRY, 2017, 19 (09) : 2244 - 2259
  • [24] Proposed concept for CO2-based trigeneration of chemicals, fuels, and electricity.
    Song, CS
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2000, 219 : U253 - U254
  • [25] Techno-economic evaluation of different CO2-based processes for dimethyl carbonate production
    Kongpanna, Pichayapan
    Pavarajarn, Varong
    Gani, Rafiqul
    Assabumrungrat, Suttichai
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2015, 93 : 496 - 510
  • [26] Dynamics of fluid and heat flow in a CO2-based injection-production geothermal system
    Feng Guan-hong
    Xu Tian-fu
    Zhu Hui-xing
    JOURNAL OF GROUNDWATER SCIENCE AND ENGINEERING, 2016, 4 (04): : 377 - 388
  • [27] Environmental and economic assessment of global and German production locations for CO2-based methanol and naphtha
    Kaiser, Simon
    Prontnicki, Katharina
    Bringezu, Stefan
    GREEN CHEMISTRY, 2021, 23 (19) : 7659 - 7673
  • [28] CO2-based production of C2-C6 acids and alcohols: The potential of novel Clostridia
    Thunuguntla, Rahul
    Atiyeh, Hasan K.
    Huhnke, Raymond L.
    Tanner, Ralph S.
    BIORESOURCE TECHNOLOGY REPORTS, 2024, 25
  • [29] Lean production in factory planning using the example of an automotive supplier
    Reichardt J.
    Münster C.G.
    Schulze C.P.
    ZWF Zeitschrift fuer Wirtschaftlichen Fabrikbetrieb, 2010, 105 (04): : 294 - 298
  • [30] Bioprocessing analysis of Pyrococcus furiosus strains engineered for CO2-based 3-hydroxypropionate production
    Hawkins, Aaron B.
    Lian, Hong
    Zeldes, Benjamin M.
    Loder, Andrew J.
    Lipscomb, Gina L.
    Schut, Gerrit J.
    Keller, Matthew W.
    Adams, Michael W. W.
    Kelly, Robert M.
    BIOTECHNOLOGY AND BIOENGINEERING, 2015, 112 (08) : 1533 - 1543