Assessment of reasonable opportunities for direct air capture

被引:78
|
作者
Wilcox, Jennifer [1 ]
Psarras, Peter C. [1 ]
Liguori, Simona [1 ]
机构
[1] Colorado Sch Mines, Dept Chem & Biol Engn, Golden, CO 80401 USA
来源
ENVIRONMENTAL RESEARCH LETTERS | 2017年 / 12卷 / 06期
关键词
direct air capture; negative emissions; carbon capture; CO2; CAPTURE; MINERAL CARBONATION; ALKALINITY SOURCES; FLUE-GAS;
D O I
10.1088/1748-9326/aa6de5
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This work explores the possibility of using CO2 captured directly from the atmosphere for several applications that require low to moderate purities. Comparisons of the minimum and real work for separating CO2 from air, natural gas combined cycle flue gas and pulverized coal combustion flue gas are proposed and discussed. Although it is widely accepted that the separation of CO2 from air to high purity is more energy-intensive than separating CO2 from more concentrated sources, this study presents select cases where the separation of CO2 from air to low and moderate purities is energetically equivalent with the work required for flue gas CO2 separation. These energetically-competitive cases are shown to be dependent on the percent capture and final CO2 purity desired. In particular, several technologies can be considered as CO2 utilization opportunities in which dilute CO2 may be an adequate feedstock. Specifically, this study is focused on enhanced oil recovery and microalgae cultivation technologies, which appear to be the most beneficial near-term applications for utilization of CO2 from direct air capture.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Challenges and Opportunities: Metal-Organic Frameworks for Direct Air Capture
    Bose, Saptasree
    Sengupta, Debabrata
    Rayder, Thomas M.
    Wang, Xiaoliang
    Kirlikovali, Kent O.
    Sekizkardes, Ali K.
    Islamoglu, Timur
    Farha, Omar K.
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2023,
  • [2] Energetic and Life Cycle Assessment of Direct Air Capture: A Review
    Wang, Junyao
    Li, Shuangjun
    Deng, Shuai
    Zeng, Xuelan
    Li, Kaixiang
    Liu, Jianping
    Yan, Jiahui
    Lei, Libin
    [J]. SUSTAINABLE PRODUCTION AND CONSUMPTION, 2023, 36 : 1 - 16
  • [3] Life cycle assessment of a direct air capture and storage plant in Ireland
    Casaban, Daniel
    Tsalaporta, Elena
    [J]. SCIENTIFIC REPORTS, 2023, 13 (01)
  • [4] A comparative exergy-based assessment of direct air capture technologies
    Hoseinpoori, Sina
    Pallares, David
    Johnsson, Filip
    Thunman, Henrik
    [J]. MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE, 2023, 28 (07)
  • [5] A comparative exergy-based assessment of direct air capture technologies
    Sina Hoseinpoori
    David Pallarès
    Filip Johnsson
    Henrik Thunman
    [J]. Mitigation and Adaptation Strategies for Global Change, 2023, 28
  • [6] Life cycle assessment of a direct air capture and storage plant in Ireland
    Daniel Casaban
    Elena Tsalaporta
    [J]. Scientific Reports, 13
  • [7] A comparative energy and costs assessment and optimization for direct air capture technologies
    Sabatino, Francesco
    Grimm, Alexa
    Gallucci, Fausto
    Annaland, Martin van Sint
    Kramer, Gert Jan
    Gazzani, Matteo
    [J]. JOULE, 2021, 5 (08) : 2047 - 2076
  • [8] Direct air capture by membranes
    Shigenori Fujikawa
    Roman Selyanchyn
    [J]. MRS Bulletin, 2022, 47 : 416 - 423
  • [9] The case for direct air capture
    Bettenhausen, Craig A.
    [J]. CHEMICAL & ENGINEERING NEWS, 2022, 100 (10) : 22 - 24
  • [10] Direct air capture by membranes
    Fujikawa, Shigenori
    Selyanchyn, Roman
    [J]. MRS BULLETIN, 2022, 47 (04) : 416 - 423