Cost Analysis of Carbon Capture and Sequestration of Process Emissions from the U.S. Industrial Sector

Author:

Pilorgé Hélène1,McQueen Noah1,Maynard Daniel1,Psarras Peter1ORCID,He Jiajun2,Rufael Tecle3,Wilcox Jennifer1ORCID

Affiliation:

1. Department of Chemical Engineering, Worcester Polytechnic Institute, Goddard Hall, 100 Institute Road, Worcester, Massachusetts 01609, United States

2. Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, 1206 W Green Street, Urbana, Illinois 61801, United States

3. Facilities Engineering Department, Process Engineering Unit, Chevron Energy Technology Company, 1400 Smith, Houston, Texas 77002, United States

Publisher

American Chemical Society (ACS)

Subject

Environmental Chemistry,General Chemistry

Reference43 articles.

1. Long term climate implications of 2050 emission reduction targets

2. IPCC. Climate Change 2007: Synthesis Report; Core Writing Team; Pachauri, R. K., Reisinger, A., Eds. Geneva, Switzerland, 2007.

3. Heitkamp, H. Text-S.1535-115th Congress (2017-2018): FUTURE Act. https://www.congress.gov/bill/115th-congress/senate-bill/1535/text (accessed Aug 13, 2019).

4. U.S. Environmental Protection Agency (EPA). Sources of Greenhouse Gas Emissions. https://www.epa.gov/ghgemissions/sources-greenhouse-gas-emissions (accessed Aug 13, 2019).

5. Environmental Protection Agency (EPA). Facility Level Information on GreenHouse gases Tool (FLIGHT)-2017 Greenhouse Gas Emissions from Large Facilities. https://ghgdata.epa.gov/ghgp/main.do# (accessed Aug 2, 2019).

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