GC074
Near-Zero Emissions Energy Systems: Geophysical Opportunities, Constraints, and Consequences II Posters

Friday, 11 December 2020: 04:00-20:59
Poster
Primary Convener:  Ken Caldeira, Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States
Conveners:  Rebecca Peer, University of Canterbury, Civil and Natural Resources Engineering, Christchurch, New Zealand, Tyler Ruggles, Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States and Dan Tong, University of California Irvine, Department of Earth System Science, Irvine, CA, United States
Primary Liaison:  Ken Caldeira, Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States
Chairs:  Ken Caldeira1, Rebecca Peer2, Tyler Ruggles1 and Dan Tong3, (1)Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States(2)University of Canterbury, Civil and Natural Resources Engineering, Christchurch, New Zealand(3)University of California Irvine, Department of Earth System Science, Irvine, CA, United States
OSPA Liaison:  Tyler Ruggles, Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States
 
A Macro Energy Modeling Framework For Transparent Investigation Of Fundamental Energy System Properties (687009)
Ken Caldeira1, Nate Lewis2, Katherine Rinaldi2, Jacqueline A. Dowling2, Steven J Davis3, Dan Tong4, David J Farnham5, Tyler Ruggles6, Muriel Hauser6, Candise Henry7, Mengyao Yuan6, Fan Tong8 and Lei Duan9, (1)Carnegie Institution for Science, Dept. of Global Ecology, Washington, DC, United States, (2)California Institute of Technology, Division of Chemistry and Chemical Engineering, Pasadena, CA, United States, (3)University of California Irvine, Department of Earth System Science, Irvine, CA, United States, (4)Department of Earth System Science,Tsinghua University, Beijing, China, (5)Columbia University, Department of Earth and Environmental Engineering, New York, NY, United States, (6)Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States, (7)RTI International, Durham, United States, (8)Lawrence Berkeley National Laboratory, Berkeley, United States, (9)Zhejiang University, Hangzhou, China
 
Assessing the influence of freshwater consumption priorities on zero-carbon electricity planning: A case of Senate Bill 100 compliance in California (665204)
Brian Tarroja, University of California Irvine, Irvine, CA, United States, Rebecca Peer, Carnegie Institution for Science Stanford, Dept. of Global Ecology, Stanford, CA, United States, Kelly Sanders, University of Southern California, Los Angeles, CA, United States and Emily Grubert, Georgia Institute of Technology Main Campus, School of Civil and Environmental Engineering, Atlanta, GA, United States
 
Cost Sensitivity of Electricity Systems to the Shape of Electricity Demand Curve: A Sub-Saharan Africa Example (739364)
Muriel Hauser1, Tyler Ruggles1, Candise Henry2, Ken Caldeira1, Rebecca Peer3 and Enrico Antonini1, (1)Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States, (2)RTI International, Durham, NC, United States, (3)Carnegie Institution for Science Stanford, Dept. of Global Ecology, Stanford, CA, United States
 
Electrofuels and curtailment of wind and solar power (672731)
Tyler Ruggles1, David J Farnham1, Candise Henry2, Rebecca Peer3, Lei Duan4, Enrico Antonini1, Muriel Hauser1, Nate Lewis5, Jacqueline A. Dowling5, Katherine Rinaldi5, Steven J Davis6, Dan Tong7 and Ken Caldeira1, (1)Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States, (2)RTI International, Durham, NC, United States, (3)University of Canterbury, Christchurch, New Zealand, (4)Carnegie Institution for Science, Department of Global Ecology, Stanford, United States, (5)California Institute of Technology, Division of Chemistry and Chemical Engineering, Pasadena, CA, United States, (6)University of California Irvine, Department of Earth System Science, Irvine, CA, United States, (7)Department of Earth System Science,Tsinghua University, Beijing, China
 
Exploring Technology Pathways to Achieve Deep Decarbonization in the United States by Mid-Century (716943)
Hadi Eshraghi and Joseph DeCarolis, NC State Univ-Civil & Env Engr, Raleigh, NC, United States
 
Feasibility Study of China's Electric Power Sector Transition to Zero Emissions by 2050 (762975)
Oleg Lugovoy1, Shuo Gao2, Ji Gao2 and Kejun Jiang3, (1)Environmental Defense Fund DC, Washington, DC, United States, (2)Environmental Defense Fund, China, Beijing, China, (3)ERI, Beijing, China
 
Global geologic carbon storage requirements of climate change mitigation scenarios (753139)
Christopher Zahasky, University of Wisconsin Madison, Department of Geoscience, Madison, United States and Samuel C Krevor, Imperial College London, Earth Science & Engineering, London, SW7, United Kingdom
 
Hydropower is Not Universally Low-Carbon (755488)
Ilissa Ocko and Steve Hamburg, Environmental Defense Fund New York, New York, NY, United States
 
Joint Spatio-Temporal Simulation of Gridded Wind-Solar Fields (693355)
Yash Vijay Amonkar, New York, NY, United States; Columbia University of New York, Earth and Environmental Engineering, New York, NY, United States, David J Farnham, Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States and Upmanu Lall, Columbia University, New York, NY, United States
 
Predicting Land Usage, Optimal Design and Performance of Large-Scale Deployments of Direct Air Capture Devices (760149)
Paolo Luzzatto-Fegiz and Samaneh Sadri, University of California Santa Barbara, Santa Barbara, CA, United States
 
SUGARCANE BASED ENERGY CARRIERS FOR AUTOMOBILES, A COST COMPETITIVE NEAR ZERO ENERGY ALTERNATIVE (680802)
Sérgio Pacca, University of Sao Paulo, Sao Paulo, United States and Jose Roberto Moreira, USP University of Sao Paulo, São Paulo, Brazil
 
The Albedo-Climate Penalty of Hydropower (663216)
Georg Wohlfahrt1, Albin Hammerle1 and Enrico Tomelleri2, (1)University of Innsbruck, Department of Ecology, Innsbruck, Austria, (2)Free University of Bozen-Bolzano, Bolzano, Italy
 
The case for estimating carbon return on investment for near-zero emissions energy systems: illustrations from CO2 sequestration and methodological recommendations (706946)
Udayan Singh1, Mark A. White2, A. Jasmin Melara3 and Lisa M. Colosi1, (1)University of Virginia, Department of Engineering Systems and Environment, Charlottesville, VA, United States, (2)University of Virginia, McIntire School of Commerce, Charlottesville, VA, United States, (3)ICF International, Inc., Washington DC, DC, United States
 
Wind and Solar Droughts over western North America (742166)
Patrick T Brown, San Jose State University, San Jose, CA, United States and David J Farnham, Carnegie Institution for Science, Department of Global Ecology, Stanford, CA, United States