Helping Pay For CO 2 Capture Projects Through Geological Sequestration of CO 2 Used for Enhanced Oil Recovery (EOR)

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Helping Pay For CO 2 Capture Projects Through Geological Sequestration of CO 2 Used for Enhanced Oil Recovery (EOR) Eric Redman, President & CEO Summit Power Group, LLC Oil & Gas Industry Forum Denver September 26, 2014

Summit Power Group & Summit Carbon Capture Founded twenty five (25) years ago by Don Hodel (Chairman emeritus), Secretary of Energy & Interior for President Reagan, and Earl Gjelde (Chairman), COO for Hodel at Energy & Under Secretary of Interior Types of power projects that Summit develops for itself and others: Renewables: wind projects, solar projects, etc. State of the art natural gas fired power plants Coal gasification projects with carbon capture and CO 2 for EOR Post combustion capture for fuel burning power plants & for EOR Summit has long standing relationships with vendors, engineers, contractors, etc. including new relationships with Chinese engineering and power companies, Chinese banks, and Chinese firms Summit projects completed to date: Totaling $9 B (current US dollars) and over 9,500 MW Summit CO 2 for EOR projects in development: Will total at least an additional $7 8 B (US dollars) when completed 2

U.S. CO 2 Emissions, Emission Reductions, & EOR United States emitted 5,383 million metric tons of CO 2 in 2012 1 Power generation accounts for 2,023 million metric tons of CO 2 Coal provided 52% of US electricity in 2000, and 37% in 2014 President Obama and the US Environmental Protection Agency (EPA) have proposed to cut power plant CO 2 emissions by thirty percent (30%) from 2005 levels by 2030 Efficiency, renewables, and nuclear power alone cannot achieve emissions reductions of this scale on a worldwide basis Carbon capture from coal and natural gas power plants will need to be implemented to decrease CO 2 emitted to the atmosphere Currently, CO 2 for Enhanced Oil Recovery (EOR) is the only economic large scale way to cut CO 2 emissions from hydrocarbon based power plants (algae growing won t suffice) 1 EPA: Inventory of US Greenhouse Gas Emissions and Sinks: 1990 2012 (April 2014) 3

EOR can help pay the costs of CO 2 capture Power Plants: 1 MWh hour of coal combustion power 1 ton of CO 2 emitted or 1 ton of CO 2 captured CO 2 $$ Revenue for CO 2 capture Oil Fields: 1 ton of CO 2 injected & re injected until 100% is trapped underground 2 3 barrels of additional oil produced $$ CO 2 4

Use of CO 2 for Enhanced Oil Recovery (EOR) CO 2 acts as a solvent oil that is stuck to the rock is released5

Long Ago: Original Reservoir is Fully Charged with Oil Surface Cap Rock Oil Water 6

Tectonic Activity Tilts & Structures Reservoir Slides in this series adapted, with thanks, from Steve Melzer of ARI, a top US expert in this field 7

Water Entering Through The Surface Floods the Reservoir Over Geologic Time NATURAL GRAVITY WATER FLOOD FLUSHES AWAY MOST OF THE OIL 8

NATURE S WATER FLOOD LEAVES BEHIND: 1. HIGH OIL SATURATION IN STRUCTURAL HIGH AREAS (THESE BECOME MAIN PAY ZONES ) 2. SOME UNSWEPT OIL ACCUMULATIONS IN THE ROCK 3. RESIDUAL OIL MIXED WITH WATER (10 60% oil, average 40%) 4. HIGH WATER SATURATION AT BASE OF RESERVOIR 9

TYPICAL SEQUENCE OF OIL PRODUCTION IN MAIN PAY ZONE: 1. PRIMARY PRODUCTION: NATURAL RESERVOIR PRESSURE 2. THEN: WATER FLOODING (SECONDARY RECOVERY) 3. THEN: CO 2 FLOODING (TERTIARTY RECOVERY or EOR)* *The technique of alternating water and CO 2 injections is called water alternating gas (WAG), also known as wagging 10

Oil Saturation in the Residual Oil Zone ( ROZ ) Is Essentially Identical to that in the Main Pay Zone AFTER Water Flooding This Makes the ROZ Attractive for CO 2 Flooding, Too Initial Oil Saturation 60%-85% After Water Flooding 10-60% Initial Oil Saturation 10%-60% (mostly less than 40%) RESIDUAL OIL ZONE MAIN PAY ZONE 11

Today Major West Texas Oil Fields Have Been Water Flooded and More than 100 Fields are Under CO 2 Flooding in the Main Pay Zones CO 2 Flooding is Now Being Performed in the Residual Oil Zone Major Oilfield Major Oilfield Major Oilfield MAIN PAY ZONE RESIDUAL OIL ZONE Conventional Oil-Water Contact (tilted) Base of Oil Saturation 12

Steve Melzer s Expert Analysis of CO 2 for EOR in a Texas Oilfield: Production in Red Circle = Total Barrels of Oil from CO 2 Production of T = Barrels from Tertiary CO 2 Recovery in Main Pay Zone Q = Barrels from Quaternary CO 2 Recovery in Residual Oil Zone 13

CO 2 for EOR Potential The U.S. Example United States has at least 48 billion barrels of CO 2 EOR potential 1 Currently, 250,000 barrels a day of oil is produced with CO 2 EOR at $100 per barrel, this represents $9+ billion in annual gross revenue About 20 billion tons of CO 2 is needed to produce 48 billion bbls of oil if used for EOR, all 20 billion tons would be permanently sequestered Only ~60 million tons of CO 2 is currently injected per year for EOR At current rates of CO 2 injection, the US has at least 320 more years before depletion of EOR reservoirs (some estimates are much higher) But almost all CO 2 currently used for EOR is from geologic reservoirs Geologic reservoirs are depleting; must be replaced by anthropogenic CO 2 that is, CO 2 captured from power plants and industrial facilities The single largest barrier to expanding CO 2 flooding is the lack of substantial volumes of reliable and affordable CO 1 2 1 US Oil Production Potential From Accelerated Deployment of Carbon Capture and Storage, Advanced Resources International Inc., March 2010 14

Natural CO 2 supplies can t meet industry demand Existing natural CO 2 sources in Texas Gulf, Permian, and Wyoming have capacity of 3 Bcf/day. Industry and US Government projections call for tripling of demand. Extra supply must come mostly from captured CO 2 (i.e., CCS from industry and power plants). One (1) Bcf/day is 20 million tons a year. So Kinder Morgan s chart shows annual demand going from 60 million tons per year to 200 million tons per year. 3 Bcf/day is total of natural sources Source: Kinder Morgan 2012 Analyst Presentation 15

Summit s Texas Clean Energy Project will turn Coal, Salty Water & Air into Near Zero Carbon Power, Fertilizer, and Sequestered CO 2 for EOR Low Sulfur Coal via Railroad Brackish Water Purified via Reverse Osmosis Air Separation Unit Coal Water Oxygen Coal Gasification, Gas Cleanup, and Gas Separation Main Outputs: High Hydrogen Syngas (~95% H 2 /5% CO) & Pure CO 2 Syngas Syngas CO 2 CO 2 * Additional revenue from sales of sulfuric acid, argon gas, & minor products High Hydrogen Power Turbine Ammonia / Urea Complex CO 2 Delivered to Oil Fields via Pipeline 195 MW low carbon power to San Antonio about 1/12 th the CO 2 of conventional coal plant 710,000 tons/yr delivered to CHS Inc. about ¼ the CO 2 of typical fertilizer plant 2.0 mm tons per year delivered of CO 2 to Oil Companies, 100% eventually sequestered 16 16

What Makes the Texas Clean Energy Project (TCEP) Important? TCEP will be the first power project world wide to: Use state of the art technology to gasify coal AND Transform the output into two separate gas streams of hydrogen and CO 2 AND Sequester more than 90% of the coal s CO 2 permanently AND Use the CO 2 commercially in enhanced oil recovery AND Demonstrate that this works for both the end use markets of power (lowest carbon content of any hydrocarbon power plant) and chemicals AND Pair China & the U.S. in funding & building a full scale CO 2 capture power plant 17 Siemens Gasifiers in Ningxia, China Linde Rectisol CO 2 Separation

World s largest gasification project: In Ningxia China leads the world in coal gasification for chemical products. China can lead the world in CO 2 capture from coal gasification, too. Why not oil production from captured CO 2 (EOR)? And low carbon electric power from coal gasification? 18

CO 2 Can Also Be Captured from Coal Burning Plants, including via Retrofitting those Plants. Capturing CO 2 from Flue Gas (Exhaust) of a Combustion Plant is Called Post Combustion Capture (PCC). 19

Some active post combustion capture projects Project Name Location Fuel Plant Barry US Coal (Alabama) Equipment Provider* Status Notes Operating Since June 25 MW Slipstream. 2011 No EOR all sequestered Boundary Dam Canada Coal Under Construction will be operating Fall 2014 160 MW. 90% capture. CO2 used for EOR. W.A. Parish US (TX) Coal Financial closing announced July 2014 250 MW. 90% Capture. CO2 used for EOR Peterhead UK (Scotland) Gas FEED stage One of two winners of UK CCUS competition. Expected to begin operations in 2018 *Other suppliers of proven PCC systems include Huaneng/CERI, Linde/BASF, Fluor, etc. 20

Questions & Answers about CO 2 for EOR Question Do power plants need to capture carbon? Can power plants capture carbon? Can oil wells really use CO 2? Will oil producers pay for CO 2? Can CO 2 be transported? Answer Yes. Power sector is largest source of CO 2. In the U.S., new rules demand huge cut in CO 2 emissions. Reduced carbon emissions = high priority in U.S. and China. Yes. Huaneng /CERI has captured CO 2 in China. Systems being installed now in North America (Shell & Mitsubishi). Yes. In the US, about 100 million barrels/year come from CO 2 use. China could produce as much or more. China has suitable geology in main pay zones and residual oil zones. Yes. Current prices about $35 40 per ton in Texas. Lower in some states, potentially higher in other states. Yes. Already 5,000 miles of CO 2 pipelines in the U.S. Does CO 2 for EOR produce permanent carbon sequestration? Doesn t the produced oil have carbon, too? Yes. CO 2 that comes to the surface with oil is recompressed and re injected. Ultimately it all stays down. Yes. But much less than the CO 2 that s injected. No other oil production method traps CO 21 2 underground.

Dr. S. Julio Friedmann, US Department of Energy Last year, the world used more wind power, solar energy, biomass, and hydro energy than ever before. We also used more coal, oil, natural gas, and nuclear power than ever before. We used more energy in total than ever before. 22

Why CO 2 Sequestration Matters 400 ppm Plaque on Mauna Loa in Hawai i 2014 23

Conclusion: CO 2 EOR is not new, it is important for sequestration and it can help pay for CO 2 capture 24

谢谢! Thank you! Summit Power Group, LLC 83 South King Street Seattle, Washington 98104 www.summitpower.com www.texascleanenergyproject.com 25