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CARBON
CAPTURE
Dr. Salem Baidas
ENVIRONMENTAL SUSTAINABILITY SLIDESHOWS FROM
S2ADESIGN.COM
S2ADESIGN.COM
AGENDA
DEFINITION
01
CCUS
02
CHALLENGES
03
UN POLICY
04
INFOGRAPHICS
05
Carbon capture
The Process of Capturing Carbon
Dioxide Gas Produced by Industrial
Processes Preventing its Release
into the Atmosphere.
REDUCE EMISSIONS
Reduce Carbon Emissions as Carbon
Dioxide is the Primary Greenhouse
Gas Contributing to Climate Change.
CCUS TECHNOLOGY
Carbon Capture Utilization & Storage:
a Suite of Technologies that Perform
Carbon Capture. Involves Four Stages
Capture, Transport, Storage, and Use.
IEA.ORG
Enhanced oil recovery (eor)
Captured Carbon is Injected Into
Oil Wells to Enhance Oil Extraction
Resulting in Carbon Storage.
Direct air capture (dac)
Directly Capturing Carbon from the
Atmosphere for Sequestration or
Utilization.
Carbon Sequestration
Captured Carbon is Deposited into
Geological Formations or through
Mineralization in Rocks.
Carbon Absorption by Ammonia
Aqueous Ammonia Captures CO2
from Flue Gas at a Quick Rate and
High Removal Efficiency.
Ccus Technologies
Carbon capture
ENERGY.GOV
CCUS Captures Carbon Emissions from Industries, Preventing their
Entry into the Atmosphere and Mitigating Climate Change.
Climate
CCUS Deployment Generates Job Opportunities in Many Industries
such as Engineering, Construction, and Operations.
economy
CCUS Technology Enhances National Energy Security by Increasing
Domestic Energy Supply.
Energy security
Carbon Dioxide Based Steam Cycles can Enhance Power Efficiency
by Transferring More Heat and Reducing Energy Consumption.
efficiency
Carbon Dioxide, Captured and Stored Using CCUS, can be Utilized
for EOR, Chemical Feedstock, and Various Other Applications.
Future use
advantages
Carbon capture
SOLARTRONISA.COM
The Current Cost of Capturing and Storing Carbon can be too High
to be Economically Viable, Especially for Smaller Industrial Facilities.
High cost
Remote Carbon Storage Requires New Pipelines and Retrofitting of
Existing Infrastructure, which is Complex and Expensive.
Infrastructure
Carbon is Typically Stored in Former Oil and Gas Wells with Limited
Capacity, and Finding Suitable Sites is Time-Consuming and Costly.
Storage
Carbon Dioxide can Cause Significant Damage to Materials, such as
Corrosion, Degradation, Embrittlement, and Scaling.
safety
Lack of an International and Comprehensive Regulatory Framework
for CCUS Deployment and Carbon Pricing.
regulation
SOLARTRONISA.COM
challenges
Carbon capture
unfccc
Growing Recognition of CCUS Role in
Meeting Net Zero Goals is Translating
into Increased Policy Support for CCUS
Deployment. The IPCC have Outlined
an Important Role for CCUS to Reach
Net Zero Emissions by 2050.
UNFCCC.INT
United Nations Climate Change
Global Climate Action
This is a placeholder text. This text can
be replaced with your own text. This
text can be replaced with your own text.
This is a placeholder text. This text can
be replaced with your own text. This
text can be replaced with your own text.
9.7
6.6
4.1
3.6
0
10
20
30
40
50
60
1940 1950 1960 1970 1980 1990 2000 2010 2020
Can Be Captured By CCUS (90%) Carbon Emissions
8X
INCREASE
ICOS-CP.EU
GLOBAL CARBON EMISSIONS
GIGATON CO2
2000 2005 2010 2015 2018 2019 2020
10 12 13
28
37 37
42
ENERGYMONITOR.AI
carbon emissions captured by ccus
MILLION metric tons – CO2
4X
INCREASE
275
240
125
75
50
Reforestation
DAC
E. Weathering
Biochar
BECCS
ENERGYMONITOR.AI
AVERAGE COST OF CARBON REMOVAL BYTECHNOLOGY
DollarPer Metric Ton CO2 (2020)
42MMT
Of Carbon Emissions
was Captured by
CCUS in 2020.
$50
Per MTCO2 was the
Lowest Cost to
Remove Carbon
Using Bioenergy with
Carbon Capture and
Storage (BECCS)
Technology in 2020.
37GT
Global Carbon
Emissions in 2021.
Their Highest Level
to Date.
ENERGYMONITOR.AI
GLOBAL Ccus technology
Key highlights
S2ADesign.com

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Carbon Capture and Storage

  • 2. ENVIRONMENTAL SUSTAINABILITY SLIDESHOWS FROM S2ADESIGN.COM S2ADESIGN.COM
  • 4.
  • 5. Carbon capture The Process of Capturing Carbon Dioxide Gas Produced by Industrial Processes Preventing its Release into the Atmosphere.
  • 6.
  • 7. REDUCE EMISSIONS Reduce Carbon Emissions as Carbon Dioxide is the Primary Greenhouse Gas Contributing to Climate Change.
  • 8. CCUS TECHNOLOGY Carbon Capture Utilization & Storage: a Suite of Technologies that Perform Carbon Capture. Involves Four Stages Capture, Transport, Storage, and Use.
  • 10. Enhanced oil recovery (eor) Captured Carbon is Injected Into Oil Wells to Enhance Oil Extraction Resulting in Carbon Storage. Direct air capture (dac) Directly Capturing Carbon from the Atmosphere for Sequestration or Utilization. Carbon Sequestration Captured Carbon is Deposited into Geological Formations or through Mineralization in Rocks. Carbon Absorption by Ammonia Aqueous Ammonia Captures CO2 from Flue Gas at a Quick Rate and High Removal Efficiency. Ccus Technologies Carbon capture ENERGY.GOV
  • 11. CCUS Captures Carbon Emissions from Industries, Preventing their Entry into the Atmosphere and Mitigating Climate Change. Climate CCUS Deployment Generates Job Opportunities in Many Industries such as Engineering, Construction, and Operations. economy CCUS Technology Enhances National Energy Security by Increasing Domestic Energy Supply. Energy security Carbon Dioxide Based Steam Cycles can Enhance Power Efficiency by Transferring More Heat and Reducing Energy Consumption. efficiency Carbon Dioxide, Captured and Stored Using CCUS, can be Utilized for EOR, Chemical Feedstock, and Various Other Applications. Future use advantages Carbon capture SOLARTRONISA.COM
  • 12. The Current Cost of Capturing and Storing Carbon can be too High to be Economically Viable, Especially for Smaller Industrial Facilities. High cost Remote Carbon Storage Requires New Pipelines and Retrofitting of Existing Infrastructure, which is Complex and Expensive. Infrastructure Carbon is Typically Stored in Former Oil and Gas Wells with Limited Capacity, and Finding Suitable Sites is Time-Consuming and Costly. Storage Carbon Dioxide can Cause Significant Damage to Materials, such as Corrosion, Degradation, Embrittlement, and Scaling. safety Lack of an International and Comprehensive Regulatory Framework for CCUS Deployment and Carbon Pricing. regulation SOLARTRONISA.COM challenges Carbon capture
  • 13.
  • 14. unfccc Growing Recognition of CCUS Role in Meeting Net Zero Goals is Translating into Increased Policy Support for CCUS Deployment. The IPCC have Outlined an Important Role for CCUS to Reach Net Zero Emissions by 2050. UNFCCC.INT United Nations Climate Change Global Climate Action
  • 15. This is a placeholder text. This text can be replaced with your own text. This text can be replaced with your own text. This is a placeholder text. This text can be replaced with your own text. This text can be replaced with your own text. 9.7 6.6 4.1 3.6
  • 16. 0 10 20 30 40 50 60 1940 1950 1960 1970 1980 1990 2000 2010 2020 Can Be Captured By CCUS (90%) Carbon Emissions 8X INCREASE ICOS-CP.EU GLOBAL CARBON EMISSIONS GIGATON CO2
  • 17. 2000 2005 2010 2015 2018 2019 2020 10 12 13 28 37 37 42 ENERGYMONITOR.AI carbon emissions captured by ccus MILLION metric tons – CO2 4X INCREASE
  • 18. 275 240 125 75 50 Reforestation DAC E. Weathering Biochar BECCS ENERGYMONITOR.AI AVERAGE COST OF CARBON REMOVAL BYTECHNOLOGY DollarPer Metric Ton CO2 (2020)
  • 19. 42MMT Of Carbon Emissions was Captured by CCUS in 2020. $50 Per MTCO2 was the Lowest Cost to Remove Carbon Using Bioenergy with Carbon Capture and Storage (BECCS) Technology in 2020. 37GT Global Carbon Emissions in 2021. Their Highest Level to Date. ENERGYMONITOR.AI GLOBAL Ccus technology Key highlights