AbstractNaturally occurring CO2 is transported via pipelines to oil fields in West Texas to enhance production. A similar pipeline system is proposed for the Gulf Coast region of Texas. The CO2 would come from anthropogenic sources. Using GIS data, oil fields and CO2 sources are selected and a pipeline route is designed, taking into consideration rights of way and environmental sensitivities. We modified several pipeline cost models from the literature to capture recent construction cost escalations. Our resulting cost estimates agree with mid-to-high range cost quotes for pipelines reported to the Federal Energy Regulatory Commission by the companies
The Brazos Area protraction of the Gulf of Mexico was the focus of exploration and development of Mi...
Current global levels of anthropogenic CO2 emissions are 25.6 Gigatons yr. Approximately 1 Gigaton c...
The Permian Basin in West Texas has seen a long history of CO₂ enhanced oil recovery (EOR). Over 65 ...
Naturally occurring CO2 is transported via pipelines to oil fields in West Texas to enhance producti...
This paper explains the system economics of an example integrated network that uses anthropogenic CO...
Economic modeling of carbon dioxide integrated pipeline network for enhanced oil recovery and geolog...
<p><strong>Figure 1.</strong> The pipeline network for the <em>slow oil production scenarios</em> co...
<p><b>Table 2.</b> Capital and operating expenditures for each of the ten CO<sub>...
AbstractWidespread adoption of carbon [dioxide] capture and storage (CCS) is limited by infrastructu...
AbstractFor carbon dioxide capture and geologic storage to be deployed commercially and in a widespr...
Large reductions in carbon dioxide (CO2) emissions are needed to mitigate the impacts of climate cha...
<p><b>Table 6.</b> Cash flow results for the pipeline capital and operation. V...
<p>The rising carbon dioxide emissions contributing to climate change has lead to the examination of...
textStacked storage systems are a viable carbon management operation, especially in regions with pot...
AbstractCarbon dioxide (CO2) capture and storage (CCS) is a key climate mitigation technology that c...
The Brazos Area protraction of the Gulf of Mexico was the focus of exploration and development of Mi...
Current global levels of anthropogenic CO2 emissions are 25.6 Gigatons yr. Approximately 1 Gigaton c...
The Permian Basin in West Texas has seen a long history of CO₂ enhanced oil recovery (EOR). Over 65 ...
Naturally occurring CO2 is transported via pipelines to oil fields in West Texas to enhance producti...
This paper explains the system economics of an example integrated network that uses anthropogenic CO...
Economic modeling of carbon dioxide integrated pipeline network for enhanced oil recovery and geolog...
<p><strong>Figure 1.</strong> The pipeline network for the <em>slow oil production scenarios</em> co...
<p><b>Table 2.</b> Capital and operating expenditures for each of the ten CO<sub>...
AbstractWidespread adoption of carbon [dioxide] capture and storage (CCS) is limited by infrastructu...
AbstractFor carbon dioxide capture and geologic storage to be deployed commercially and in a widespr...
Large reductions in carbon dioxide (CO2) emissions are needed to mitigate the impacts of climate cha...
<p><b>Table 6.</b> Cash flow results for the pipeline capital and operation. V...
<p>The rising carbon dioxide emissions contributing to climate change has lead to the examination of...
textStacked storage systems are a viable carbon management operation, especially in regions with pot...
AbstractCarbon dioxide (CO2) capture and storage (CCS) is a key climate mitigation technology that c...
The Brazos Area protraction of the Gulf of Mexico was the focus of exploration and development of Mi...
Current global levels of anthropogenic CO2 emissions are 25.6 Gigatons yr. Approximately 1 Gigaton c...
The Permian Basin in West Texas has seen a long history of CO₂ enhanced oil recovery (EOR). Over 65 ...