Unconventional resource: Difference between revisions

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<onlyinclude>'''Unconventional resources''' are [[resource]]s, generally [[oil]] or [[natural gas]] resources, that do not appear in traditional formations and must use specialized extraction or production techniques to obtain fuel from the deposit.</onlyinclude> For oil and gas, conventional deposits are [[porosity|porous]] and [[permeability|permeable]] rocks below ground that contain tiny connected pore spaces that contain oil or natural gas.<ref name="RE1">Alberta Energy Regulator. (June 3, 2015). ''What is Unconventional Oil and Gas?'' [Online]. Available: https://www.aer.ca/about-aer/spotlight-on/unconventional-regulatory-framework/what-is-unconventional-oil-and-gas</ref> Generally, these resources are locked in geological structures where extraction is not economically or technologically feasible, however with technological advancements these can turn into viable [[fossil fuel]] [[reserve]]s.<ref name=wolfson>Richard Wolfson. (June 3, 2015). ''Energy, Environment, and Climate'', 2nd ed. New York, NY, U.S.A: 2012.</ref>
<onlyinclude>'''Unconventional resources''' are [[oil]] or [[natural gas]] [[resource]]s, that occur in geological formations requiring specialized extraction or production techniques to recover the hydrocarbon economically. </onlyinclude> For oil and gas, conventional deposits are [[porosity|porous]] and [[permeability|permeable]] underground rock formations with interconnected pore spaces that contain oil or natural gas.<ref name="RE1">Alberta Energy Regulator. (June 3, 2015). ''What is Unconventional Oil and Gas?'' [Online]. Available: https://www.aer.ca/about-aer/spotlight-on/unconventional-regulatory-framework/what-is-unconventional-oil-and-gas</ref> Generally, these resources are trapped in geological structures where extraction is not economically feasible using conventional methods. However, advances in extraction and production technologies can make these resources economically recoverable, allowing them to become viable [[fossil fuel]] [[reserve]]s.<ref name=wolfson>Richard Wolfson. (June 3, 2015). ''Energy, Environment, and Climate'', 2nd ed. New York, NY, U.S.A: 2012.</ref>


Unconventional resources are being utilized more and more as decades of oil and natural gas production have resulted in extensive use of conventional resources. Because of this, new technologies are constantly being introduced that allows for the more economic extraction of non-traditional oil and gas that may have been previously impossible to obtain. Development of these unconventional resources has significant economic potential as a large portion of oil and gas resources is estimated to exist in unconventional deposits.<ref name="RE1"/>
Unconventional resources are being developed increasingly as decades of oil and natural gas production have led to the depletion or maturation of many conventional resources. As a result, new technologies continue to be developed that allow for the more economical extraction of unconventional oil and natural gas resources that were previously uneconomical or technically difficult to recover. The development of these unconventional resources has significant economic potential, as a substantial portion of the world's oil and natural gas resources is estimated to occur in unconventional deposits.<ref name="RE1"/>


==Unconventional Oil==
==Unconventional Oil==
Unconventional oil is a very specific type of [[petroleum]] obtained by methods that are different from the extraction technique of using a traditional well. This type of oil is seen as being more costly and difficult to extract and refine, as well as being more environmentally harmful.<ref>Many sources are possible, but see for example: 'Emerging Environmental Impacts of Unconventional Oil Development in the Bakken Formation in the Williston Basin of Western North Dakota' by Venkataramana Gadhamshetty, Namita Shrestha, Govinda Chilkoor and Jejal Reddy Bathi from the ACS Symboposium series Vol 1216, December 15, 2015. Online: http://pubs.acs.org/doi/abs/10.1021/bk-2015-1216.ch007 Accessed August 18th, 2017.</ref> In general, unconventional oil is heavier and requires more processing and upgrading. Unconventional oil includes [[shale oil]], [[oil sands]] and extra-heavy oil (natural [[bitumen]] deposits). In total, only about 3% of 2009's oil production came from unconventional oil sources.<ref name=boyle>G.Boyle, B.Everett, S.Peake, J.Ramage. (June 3, 2015). ''Energy Systems and Sustainability: Power for a Sustainable Future'', 2nd Ed. Oxford, UK: Oxford University Press, 2012</ref> Although it is more difficult and costly to extract unconventional oil, it is becoming more common as the demand for oil is increasing and more research is being done to see how unconventional oil can be made more simple and cost-effective to produce.  
Unconventional oil is a type of [[petroleum]] that requires specialized extraction or production techniques beyond those used for conventional oil reservoirs. This type of oil is generally more costly and difficult to extract and refine and is often associated with greater environmentally impacts that conventional oil production.<ref>Many sources are possible, but see for example: 'Emerging Environmental Impacts of Unconventional Oil Development in the Bakken Formation in the Williston Basin of Western North Dakota' by Venkataramana Gadhamshetty, Namita Shrestha, Govinda Chilkoor and Jejal Reddy Bathi from the ACS Symboposium series Vol 1216, December 15, 2015. Online: http://pubs.acs.org/doi/abs/10.1021/bk-2015-1216.ch007 Accessed August 18th, 2017.</ref> Many unconventional oils, particularly [[bitumen]] and extra-heavy oil, are denser than conventional crude oil and require additional processing and upgrading before they can be refined into usable fuels. Examples of unconventional oil includes [[shale oil]], [[oil sands]] (natural [[bitumen]] deposits), and extra-heavy oil. Conventional oil fields contributed 97% of global oil output in 2000, but by 2024 this share had fallen to 77% because of the rising production from unconventional fields.<ref>International Energy Agency. (2025). ''The Implications of Oil and Gas Field Decline Rates – Executive Summary'' [Online]. Available: https://iea.blob.core.windows.net/assets/9ea2076e-5a0d-4a0d-9767-a1eec20aff23/TheImplicationsofOilandGasFieldDeclineRates.pdf</ref> Although it is more difficult and costly to extract unconventional oil, it is becoming more common as the demand for oil is increasing and more research is being done to see how unconventional oil can be made more simple and cost-effective to produce.  


<gallery mode=packed caption="Unconventional Oil Resources" widths="350px" heights="273px"  >
<gallery mode=packed caption="Unconventional Oil Resources" widths="350px" heights="273px"  >
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==Unconventional Natural Gas==
==Unconventional Natural Gas==
Unconventional natural gas is simply natural gas obtained by methods that are different from traditional extraction. Unconventional natural gas can refer to [[tight gas]] - natural gas locked in low-permeability rocks, [[shale gas]] - natural gas locked in [[shale]], or [[coal bed methane]] - natural gas contained in coal.<ref name="RE1"/> The extraction of natural gas from these deposits can be an issue, as arguments about the environmental impact of [[hydraulic fracturing]] can be brought up. Additionally, the water use in the extraction of coal bed methane can be an environmental concern.
Unconventional natural gas is found in geological formations that require specialized extraction techniques for economical production. Unconventional natural gas includes [[tight gas]] (natural gas trapped in low-permeability rocks rock formations), [[shale gas]] (natural gas locked in [[shale]] formations), or [[coal bed methane|coalbed methane]] (natural gas contained within coal seams).<ref name="RE1"/> The extraction of unconventional natural gas can raise environmental concerns, particularly because [[hydraulic fracturing]] is commonly used to produce shale gas. Additionally, the management and disposal of water produced during coalbed methane extraction can present environmental challenges.


==References==
==References==
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Revision as of 23:20, 13 July 2026

Unconventional resources are oil or natural gas resources, that occur in geological formations requiring specialized extraction or production techniques to recover the hydrocarbon economically. For oil and gas, conventional deposits are porous and permeable underground rock formations with interconnected pore spaces that contain oil or natural gas.[1] Generally, these resources are trapped in geological structures where extraction is not economically feasible using conventional methods. However, advances in extraction and production technologies can make these resources economically recoverable, allowing them to become viable fossil fuel reserves.[2]

Unconventional resources are being developed increasingly as decades of oil and natural gas production have led to the depletion or maturation of many conventional resources. As a result, new technologies continue to be developed that allow for the more economical extraction of unconventional oil and natural gas resources that were previously uneconomical or technically difficult to recover. The development of these unconventional resources has significant economic potential, as a substantial portion of the world's oil and natural gas resources is estimated to occur in unconventional deposits.[1]

Unconventional Oil

Unconventional oil is a type of petroleum that requires specialized extraction or production techniques beyond those used for conventional oil reservoirs. This type of oil is generally more costly and difficult to extract and refine and is often associated with greater environmentally impacts that conventional oil production.[3] Many unconventional oils, particularly bitumen and extra-heavy oil, are denser than conventional crude oil and require additional processing and upgrading before they can be refined into usable fuels. Examples of unconventional oil includes shale oil, oil sands (natural bitumen deposits), and extra-heavy oil. Conventional oil fields contributed 97% of global oil output in 2000, but by 2024 this share had fallen to 77% because of the rising production from unconventional fields.[4] Although it is more difficult and costly to extract unconventional oil, it is becoming more common as the demand for oil is increasing and more research is being done to see how unconventional oil can be made more simple and cost-effective to produce.

Unconventional Natural Gas

Unconventional natural gas is found in geological formations that require specialized extraction techniques for economical production. Unconventional natural gas includes tight gas (natural gas trapped in low-permeability rocks rock formations), shale gas (natural gas locked in shale formations), or coalbed methane (natural gas contained within coal seams).[1] The extraction of unconventional natural gas can raise environmental concerns, particularly because hydraulic fracturing is commonly used to produce shale gas. Additionally, the management and disposal of water produced during coalbed methane extraction can present environmental challenges.

References

  1. 1.0 1.1 1.2 Alberta Energy Regulator. (June 3, 2015). What is Unconventional Oil and Gas? [Online]. Available: https://www.aer.ca/about-aer/spotlight-on/unconventional-regulatory-framework/what-is-unconventional-oil-and-gas
  2. Richard Wolfson. (June 3, 2015). Energy, Environment, and Climate, 2nd ed. New York, NY, U.S.A: 2012.
  3. Many sources are possible, but see for example: 'Emerging Environmental Impacts of Unconventional Oil Development in the Bakken Formation in the Williston Basin of Western North Dakota' by Venkataramana Gadhamshetty, Namita Shrestha, Govinda Chilkoor and Jejal Reddy Bathi from the ACS Symboposium series Vol 1216, December 15, 2015. Online: http://pubs.acs.org/doi/abs/10.1021/bk-2015-1216.ch007 Accessed August 18th, 2017.
  4. International Energy Agency. (2025). The Implications of Oil and Gas Field Decline Rates – Executive Summary [Online]. Available: https://iea.blob.core.windows.net/assets/9ea2076e-5a0d-4a0d-9767-a1eec20aff23/TheImplicationsofOilandGasFieldDeclineRates.pdf
  5. Wikimedia Commons. (June 3, 2015). Tar Sandstone [Online]. Available: http://upload.wikimedia.org/wikipedia/commons/9/95/Tar_Sandstone_California.jpg
  6. Wikimedia Commons. (June 3, 2015). Oil Shale [Online]. Available: http://commons.wikimedia.org/wiki/File:Messel_oil_shale_sideritic_laminae.jpg#/media/File:Messel_oil_shale_sideritic_laminae.jpg