In situ uranium mining: Difference between revisions

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'''In situ uranium mining''' is a method used to obtain underground [[uranium]]. For it to be practical, the [[ore]] is often fairly deep underground so it cannot be mined with open pits. Moreover, there may be beneficial factors which make it more practical than other underground mining. One benefit is that it leaves very little environmental disturbance at the surface. In addition, there is less exposure to [[radiation]], and it is more economical to mine "lesser quality" ores compared to traditional methods.<ref>Ucil.nic.in, 2018. [Online]. Available: http://www.ucil.nic.in/pdf/myth/Uranium%20mining%20by%20in-situ%20leaching.pdf. [Accessed: 15- Aug- 2018].</ref><onlyinclude> Dissolving solutions are pumped to the uranium underground which allows the uranium to flow through a system of wells to the ground above where it can be processed.</onlyinclude>
[[Category: Rudi grade Ashley edit]]  
'''In situ uranium mining''' is a method of mining used to obtain [[uranium]] that is deep underground. <onlyinclude> Dissolving [[solution]]s are injected into the [[uranium deposit]] to allow the uranium to flow more freely, allowing it to be pumped up through a system of wells to the ground above where it can be processed.</onlyinclude> When uranium [[ore]] is deep underground, removing the [[overburden|overlying rock]] can be extremely difficult and very expensive. Not removing the overlying rock has several advantages. [[In situ]] mining causes considerably less [[environmental disturbance]] at the surface. It also reduces the potential for [[radiation exposure]] by keeping the uranium contained underground. In situ mining is more economical for mining lesser quality uranium ore than [[surface mining]] is, since the [[cost]]s of stripping away the [[overburden]] is not incurred.<ref>Ucil.nic.in, 2018. [Online]. Available: http://www.ucil.nic.in/pdf/myth/Uranium%20mining%20by%20in-situ%20leaching.pdf. [Accessed: 15- Aug- 2018].</ref> See [[uranium mining]] for other methods of attaining [[uranium]].
 
The following video (from Cameco, a uranium mining company) shows how the '''in situ uranium mining''' process works.<ref name=cam>Cameco. (June 16 2015). ''Obtaining the Ore'' [Online]. Available: http://www.cameco.com/uranium_101/mining-milling/mining/</ref>  
The following video (from Cameco, a uranium mining company) shows how the '''in situ uranium mining''' process works.<ref name=cam>Cameco. (June 16 2015). ''Obtaining the Ore'' [Online]. Available: http://www.cameco.com/uranium_101/mining-milling/mining/</ref>  


See [[uranium mining]] for other methods of attaining [[uranium]].


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Revision as of 16:41, 26 October 2018

In situ uranium mining is a method of mining used to obtain uranium that is deep underground. Dissolving solutions are injected into the uranium deposit to allow the uranium to flow more freely, allowing it to be pumped up through a system of wells to the ground above where it can be processed. When uranium ore is deep underground, removing the overlying rock can be extremely difficult and very expensive. Not removing the overlying rock has several advantages. In situ mining causes considerably less environmental disturbance at the surface. It also reduces the potential for radiation exposure by keeping the uranium contained underground. In situ mining is more economical for mining lesser quality uranium ore than surface mining is, since the costs of stripping away the overburden is not incurred.[1] See uranium mining for other methods of attaining uranium.

The following video (from Cameco, a uranium mining company) shows how the in situ uranium mining process works.[2]


For Further Reading

References

  1. Ucil.nic.in, 2018. [Online]. Available: http://www.ucil.nic.in/pdf/myth/Uranium%20mining%20by%20in-situ%20leaching.pdf. [Accessed: 15- Aug- 2018].
  2. Cameco. (June 16 2015). Obtaining the Ore [Online]. Available: http://www.cameco.com/uranium_101/mining-milling/mining/