logo

Potential Lithium Extraction in the United States

PDF Publication Title:

Potential Lithium Extraction in the United States ( potential-lithium-extraction-the-united-states )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 071

Aadland, C. (2022). Proposed lithium mine near Oregon-Nevada border stirs concerns among tribes. Oregonlive. https://www.oregonlive.com/environment/2022/04/proposed-lithium-mine-near- oregon-nevada-border-stirs-concerns-among-tribes.html Aguero, J. (2020). The Role of the State’s Mining Industry [Presentation]. Nevada Mining Association’s Annual Convention, Lake Tahoe, Nevada, U.S. Agusdinata, D. B., Liu, W., Eakin, H., & Romero, H. (2018). Socio-environmental impacts of lithium mineral extraction: Towards a research agenda. 13(12), 123001. https://doi.org/10.1088/1748-9326/aae9b1 Anderson, A. M., Friis, C., Gratto-Trevor, C. L., Harris, C. M., Love, O. P., Morrison, R. I., ... & Smith, P. A. (2021). Drought at a coastal wetland affects refuelling and migration strategies of shorebirds. Oecologia, 197(3), 661-674. Arizona Lithium. (2021). Investor Presentation: Cornerstoning Arizona’s Battery Precinct. Betournay, M. C. (2011). Underground Mining and Its Surface Effects. Retrieved from http://www.fhwa.dot.gov/engineering/geotech/hazards/mine/workshops/iawksh p/betourna2.cfm BLM [Bureau of Land Management]. (2020). EIR for Thacker Pass Lithium Mine Project. https://int.nyt.com/data/documenttools/thacker-pass-feis-chapters1-6- 508/f5d9956ac05f6601/full.pdf#page=41 Bosler, C. (2021). Plans To Dig the Biggest Lithium Mine in the US Face Mounting Opposition. Inside Climate News. https://insideclimatenews.org/news/07112021/lithium-mining-thacker-pass- nevada-electric-vehicles-climate/ Carter, N. (2014). The politics of climate change in the UK. Wiley Interdisciplinary Reviews: Climate Change, 5(3), 423-433. Castillo, A., & Gayme, D. F. (2014). Grid-scale energy storage applications in renewable energy integration: A survey. Energy Conversion and Management, 87, 885-894. CEC [California Energy Commission]. (2022). Lithium Valley Commision. www.energy.ca.gov/data-reports/california-power-generation-and-power- sources/geothermal-energy/lithium-valley Clean Energy States Alliance. (2022). 100% Clean Energy Collaborative - Table of 100% Clean Energy States. https://www.cesa.org/projects/100-clean-energy- collaborative/guide/table-of-100-clean-energy-states/ Day, J. W., D’Elia, C. F., Wiegman, A. R., Rutherford, J. S., Hall, C. A., Lane, R. R., & Dismukes, D. E. (2018). The energy pillars of society: Perverse interactions of human resource use, the economy, and environmental degradation. Biophysical Economics and Resource Quality, 3(1), 1-16. Deberdt, R., & Le Billon, P. (2021). Conflict minerals and battery materials supply chains: A mapping review of responsible sourcing initiatives. The Extractive Industries and Society, 8(4), 100935. deWitt, P., & deWitt, C. A. (2008). How Long Does It Take to Prepare an Environmental Impact Statement? Environmental Practice, 10(4), 164–174. https://doi.org/10.1017/S146604660808037X Dicken, C.L., and Hammarstrom, J.M. (2020). GIS for focus areas of potential domestic resources of 11 critical minerals—aluminum, cobalt, graphite, lithium, niobium, platinum group elements, rare earth elements, tantalum, tin, titanium, and tungsten (version 2.0, August 2020): U.S. Geological Survey data release, https://doi.org/10.5066/P9U6SODG. Dorn, F. M., & Peyré, F. R. (2020). Lithium as a Strategic Resource: Geopolitics, industrialization, and mining in Argentina. Journal of Latin American Geography, 19(4), 68-90. Energy Minerals and Natural Resources Department of New Mexico. (2021). Important Plant Areas of New Mexico. Retrieved from https://www.emnrd.nm.gov/sfd/new-mexico-rare-plant-conservation-strategy/ Environmental and Energy Study Institute. (2019) Fact Sheet: Energy Storage https://www.eesi.org/papers/view/energy-storage- 2019#:~:text=Lithium%2Dion%20batteries%20are%20by,energy%20density%20an d%20are%20lightweight. Federal Consortium for Advanced Batteries. (2021). National blueprint for lithium batteries. https://www.energy.gov/sites/default/files/2021- 06/FCAB%20National%20Blueprint%20Lithium%20Batteries%200621_0.pdf Flexer, V., Baspineiro, C. F., & Galli, C. I. (2018). Lithium recovery from brines: A vital raw material for green energies with a potential environmental impact in its mining and processing. Science of The Total Environment, 639, 1188–1204. https://doi.org/10.1016/j.scitotenv.2018.05.223 Flin, B. (2021). ‘Like putting a lithium mine on Arlington cemetery’: The fight to save sacred land in Nevada | Mining | The Guardian. https://amp.theguardian.com/us-news/2021/dec/02/thacker-pass-lithium-mine- fight-save-sacred-land-nevada Great Basin and Resource Watch. (2019). Pyrgulopsis imperialis. http://www.gbrw.org/ftpgbrw/Thacker%20Pass/EIS- 2020/FEIS/FEIS%20Submission/Thacker%20Pass%20Science/NDNH%20Pyrgulopsis %20imperialis.pdf Gutiérrez, J. S., Moore, J. N., Donnelly, J. P., Dorador, C., Navedo, J. G., & Senner, N. R. (2022). Climate change and lithium mining influence flamingo abundance in the Lithium Triangle. Proceedings of the Royal Society B, 289(1970), 20212388. Hammarstrom, J. M., Dicken, C. L., Day, W. C., Hofstra, A. H., Drenth, B. J., Shah, A. K., ... & Stillings, L. L. (2019). Focus areas for data acquisition for potential domestic resources of 11 critical minerals in the conterminous United States. Hawaii, and Puerto Rico—Aluminum, cobalt, graphite, lithium, niobium, platinum-group elements, rare earth elements, tantalum, tin, titanium, and tungsten, chap. B of US Geological Survey, Focus areas for data acquisition for potential domestic sources of critical minerals: US Geological Survey Open-File Report, 1023, 67. References Panamint Valley. Photo © Adam Reeder, used under Attribution-NonCommercial 2.0 Generic (CC BY-NC 2.0) license Potential Lithium Extraction in the United States: Environmental, Economic, and Policy Implications 71 AUGUST 2022

PDF Image | Potential Lithium Extraction in the United States

potential-lithium-extraction-the-united-states-071

PDF Search Title:

Potential Lithium Extraction in the United States

Original File Name Searched:

Lithium_Report_FINAL.pdf

DIY PDF Search: Google It | Yahoo | Bing

Product and Development Focus for Infinity Turbine

ORC Waste Heat Turbine and ORC System Build Plans: All turbine plans are $10,000 each. This allows you to build a system and then consider licensing for production after you have completed and tested a unit.

Redox Flow Battery Technology: With the advent of the new USA tax credits for producing and selling batteries ($35/kW) we are focussing on a simple flow battery using shipping containers as the modular electrolyte storage units with tax credits up to $140,000 per system.

Our main focus is on the salt battery. This battery can be used for both thermal and electrical storage applications.

We call it the Cogeneration Battery or Cogen Battery.

One project is converting salt (brine) based water conditioners to simultaneously produce power.

In addition, there are many opportunities to extract Lithium from brine (salt lakes, groundwater, and producer water).

Salt water or brine are huge sources for lithium. Most of the worlds lithium is acquired from a brine source. It's even in seawater in a low concentration. Brine is also a byproduct of huge powerplants, which can now use that as an electrolyte and a huge flow battery (which allows storage at the source).

We welcome any business and equipment inquiries, as well as licensing our turbines for manufacturing.

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com | RSS | AMP