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These results hold significant design implications leuprolide ligand-grafted membranes in a range of applications requiring ion-specific selectivity, including membrane-based lithium recovery.

All membranes were solution cast in a glove box. Gravimetric water uptake Epiduo Gel (Adapalene and Benzoyl Peroxide Gel)- Multum were performed by equilibrating each membrane in deionized Epiduo Gel (Adapalene and Benzoyl Peroxide Gel)- Multum water, measuring the wet mass of the membrane, drying in vacuo, and recording its dry mass (Eq.

Salt permeation experiments were performed by clamping a membrane between two chambers of a standard diffusion cell where the upstream (i. For single salt measurements, a conductivity probe was submerged in the receiving cell to track the flux of salt, and for mixed salt measurements, aliquots of known volume were sampled from the receiver chamber and analyzed using Flame Atomic Absorption to determine the flux of each cation. The opening of each chamber was covered to limit evaporation and exposure to air.

Once steady state was reached, the permeation cell was disassembled and the thickness of the membrane was measured. Salt sorption experiments were performed by equilibrating membranes of known dimensions in a 0. The membranes were then placed in DI water to desorb ions from the film, and the concentration of cations in the desorption solution was measured using Flame Atomic Absorption. We assumed that PEO does not contribute significant selective interactions with the ions and only served to modulate membrane water content.

This work was supported as part of the Center for Materials for Water and Energy Systems (M-WET), an Energy Frontier Research Center funded by the US Department of Energy, Office of Science, Basic Energy Sciences under Award No.

The results in this paper were generated using high-performance computing resources provided by The University of Texas at Austin Texas Advanced Computing Center. This material is based upon work supported by the NSF Graduate Research Fellowship under Grant No. Skip to main content Main menu Home ArticlesCurrent Special Feature Articles - Most Recent Special Features Colloquia Collected Articles PNAS Classics List of Issues PNAS Nexus Front MatterFront Matter Portal Journal Club NewsFor the Press This Week In PNAS PNAS in the News Podcasts AuthorsInformation for Authors Editorial and Journal Policies Submission Procedures Fees and Licenses Submit Submit AboutEditorial Board PNAS Staff FAQ Accessibility Statement Rights and Permissions Site Map Contact Journal Club SubscribeSubscription Rates Subscriptions FAQ Open Access Recommend PNAS to Your Librarian User menu Log in Log out My Cart Search Search for this keyword Advanced search Log in Log out My Cart Search for this keyword Advanced Search Home ArticlesCurrent Special Feature Articles - Most Recent Special Features Colloquia Collected Articles PNAS Classics List of Issues PNAS Nexus Front MatterFront Matter Portal Journal Club NewsFor the Press This Week In PNAS PNAS in the News Podcasts AuthorsInformation for Authors Editorial and Journal Policies Submission Procedures Fees and Licenses Submit Physical Sciences Samuel J.

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AbstractLithium is widely used in contemporary energy applications, but its isolation from natural reserves is plagued by time-consuming and costly processes. Results and DiscussionDesign and Synthesis of 12C4-Containing Membranes. Modulating Water Content with Membrane Composition. Hydration Free Energy Controls 12C4 Binding. Epiduo Gel (Adapalene and Benzoyl Peroxide Gel)- Multum Considerations: Mixtures of Cations. Design Implications and Open Questions.

AcknowledgmentsThis work was supported as part of the Center for Materials for Water and Energy Systems (M-WET), an Energy Frontier Research Center funded by the US Department of Energy, Office of Science, Basic Energy Sciences under Award No. Epiduo Gel (Adapalene and Benzoyl Peroxide Gel)- Multum, Critical Mineral Resources of the United StatesEconomic and Environmental Geology and Prospects for Future Supply (U.

Geological Survey, 2017) p. Swain, Recovery and recycling of lithium: A review. Yushin, Li-ion battery materials: Present and future.

Manthiram, A reflection on lithium-ion battery cathode chemistry. He, Lithium extraction from Chinese salt-lake brines: Opportunities, challenges, and future outlook. Accessed 28 September 2020. Sun, Systematic review of lithium extraction from salt-lake brines via precipitation approaches. Lienhard, Lithium recovery Epiduo Gel (Adapalene and Benzoyl Peroxide Gel)- Multum oil and gas produced water: A need for a growing energy industry.

Galli, Lithium recovery from brines: A vital raw material for green energies with a paclitaxel (Paclitaxel Tablets)- FDA environmental impact in its mining and processing. Accessed 12 November 2020. Yu, Separation of magnesium and lithium from brine using a Desal nanofiltration membrane.

Zhu, Physical models of diffusion for polymer solutions, gels and solids.

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