Search Results - "Kingsbury, Ryan S"

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  1. 1

    Junction Potentials Bias Measurements of Ion Exchange Membrane Permselectivity by Kingsbury, Ryan S, Flotron, Sophie, Zhu, Shan, Call, Douglas F, Coronell, Orlando

    Published in Environmental science & technology (17-04-2018)
    “…Ion exchange membranes (IEMs) are versatile materials relevant to a variety of water and waste treatment, energy production, and industrial separation…”
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    Journal Article
  2. 2

    A flexible and scalable scheme for mixing computed formation energies from different levels of theory by Kingsbury, Ryan S., Rosen, Andrew S., Gupta, Ayush S., Munro, Jason M., Ong, Shyue Ping, Jain, Anubhav, Dwaraknath, Shyam, Horton, Matthew K., Persson, Kristin A.

    Published in npj computational materials (13-09-2022)
    “…Computational materials discovery efforts are enabled by large databases of properties derived from high-throughput density functional theory (DFT), which now…”
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  3. 3

    Energy storage by reversible electrodialysis: The concentration battery by Kingsbury, Ryan S., Chu, Kevin, Coronell, Orlando

    Published in Journal of membrane science (01-12-2015)
    “…Reverse electrodialysis has long been recognized as a tool for harnessing free energy from salinity gradients but has received little attention for its…”
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  4. 4

    Impact of solution composition on the resistance of ion exchange membranes by Zhu, Shan, Kingsbury, Ryan S., Call, Douglas F., Coronell, Orlando

    Published in Journal of membrane science (15-05-2018)
    “…Resistance to ion transport in ion exchange membranes (IEMs) is detrimental to the performance of IEM-based processes. In this work we measured the resistance…”
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    Journal Article
  5. 5

    Osmotic Ballasts Enhance Faradaic Efficiency in Closed-Loop, Membrane-Based Energy Systems by Kingsbury, Ryan S, Coronell, Orlando

    Published in Environmental science & technology (07-02-2017)
    “…Aqueous processes for energy storage and conversion based on reverse electrodialysis (RED) require a significant concentration difference across ion exchange…”
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  6. 6

    Effect of osmotic ballast properties on the performance of a concentration gradient battery by Liu, Fei, Kingsbury, Ryan S., Rech, Jeromy J., You, Wei, Coronell, Orlando

    Published in Water research (Oxford) (01-04-2022)
    “…•Sugars, glycols studied as organic ballasts in a concentration gradient battery.•Ballast addition to the dilute solution increased faradaic and energy…”
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  7. 7

    Partitioning of Alkali Metal Salts and Boric Acid from Aqueous Phase into the Polyamide Active Layers of Reverse Osmosis Membranes by Wang, Jingbo, Kingsbury, Ryan S, Perry, Lamar A, Coronell, Orlando

    Published in Environmental science & technology (21-02-2017)
    “…The partition coefficient of solutes into the polyamide active layer of reverse osmosis (RO) membranes is one of the three membrane properties (together with…”
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  8. 8

    Aqueous Stability of Zirconium Clusters, Including the Zr(IV) Hexanuclear Hydrolysis Complex [Zr6O4(OH)4(H2O)24]12+, from Density Functional Theory by Stern, Rebecca D, Kingsbury, Ryan S, Persson, Kristin A

    Published in Inorganic chemistry (18-10-2021)
    “…Framework materials constitute a broad family of solids that range from zeolites and metal–organic frameworks (MOFs) to coordination polymers. The synthesis of…”
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  9. 9
  10. 10

    Effect of magnetic ion exchange and ozonation on disinfection by-product formation by Kingsbury, Ryan S., Singer, Philip C.

    Published in Water research (Oxford) (01-03-2013)
    “…The purpose of this research was to investigate the performance of treatment with magnetic ion exchange (MIEX) resin followed by ozonation in achieving…”
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  11. 11

    Unifying the Conversation: Membrane Separation Performance in Energy, Water, and Industrial Applications by Dischinger, Sarah M., Miller, Daniel J., Vermaas, David A., Kingsbury, Ryan S.

    Published in ACS ES&T engineering (09-02-2024)
    “…Dense polymer membranes enable a diverse range of separations and clean energy technologies, including gas separation, water treatment, and renewable fuel…”
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  12. 12

    Unveiling the role of membrane properties in water and salt transport and performance of a concentration gradient battery by Xu, Hanyang, Sun, Yanhui, Kingsbury, Ryan S., Coronell, Orlando, Liu, Fei, Zhang, Yang

    Published in Desalination (20-07-2024)
    “…The concentration gradient battery (CGB) has numerous advantages, such as zero pollution emissions and the use of non-toxic electrolytes, making it a promising…”
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  13. 13

    Temporal variation of power production via reverse electrodialysis using coastal North Carolina waters and its correlation to temperature and conductivity by Hossen, Elvin H., Gobetz, Zoe E., Kingsbury, Ryan S., Liu, Fei, Palko, Hannah C., Dubbs, Lindsay L., Coronell, Orlando, Call, Douglas F.

    Published in Desalination (01-10-2020)
    “…Global estimates of electricity generation from coastal salinity gradient energy resources rely on the underlying assumption that these gradients are spatially…”
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  14. 14

    Microporous Polymer Sorbents for Direct Lithium Extraction by Baird, Michael A., Kingsbury, Ryan S., Wang, Yunfei, Gang, Albert, Zhu, Chenhui, Whittaker, Michael L., Helms, Brett A.

    Published in ACS energy letters (13-09-2024)
    “…Lithium extraction from brines is essential to onshoring battery supply chains. Yet, cation-exchange sorbents often exhibit poor selectivity and require pH…”
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