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<dc:title>Regenerative electrochemical ion pumping cell based on semi-solid electrodes for sustainable Li recovery</dc:title>
<dc:creator>Perez Antolin, Daniel</dc:creator>
<dc:creator>Irastorza, Cristina</dc:creator>
<dc:creator>González, Sara</dc:creator>
<dc:creator>Moreno, Rebeca</dc:creator>
<dc:creator>García-Quismondo, Enrique</dc:creator>
<dc:creator>Palma, Jesús</dc:creator>
<dc:creator>Lado, Julio J.</dc:creator>
<dc:creator>Ventosa Arbaizar, Edgar</dc:creator>
<dc:subject>Ion separation</dc:subject>
<dc:subject>Electrochemical methods</dc:subject>
<dc:subject>Intercalation materials</dc:subject>
<dc:subject>Semi-solid electrodes</dc:subject>
<dc:subject>Ion pumping</dc:subject>
<dc:description>Demand of lithium is expected to increase drastically in coming years driven by the market penetration of electric&#xd;
vehicles powered by Li-ion batteries, which will require faster and more efficient Li extraction technologies than&#xd;
conventional ones (evaporation in brines). The Electrochemical Ion Pumping Cell (EIPC) technology based on the&#xd;
use of Faradaic materials is one of the most promising approaches. However, its relatively short lifespan prevents&#xd;
its commercial deployment. Herein, a new EIPC concept based on the use of semi-solid electrodes is proposed for&#xd;
the first time, which takes advantage of the rheological characteristics of semi-solid electrodes that enable simple&#xd;
and cheap regeneration of the Regenerative Electrochemical Ion Pumping Cell (REIPC) systems after reaching its&#xd;
end-of-life. A proof-of-concept for REIPC is accomplished by simple replacement of the semi-solid electrode&#xd;
demonstrating a remarkable electrochemical performance (e.g. 99.87%cycle− 1&#xd;
, 99.98%h− 1&#xd;
, 3–4 mAh cm− 2&#xd;
)&#xd;
along with a competitive ion separation (e.g. 16.2 mgLi⋅gNiHCF− 1&#xd;
, 4 gLi m− 2 and 15.6 Wh⋅mol− 1&#xd;
). The use of semisolid electrode offers other unique features such as a significant cost reduction of 95% for every regeneration&#xd;
regarding conventional EIPC, proving that REIPC concept successfully addresses the issues associated to the&#xd;
sustainability and recyclability of the conventional EIPC's for lithium capturing.</dc:description>
<dc:date>2023-03-01T12:39:35Z</dc:date>
<dc:date>2023-03-01T12:39:35Z</dc:date>
<dc:date>2022-07</dc:date>
<dc:type>info:eu-repo/semantics/article</dc:type>
<dc:identifier>0011-9164</dc:identifier>
<dc:identifier>http://hdl.handle.net/10259/7479</dc:identifier>
<dc:identifier>10.1016/j.desal.2022.115764</dc:identifier>
<dc:language>eng</dc:language>
<dc:relation>Desalination. 2022, V. 533, 115764</dc:relation>
<dc:relation>https://doi.org/10.1016/j.desal.2022.115764</dc:relation>
<dc:relation>info:eu-repo/grantAgreement/CAM//2020-T1%2FAMB-19799/</dc:relation>
<dc:relation>info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/RTI2018-099228-A-I00/ES/BATERIAS INJECTABLES DE ELECTRODES SEMI-SOLIDOS/</dc:relation>
<dc:relation>info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/RYC2018-026086-I/ES/</dc:relation>
<dc:relation>info:eu-repo/grantAgreement/Fundación Bancaria Caixa d'Estalvis i Pensions de Barcelona//LCF%2FPR%2FPR18%2F51130007//Fluoración Directa de Nitrocompuestos y Sales de Heteroaril Fosfonio: Síntesis de Fluorocompuestos/FluNitroPhos/</dc:relation>
<dc:rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
<dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
<dc:rights>Attribution-NonCommercial-NoDerivatives 4.0 Internacional</dc:rights>
<dc:publisher>Elsevier</dc:publisher>
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