ReLiB Project
@ReLIBProject
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The ReLiB project researches the conditions required to ensure the sustainable management of lithium-ion batteries.
Joined September 2023
Delighted to welcome 16 talented individuals to @FaradayInst #PhD Training Programme๐ Stay tuned for updates on their PhD journeys with #FaradayTraining #BatteryCareers Take a look at the 2024/25 PhD Programme Course Guideโก๏ธ https://t.co/bUjt5brBrn
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The #FUSE2024 internship programme was a huge success! ๐ ๐55 interns ๐1,100+ applicants ๐71% would now pursue #EnergyStorage careers ๐4 poster winners Read more: https://t.co/HQGy5o6hsX
#FUSE2025 applications open spring 2025!
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Congratulations to @UoBChemistry @PRSlaterChem and Echion Technologies for winning the 2024 Faraday Institution Community Award for Collaboration. https://t.co/t2SQTRerch An amazing achievement ๐
faraday.ac.uk
Congratulations to James Robinson for being recognised as Faraday Institution Researcher Development Champion. There are countless examples of how his support & mentorship have progressed the careers...
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Kudos to @UniBirmingham & @EchionT for winning the 2024 @FaradayInst Collaboration Award! ๐ Read more about how this long-standing partnership has made significant advances in the development of new anode materials for high power Li-ion batteries. โก๏ธ https://t.co/cVFCBhuVUR
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๐ข 2024 update published to our study "UK EV and Battery Production Potential to 2040" Learn more about the economic potential of the electric vehicle and battery ecosystem ๐ Download report for key insights https://t.co/cLfKba9r1uโก๐งต
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Also, a special thank you to Claire Hansell @HansellThe, the editor at @Nature who worked with us and supported us through the process.
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The team who wrote the paper were: @gavindjharper @RSommerville,@Emjewls, @lauraldriscoll, @prslaterchem, @rustam_stolkin, Allan Walton, Paul Christensen, @OliverHeid82032 , @drsmlambert Andrew Abbott, Karl Ryder, Linda Gaines & Paul Anderson.
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Our paper has currently been cited 2340 times on Google Scholar, 1832 times on CrossRef, 1648 times on Web of Science, with 341k accesses and an Altmetric of 1046. https://t.co/EU3Ii59ESF
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The paper was an international collaboration between @FaradayInst @ReLIBProject partners including @unibirmingham @eps_unibham @bhamenergy #BCSECM, @UniofNewcastle, @UniLeicester and our collaborators at @argonne #ReCell center.
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Thanks to everyone in the battery community who found our work helpful. It has been great that our review was so well received by the global Lithium Ion Battery recycling community. It has been great to see all of the interest in this review.
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At the @FaradayInst @ReLIBProject, we are proud of our team's impactful work: According to the recently released @Google #Scholar 2024 Metrics, our 2019 #Nature150 paper, is ranked #27 of all articles in @Nature, published 2019-2024, which is Google Scholar's #1 ranked journal.
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What % (pack by weight) of materials from EV batteries are recovered and reused? 60%? 50%? Less? Where does the rest go? Incineration? Landfill? The Pacific? Should we include energy-from-waste with its associated CO2 footprint as recovery?
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A few questions to think about: If 5% is wrong, what is the correct value? What does it mean to say a battery is recycled? Is it Ok to base recycling rates only on the recovery of critical metals?
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Important issue this, and interesting to see the 5% recycling rate (mis)quoted again
theguardian.com
A subclass of PFAS has been found near manufacturing plants and landfills, and in remote regions of the world
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Upcycling of low value end-of-life cathode material into next generation cathode materials
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Think global act local: the dependency of global lithium-ion battery emissions on production location
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The effect of using alternative binders and second life graphite materials on the electrochemical performance of lithium-ion bat...
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