{"id":7671,"date":"2019-08-06T08:07:55","date_gmt":"2019-08-06T06:07:55","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/eco-combat-opens-up-new-approach-to-enhance-sustainability-of-high-voltage-batteries.html"},"modified":"2019-08-06T08:07:55","modified_gmt":"2019-08-06T06:07:55","slug":"eco-combat-opens-up-new-approach-to-enhance-sustainability-of-high-voltage-batteries","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/eco-combat-opens-up-new-approach-to-enhance-sustainability-of-high-voltage-batteries\/","title":{"rendered":"&#8220;ECO COM&#8217;BAT&#8221; opens up new approach to enhance sustainability of high-voltage batteries"},"content":{"rendered":"<p>Electromobility sets challenging requirements for new high-performance batteries &ndash; cruising range, life span, safety, or charging times, to mention only a few. An intrinsic challenge is the resource need for a growing number of big car batteries.<\/p>\n<p> <!--more--> <\/p>\n<p>Ten partners from industry and research organizations successfully  joined forces in the EU funded project ECO COM&#8217;BAT to develop a  sustainable next generation of high-voltage lithium-ion batteries.<\/p>\n<p> The objective of the EIT RawMaterials project ECO COM&#8217;BAT was to  combine green and high-performance materials and to upscale their  production for the next generation of high-voltage lithium-ion  batteries. <strong>ECO COM&#8217;BAT <\/strong>was coordinated by the Fraunhofer  Institute for Silicate Research ISC and carried out in the period from  April 2016 to December 2018. With the materials producers Arkema and  Umicore, the cell manufacturers SAFT and Customcells, the research and  technology organizations Fraunhofer, CEA, CSIC, ENEA, VITO, and the  Technical University Darmstadt, the project participants covered all  edges of the knowledge triangle along the battery value chain.<\/p>\n<p><strong>Reduction of critical materials<\/strong><\/p>\n<p>Compared to conventional batteries the new type should be more  powerful and with regard to the materials used even more sustainable.  &ldquo;The main task of the ECO COM&rsquo;BAT project was to substitute  conventional, often expensive, rare or even critical materials as cobalt  in the electrodes and of fluorine in the electrolyte&rdquo;, explains project  coordinator Dr. Andreas Bittner from Fraunhofer ISC. For this purpose  the project team adapted and optimized ORMOCER<sup>&reg;<\/sup> coated,  low-cobalt NMC 622 and a special highvoltage electrolyte based on the  conductive salt lithium-bis(fluorosulfonyl)imide (LiFSI), which can be  operated stably even at high voltages, to the battery requirements. This  leads to approximately 20 percent reduction of cobalt content and a  reduction of electrolyte fluorine content by two thirds. In addition,  the structured carbon additives Porocarb<sup>&reg;<\/sup> and Graphistrength<sup>&reg;<\/sup>  were applied to further increase the energy and power density. The  sustainable materials were integrated in pouch cells on a pilot level,  which showed an improved performance (up to 50 % better cycle stability  at 4.3 V) in comparison to cells with industrial reference samples.<\/p>\n<p><strong>Upscaling to pilot production level<\/strong><\/p>\n<p>To come from experimental laboratory level to producibility, usually several upscaling steps are necessary. Within the <strong>ECO COM&#8217;BAT<\/strong>  project the partners combined innovative materials with well-known  production properties in order to come up with only a few upscaling  steps to a relevant pilot level of batch sizes with up to 20kilograms.  For the optimization of the <strong>ECO COM&#8217;BAT<\/strong> materials and cells, a  comprehensive simulation of the battery performance and aging was  performed. Moreover, an efficient recycling concept was developed and  tested to recover precious materials like nickel, cobalt, graphite and  lithium and to achieve a high degree of sustainability. The commercial  impact of the project results for a new generation of sustainable  high-voltage batteries, is promising, as the different battery materials  shows excellent performance and processing properties. The materials  are ready for the nearto-production upscaling once enough market demand  is obtained.<\/p>\n<p> Information about ECO COM&#8217;BAT: <a class=\" external\" href=\"http:\/\/www.eco-combat.com\/\" target=\"_blank\" rel=\"noopener noreferrer\">www.eco-combat.com<\/a><\/p>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"https:\/\/www.isc.fraunhofer.de\/en\/press-and-media\/press-releases\/ecocombat-new-approach-to-enhance-sustainability-of-high-voltage-batteries.html?utm_campaign=ml_pr-ecocombat_0719\" target=\"_blank\" rel=\"noopener noreferrer\">Fraunhofer ISC 2019<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li class=\"shariff-button facebook shariff-nocustomcolor\" style=\"background-color:#4273c8;border-radius:1%\"><a href=\"https:\/\/www.facebook.com\/sharer\/sharer.php?u=https%3A%2F%2Fwww.sonnenseite.com%2Fen%2Fscience%2Feco-combat-opens-up-new-approach-to-enhance-sustainability-of-high-voltage-batteries%2F\" title=\"Bei Facebook teilen\" aria-label=\"Bei Facebook teilen\" role=\"button\" rel=\"nofollow\" class=\"shariff-link\" style=\";border-radius:1%; 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