{"id":36177,"date":"2017-10-09T09:00:34","date_gmt":"2017-10-09T12:00:34","guid":{"rendered":"http:\/\/patagoniambiental.com.ar\/info\/?p=36177"},"modified":"2017-10-08T21:03:47","modified_gmt":"2017-10-09T00:03:47","slug":"el-potencial-revolucionario-de-la-extraccion-sostenible-del-litio-en-argentina","status":"publish","type":"post","link":"https:\/\/patagoniambiental.com.ar\/info\/el-potencial-revolucionario-de-la-extraccion-sostenible-del-litio-en-argentina\/","title":{"rendered":"El potencial revolucionario de la extracci\u00f3n sostenible del litio en Argentina"},"content":{"rendered":"<p>El investigador del Conicet y director del Instituto de Qu\u00edmica F\u00edsica de los Materiales, Medio Ambiente y Energ\u00eda (Inquimae) de la UBA,\u00a0Ernesto Calvo, fue reconocido con el\u00a0<a href=\"http:\/\/www.perfil.com\/sociedad\/comenzo-la-previa-de-la-entrega-de-los-premios-perfil-a-la-inteligencia-de-los-argentinos.phtml\">Premio Perfil<\/a>\u00a0a la\u00a0Inteligencia de los argentinos en Ciencia y Tecnolog\u00eda\u00a0por su novedoso m\u00e9todo para extraer litio de salares de altura de manera eficiente, limpia y sostenible. En una entrevista previa a la entrega de los galardones que\u00a0<a href=\"http:\/\/www.perfil.com\/sociedad\/premios-perfil-conoce-a-los-ganadores-de-la-novena-edicion.phtml\">se realiz\u00f3 el martes en la c\u00fapula del Centro Cultural Kirchner (CCK)<\/a>, el especialista explic\u00f3 en qu\u00e9 consiste su t\u00e9cnica.<\/p>\n<p>\u00abEn el a\u00f1o 2012 fuimos a Jujuy y vimos en directo c\u00f3mo se extrae el litio de salmueras de salares de altura. B\u00e1sicamente estos salares se concentran en el norte de Chile, en Atacama, en el sur de Bolivia , en Uyuni, y en el noroeste de Argentina: Salta, Catamarca y Jujuy. El proceso es muy lento, lleva m\u00e1s de un a\u00f1o, un salar consiste en una capa de sal blanca y\u00a0abajo de eso hay capas de salmuera. Lo que se hace es extraer con bombas esa salmuera y se la pone en piletas enormes pero de muy baja profundidad\u00bb, explc\u00f3 Calvo.<\/p>\n<p>\u00abPara dar una idea, la explotaci\u00f3n del salar de\u00a0Atacama tiene una superficie equivalente a tres mil estadios de f\u00fatbol.\u00a0El sol la evapora y de esa evaporaci\u00f3n se van concentrando distintas sales y ocurre lo que t\u00e9cnicamente se llama una &#8216;recristalizaci\u00f3n fraccionada&#8217;, es decir caen los cristales de cloruro de sodio, despu\u00e9s cloruro de sodio y potasio, despu\u00e9s de magnesio y potasio, cada uno de ellos tiene un nombre. Al final,\u00a0queda una soluci\u00f3n concentrada de litio, que se ha concentrado al sol durante meses\u00bb, agrega.<\/p>\n<p>En ese contexto prosigue: \u00abAh\u00ed se agrega carbonato de sodio y precipita el carbonato de litio grado comercial, no bater\u00eda, que debe ser purificado. Este proceso pierde enormes cantidades de agua,\u00a0millones de litros de agua por cada tonelada de carbonato de litio que se exporta\u00bb.<\/p>\n<p>\u00abEl litio tiene muchos usos. Hist\u00f3ricamente se us\u00f3 en la industria del vidrio y del cer\u00e1mico. Por ejemplo, los vidrios que hay en las cocinas el\u00e9ctricas, que s\u00f3lo se calienta la zona del calefactor, son vidrios de litio.\u00a0La industria del cer\u00e1mico, la farmac\u00e9utica y la aeroespacial: un Airbus tiene 400 kilos de litio en su estructura met\u00e1lica. Por supuesto tambi\u00e9n en bater\u00edas.\u00bb, expres\u00f3 el investigador.<\/p>\n<p>\u00abEn los \u00faltimos 25 a\u00f1os vimos c\u00f3mo los celulares cambiaron nuestra forma de comunicar.\u00a0Cada bater\u00eda de celular tiene un poquito m\u00e1s de medio gramo de litio\u00a0y probablemente en los pr\u00f3ximos a\u00f1os lo que nos va a asombrar es el auto el\u00e9ctrico cuyo \u00edcono es el Tesla. un auto Tesla tiene una bater\u00eda con unos cuatro kilos y medio de litio, que equivale a 17 mil celulares, este es el salto que estamos pegando en el uso del litio\u00bb, a\u00f1adi\u00f3.<\/p>\n<p>Con este proyecto, \u00aben el momento en que vimos la cantidad de agua que se pierde, la generaci\u00f3n de residuos y sustancias qu\u00edmicas que se usan\u00bb nos planteamos \u00absi no ser\u00eda posible usar el mismo proceso que ocurre en la bater\u00eda de un celular para extraer el litio.\u00a0Lo probamos en el laboratorio y fue exitoso, CONICET lo patent\u00f3 y en este momento estamos escalando en reactores de laboratorio a planta piloto, para llegar en el t\u00e9rmino de un a\u00f1o, depende de ciertas inversiones, a extraer unos 500 kilos de carbonato de litio por d\u00eda, esa ser\u00eda la prueba pre-industrial\u00bb, relat\u00f3 el miembro del CONICET.<\/p>\n<p>Medio ambiente. \u00abEl cloruro de litio est\u00e1 en una concentraci\u00f3n entre medio gramo y un gramo, m\u00e1ximo. Es decir, si yo quiero concentrar a 7 o 19 gramos por litro, estoy perdiendo varios cientos de miles de litros de agua cuando recupero una tonelada de carbonato de litio. Es mucha el agua que se pierde, se pierde en un desierto a cuatro mil metros de altura. La qu\u00edmica es bastante simple, s\u00f3lo que ocurre a cuatro mil metros de altura y competimos con el agua de manantial y de comunidades\u00bb, advirti\u00f3 Calvo.<\/p>\n<p>Proyectos en el sector privado.\u00a0\u00abHay cinco o seis empresas internacionales que extraen litio y estas empresas tienen proyectos a largo plazo, a diez a\u00f1os. Cuando una de estas empresas descubren un recurso en el salar, tardan no menos de 7 a\u00f1os hasta que empiezan a explotarlo comercialmente porque tienen que hacer estudios hidrogeol\u00f3gicos, tienen que montar la planta de extracci\u00f3n. Las empresas quieren hablar con nostros y ver si queremos poner nuestro proceso paralelo al de ellos para evaluarlo\u00bb, concluy\u00f3.<\/p>\n<div class=\"teads-inread\">\n<div>\n<div id=\"teads0\" class=\"teads-player\">Fuente:\u00a0http:\/\/www.perfil.com\/sociedad\/premios-perfil-ernesto-calvo-explica-el-metodo-que-extrae-litio-de-salares-de-modo-eficiente-y-sostenible.phtml<\/div>\n<\/div>\n<\/div>\n","protected":false},"excerpt":{"rendered":"<p>El investigador del Conicet y director del Instituto de Qu\u00edmica F\u00edsica de los Materiales, Medio Ambiente y Energ\u00eda (Inquimae) de [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":36178,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"default","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","ast-disable-related-posts":"","theme-transparent-header-meta":"","adv-header-id-meta":"","stick-header-meta":"","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"default","ast-page-background-enabled":"default","ast-page-background-meta":{"desktop":{"background-color":"var(--ast-global-color-5)","background-image":"","background-repeat":"repeat","background-position":"center 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