首页> 外文期刊>Revista Eletrnica em Gesto, Educao e Tecnologia Ambiental >RECICLAGEM DE BATERIAS DE íONS DE LíTIO DE APARELHOS CELULARES: RECUPERA??O DO SOLVENTE ORG?NICO DO ELETRóLITO ATRAVéS DA ADSOR??O EM CARV?O ATIVADO
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RECICLAGEM DE BATERIAS DE íONS DE LíTIO DE APARELHOS CELULARES: RECUPERA??O DO SOLVENTE ORG?NICO DO ELETRóLITO ATRAVéS DA ADSOR??O EM CARV?O ATIVADO

机译:回收锂离子电池以用于细胞设备:通过活性煤的吸附从电解质中回收有机溶剂

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http://dx.doi.org/10.5902/223611704251 The recycling of electronic equipment has become essential due to the scarcity of naturalresources associated with the increasing development of new technologies for these deviceswhich become obsolete in an increasingly faster. Most mobile phones are manufactured equippedwith lithium-ion batteries. These batteries are composed of a cathode, an anode and a separatorbetween them that is embedded in an organic solvent with lithium salts, which acts as anelectrolyte. The organic solvent comprises a mixture of carbonates. Studies on the recycling of LiIonbatteries generally aim to recover the metals present in their composition, such as copper. Butso far there is little information available about the recovery of organic solvent present in the LiIonbatteries. That this solvent is toxic and polluting. The objective of this study was to quantifythe solvent and prevent the emission of solvent from the activated carbon adsorption. As a result,we obtained a considerable amount of volatiles in the batteries, 9 to 12% of the total weight ofthese. The adsorption of solvent was made in an equipment with activated carbon. Adsorbed on?The recycling of electronic equipment has become essential due to the scarcity of naturalresources associated with the increasing development of new technologies for these deviceswhich become obsolete in an increasingly faster. Most mobile phones are manufactured equippedwith lithium-ion batteries. These batteries are composed of a cathode, an anode and a separatorbetween them that is embedded in an organic solvent with lithium salts, which acts as anelectrolyte. The organic solvent comprises a mixture of carbonates. Studies on the recycling of LiIonbatteries generally aim to recover the metals present in their composition, such as copper. Butso far there is little information available about the recovery of organic solvent present in the LiIonbatteries. That this solvent is toxic and polluting. The objective of this study was to quantifythe solvent and prevent the emission of solvent from the activated carbon adsorption. As a result,we obtained a considerable amount of volatiles in the batteries, 9 to 12% of the total weight ofthese. The adsorption of solvent was made in an equipment with activated carbon. Adsorbed onactivated carbon were approximately 27.38% of the solvent from the battery. This process seemedto be effective to a point where one can no longer adsorb the solvent for possibly carbon reachedits maximum adsorption capacity. Another reason for the low yield of the adsorption may be dueto reactions of the solvent with water in the air in the moment of the opening of the battery.
机译:http://dx.doi.org/10.5902/223611704251由于自然资源的匮乏与这些设备新技术的不断发展相关,因此电子设备的回收已变得至关重要,而这些新技术的发展越来越快。大多数手机都是用锂离子电池制造的。这些电池由阴极,阳极和位于它们之间的隔板组成,该隔板被嵌入具有锂盐的有机溶剂中,锂盐充当电解质。有机溶剂包括碳酸盐的混合物。锂离子电池回收的研究通常旨在回收​​其成分中存在的金属,例如铜。但是到目前为止,关于锂离子电池中存在的有机溶剂的回收的信息很少。认为该溶剂有毒且污染。这项研究的目的是量化溶剂并防止活性炭吸附释放出溶剂。结果,我们在电池中获得了大量的挥发物,占这些电池总重量的9%至12%。溶剂的吸附是在具有活性炭的设备中进行的。由于自然资源的匮乏与这些设备新技术的不断发展相关,因此电子设备的回收已变得至关重要,而这些新技术的发展越来越快。大多数手机都是用锂离子电池制造的。这些电池由阴极,阳极和位于它们之间的隔板组成,该隔板被嵌入具有锂盐的有机溶剂中,锂盐充当电解质。有机溶剂包括碳酸盐的混合物。锂离子电池回收的研究通常旨在回收​​其成分中存在的金属,例如铜。但是到目前为止,关于锂离子电池中存在的有机溶剂的回收的信息很少。认为该溶剂有毒且污染。这项研究的目的是量化溶剂并防止活性炭吸附释放出溶剂。结果,我们在电池中获得了大量的挥发物,占这些电池总重量的9%至12%。溶剂的吸附是在具有活性炭的设备中进行的。吸附的活​​性炭约占电池中溶剂的27.38%。该过程似乎是有效的,以至于由于碳可能达到其最大吸附容量而不再能吸附溶剂。吸附产率低的另一个原因可能是由于在打开电池时溶剂与空气中的水反应。

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