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Recovery of basic valuable metals and alloys from E-waste using microwave heating followed by leaching and cementation process

机译:使用微波加热,然后进行浸出和胶结工艺,从电子废物中回收基本有价值的金属和合金

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The whole world understands about the crisis of harmful electronic waste as it is increasing the usage and its disposal. The Government of India asked researchers to come out with innovative alternative solutions, apart from existing conventional methods for safe reuse, recycling and proper disposal particularly for electronic solid waste system. The solution is found which consists of microwave heat treatment followed by acid leaching. The e-waste was first crushed and then the sample was melted in microwave heat treatment to recover the valuable metal in the form of metallic mixture. This mixture was further subjected to acid leachingprocess in the presence of hydrogen peroxide to form leached liquor. The analysis with X-ray diffraction, image mapping and energy-dispersive X-ray spectroscopy shows that the leached liquor sample mainly contain iron, aluminum and copper, mostly in the form of alloys. The results with field-emission scanning electron microscope analysis, also shows that approximately ninety percent leaching efficiency is observed for nickel, cobalt and copper with hydrochloric acid as solvent, whereas iron and aluminum produced less than forty percent.Further, these results are also compared with the existing methods based on the response surface method through thermal plasma process.
机译:全世界都了解有害电子废物的危机,因为它正在增加使用和处置。印度政府要求研究人员提出创新的替代解决方案,除了用于安全再利用,回收和适当处置的现有常规方法外,特别是对于电子固体废物系统。找到该溶液,该溶液包括微波热处理,然后进行酸浸。首先将电子废物粉碎,然后在微波热处理中将样品熔化,以金属混合物的形式回收有价值的金属。将该混合物在过氧化氢的存在下进一步进行酸浸处理,以形成浸出液。 X射线衍射,图像映射和能量色散X射线光谱分析表明,浸出液样品主要含有铁,铝和铜,大部分为合金形式。场发射扫描电子显微镜分析的结果还表明,以盐酸为溶剂的镍,钴和铜的浸出效率约为90%,而铁和铝的浸出效率不到40%。此外,还将这些结果进行了比较与现有的基于响应面法的方法通过热等离子体工艺。

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