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Green Route for Beneficiation of Metallic Materials from Electronic Waste for Selective Reduction of CO2

机译:用于电子废物的金属材料的酿酒器的绿色途径,用于减少CO2

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摘要

The effective disposal of ever-increasing electronic waste (e-waste) is one of the grand challenges for the scientific and technological community today. As e-waste has exponentially been increasing the burden on our environment with long-term effects on the ecosystem, the need for finding sustainable means to recover, reuse, and recycle the materials available in the e-waste is much sought after in the present time. In this background, we demonstrate an easily scalable green route for the beneficiation and effective usage of metallic materials from the e-waste using cryo-temperature grinding with the primary objective of retrieving the near-full metallic residue from e-waste by an energy-efficient and eco-friendly approach. The metallic nanoparticles thus obtained are subsequently utilized for the selective reduction of CO2 into different gaseous products via the electrochemical route, leading to the evolution of CH4, H-2, and CO as major gaseous products at neutral pH and CO as the major product at basic pH. In a nutshell, the current approach can provide useful means for achieving major metallic residue from the e-waste, which can further be utilized for green energy production in an eco-friendly manner, making the process sustainable.
机译:有效处理不断增加的电子废物(电子废物)是今天科技界的大挑战之一。随着电子废物对环境的负担呈指数级,对生态系统的长期影响,需要寻找可持续性手段来恢复,重用和再循环电子废物中可用的材料,以后得到了很大程度上时间。在该背景中,我们展示了一种易于使用的绿色绿色途径,用于使用低温研磨具有从电子废物中获得金属材料的益处和有效使用,其主要目的是通过能量从电子废物中检索近乎全金属残留物的主要目的 - 高效又环保的方法。如此获得的金属纳米颗粒随后用于通过电化学途径选择性将CO 2还原成不同的气态产物,导致CH4,H-2和CO作为中性pH和CO作为主要产品的主要气态产物的进化。基本pH。在坚果壳中,目前的方法可以为从电子废物实现主要金属残留物提供有用的手段,这可以以生态友好的方式进一步用于绿色能源生产,使得该过程可持续。

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