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首页> 外文期刊>International Journal of Environmental Science and Technology >Transformation of waste tin-plated steel to iron nanosheets and their application in generation of oxygen
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Transformation of waste tin-plated steel to iron nanosheets and their application in generation of oxygen

机译:废镀锡钢对铁纳米液的转化及其在氧气产生中的应用

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The rising popularity of tin-plated steel for packaging food owing to its excellent anti-corrosion properties and good strength to withstand the shipment, storage and handling leads to an environmental pollution (mainly soil and water pollution) because of their resultant disposal as waste containers. In the present study, we have designed a new process for conversion of metallic waste to iron nanosheets and utilized this material to generate oxygen, an important component of environment for sustainable life. This transformation of waste tin-plated steel to iron nanosheet (20-25nm thick) will provide a solution to environmental pollution as well as a robust electrocatalyst for oxygen evolution reaction. Here, a single-step hydrometallurgy approach has been utilized for the transformation of waste tin-plated steel containers to iron nanosheet, and its efficiency toward the oxygen evolution reaction in alkaline condition was investigated. The results show that the nanostructured iron sheet exhibits better properties as a electrocatalyst for oxygen evolution reaction in terms of the onset overpotential of O-2 evolution (similar to 329mV) in comparison with the bulk iron (similar to 500mV) as well as iron-based alloy (Fe33Co67,similar to 400mV). Thus, in the present investigation, the transformation of an efficient electrocatalyst for oxygen evolution reaction, which is a value-added product from waste scrap, has been achieved at low cost. The above process is quite economical and can be easily extended for large-scale productions of the robust electrocatalyst for oxygen evolution reaction.
机译:由于其优异的防腐性能和良好的力量来承受货件,储存和处理而导致环境污染(主要是土壤和水污染),因此镀锡食品的普及普遍性,因为它们作为废物容器所致的污染(主要是土壤和水污染) 。在本研究中,我们设计了一种用于将金属废物转化为铁纳米片的新方法,并利用这种材料产生氧气,是可持续生命环境的重要组成部分。废镀锡钢对铁纳米型(20-25nm厚)的这种转变将提供对环境污染的溶液以及用于氧气进化反应的鲁棒电催化剂。这里,已经利用了单步湿法冶金方法,用于将废镀锡钢容器转化为铁纳圆片,研究了其朝向碱性病症中氧气进化反应的效率。结果表明,与散装铁(类似于500mV)以及铁 - 基合金(Fe33Co67,类似于400mV)。因此,在本研究中,以低成本实现了一种用于来自废料废料的增值产物的有效电催化剂的转化。上述过程是非常经济的,可以很容易地延长用于氧化反应的鲁棒电催化剂的大规模生产。

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