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A facile hydrothermal recovery of nano sealed MnCh particle from waste batteries: An advanced material for electrochemical and environmental applications

机译:来自废电池的纳米密封Mnch粒子的容易水热回收:用于电化学和环境应用的先进材料

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This work deliberates a method for manganese (Mn) recovery as manganese oxide obtained by leaching of waste batteries with 3M sulphuric acid. The Experimental test for the recovery of Mn present within the waste dry cell batteries were carried out by a reductive leachant. Elemental composition of leached sample was confirmed by Energy Dispersive X-ray analysis (EDAX), and Surface morphology of the recovered M11O2 was examined by using Scanning Electron microscopy (SEM). Phase composition was confirmed from X-ray Diffractro meter (XRD). The obtained leached solution was treated with 4M NaOH, yielded to Manganese Dioxide with high extraction degree, while it do not touches the Zn content within the solutions. The recovered samples were characterized using XRD, ED AX, SEM and Fourier transform infrared spectrometry (FTIR). The electrochemical properties of the as-recovered sample from leached solution was examined used cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). Remarkably, the 80 wt. % MnCh displays reversibility, diffusion constant, smaller equivalent series resistance and charge transfer resistance in 0.5M NaOH showed superior results as compared to alternative electrolytes. The ideal capacitive behaviour of MnO2 electrode and nano particle was applied to photocatalytic degradation of dyes.
机译:这项工作刻意锰(Mn)回收的方法作为通过用3M硫酸浸出废电池而获得的锰氧化物。通过还原的途中进行了在废干细胞电池内呈现的Mn的试验试验。通过能量分散X射线分析(edax)证实了浸出样品的元素组成,通过使用扫描电子显微镜(SEM)检查回收的M11O2的表面形态。从X射线衍射计(XRD)证实相组合物。将得到的浸出溶液用4M NaOH处理,得到高萃取程度的二氧化锰,同时它不会触及溶液内的Zn含量。使用XRD,ED AX,SEM和傅立叶变换红外光谱法(FTIR)表征回收的样品。研究了来自浸出溶液的后回收样品的电化学性质使用循环伏安法(CV)和电化学阻抗光谱(EIS)。值得注意的是,80 wt。 %Mnch显示可逆性,扩散恒定,较小的等效串联电阻和电荷转移电阻在0.5M NaOH中显示出与替代电解质相比的优异结果。将MnO2电极和纳米颗粒的理想电容性能施用于染料的光催化降解。

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