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将废钒催化剂回收的五氧化二钒溶液用作蓄电池中的高效电解质。

Utilization of recovered vanadium pentoxide solution from a spent vanadium catalyst as an efficient electrolyte in an electric storage battery.

作者信息

Al Amayreh Hiba H, Hawwari Majd I, Hourani Mohammed K, Al Bawab Abeer

机构信息

Department of Scientific Basic Sciences, Faculty of Engineering Technology, Al-Balqa Applied University, Amman, Jordan.

Jordan Research and Training Reactor (JRTR), Jordan Atomic Energy Commission, Amman, Jordan.

出版信息

Sci Prog. 2025 Jul-Sep;108(3):368504251366849. doi: 10.1177/00368504251366849. Epub 2025 Aug 12.

Abstract

ObjectiveThe present investigation aims to utilize the extract of vanadium pentoxide from spent vanadium catalyst in a tabletop vanadium redox flow battery (VRFB) and a home-designed cell stack. The most commonly used redox couples in VRFB systems are V/V and V/V which typically require the use of costly VOSO standard solution. In this study we propose an alternatve approch by substituting these expensive solutions with more affordable and environmentally friendly option: a VO solution derived from spent catalyst.MethodCharacterization of the recovered vanadium solutions, incorporation of these solutions were performed in a three electrode cell and in a real bench-top vanadium storage battery model, and the performance of the constructed battery was tested using different electrochemical techniques such as cyclic voltammetry.ResultThe increasing current and potential observed were proportional to the concentration of the recovered solution. Furthermore, an in-house tabletop VRFB utilizing the recovered electrolyte exhibited promising electrochemical properties, achieving a maximum discharge potential of 2.0 V after 180 minutes of electrical charging and a maximum current of 83.5 mA. These results are encouraging for the utilization of recovered vanadium solutions in VRFBs.ConclusionThis study results are encouraging for the utilization of recovered vanadium solutions in VRFBs. This work suggests a novel technique that utilizes waste vanadium solutions from the sulfuric acid industry for sustainable VRFB applications.

摘要

目的

本研究旨在将废钒催化剂中五氧化二钒的提取物用于桌面型钒氧化还原液流电池(VRFB)和自行设计的电池堆中。VRFB系统中最常用的氧化还原对是V/V和V/V,这通常需要使用昂贵的VOSO标准溶液。在本研究中,我们提出了一种替代方法,用更经济实惠且环保的选择——从废催化剂中获得的VO溶液,来替代这些昂贵的溶液。

方法

对回收的钒溶液进行表征,将这些溶液分别加入三电极电池和实际的桌面型钒蓄电池模型中,并使用循环伏安法等不同的电化学技术测试所构建电池的性能。

结果

观察到的电流和电位增加与回收溶液的浓度成正比。此外,使用回收电解质的自制桌面型VRFB表现出了良好的电化学性能,在充电180分钟后达到了2.0 V的最大放电电位和83.5 mA的最大电流。这些结果对于在VRFB中使用回收的钒溶液来说是令人鼓舞的。

结论

本研究结果对于在VRFB中使用回收的钒溶液来说是令人鼓舞的。这项工作提出了一种利用硫酸工业废钒溶液实现VRFB可持续应用的新技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8446/12344351/8b0d04f78a69/10.1177_00368504251366849-fig1.jpg

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