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Vanadium removal from spent catalyst used in the manufacture of sulfuric acid by electrical potential application

机译:通过电势应用从制造硫酸制造的废催化剂中去除钒

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Vanadium has many industrial applications and its contribution to environmental contamination is growing every day. Spent catalyst used in the sulfuric acid production is considered a hazardous residue due to the presence of vanadium pentoxide which is the most toxic form of the vanadium. Because of this, currently, these wastes are incinerated. Thus, the removal of vanadium from catalysts is justified from environmental and economic viewpoints. The aim of this work is to evaluate the effect caused by the application of the electrokinetic remediation technique in the removal of vanadium of spent catalyst used in sulfuric acid industry when submitted to different conditions of electrical potential. The experiments were performed under 6.7 and 20.0 V m(-1) constant potential gradient. The results showed that the maintenance of a potential gradient of 20.0 V m(-1) resulted in an increase of 16% in vanadium removal but an increase in energy consumption per kg of remediated catalyst of about 80 times compared to the application of 6.7 V m(-1). It was also observed that the intensity of the applied electrical potential modify the pH of the medium.
机译:钒有许多工业应用,其对环境污染的贡献每天都在增长。由于钒五氧化钒的存在,硫酸产生的废催化剂被认为是危险的残留物,这是钒的钒含量最具毒性形式。因此,目前,这些废物被焚烧。因此,从催化剂中除去钒是非从环境和经济的观点辩护的。本作作品的目的是评估电动修复技术在提交给不同的电势条件下除去硫酸工业中使用的废催化剂的钒的钒引起的效果。实验在6.7和20.0Vm(-1)恒定的电位梯度下进行。结果表明,维持20.0Vm(-1)的潜在梯度导致钒去除量增加16%,但与6.7V的应用相比,每千克预修复催化剂的能耗增加约80倍。 m(-1)。还观察到,所施加电势的强度改变介质的pH。

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