Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid

Various means have been proposed to solve problems such as high ash content and complex composition in the recycling of nickel-containing residue produced by battery manufacturing enterprises. Microwave roasting pretreatment is proposed to improve the nickel leaching rate from the residue. The effec...

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Autores principales: Su Guang, Guo Zhanyong, Guo Ping, Li Fachuang, Zhang Qian, Zhou Huilin, Chang Jun
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Lenguaje:EN
Publicado: De Gruyter 2021
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Acceso en línea:https://doaj.org/article/d4bbee329982452caa9c39d62ef51461
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spelling oai:doaj.org-article:d4bbee329982452caa9c39d62ef514612021-12-05T14:10:50ZStudy on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid2191-955010.1515/gps-2021-0052https://doaj.org/article/d4bbee329982452caa9c39d62ef514612021-08-01T00:00:00Zhttps://doi.org/10.1515/gps-2021-0052https://doaj.org/toc/2191-9550Various means have been proposed to solve problems such as high ash content and complex composition in the recycling of nickel-containing residue produced by battery manufacturing enterprises. Microwave roasting pretreatment is proposed to improve the nickel leaching rate from the residue. The effect of different experimental conditions like microwave roasting temperatures, roasting times, and microwave powers on the nickel leaching rate was studied. It was found that the effect of roasting temperature on the nickel leaching rate was more significant than those of roasting time and microwave power. Meanwhile, after microwave roasting pretreatment, the rate of nickel leaching from the residue could be increased by 20.43%, and weight of the material could also be reduced by more than 21%. After microwave roasting at 450°C, there was no significant change in the main phases of the material, but the surface of the particles exhibited an apparent stratified dissociation phenomenon. Response surface methodology (RSM) was used to optimize the parameters of microwave roasting with nickel leaching rate as the response value. The results showed that the nickel leaching rate could reach 93.11% for roasting at the microwave power of 962 W for 6.2 min under the temperature of 452°C.Su GuangGuo ZhanyongGuo PingLi FachuangZhang QianZhou HuilinChang JunDe Gruyterarticlemicrowave pretreatmentnickel-containing residueleachingrsmChemistryQD1-999ENGreen Processing and Synthesis, Vol 10, Iss 1, Pp 507-517 (2021)
institution DOAJ
collection DOAJ
language EN
topic microwave pretreatment
nickel-containing residue
leaching
rsm
Chemistry
QD1-999
spellingShingle microwave pretreatment
nickel-containing residue
leaching
rsm
Chemistry
QD1-999
Su Guang
Guo Zhanyong
Guo Ping
Li Fachuang
Zhang Qian
Zhou Huilin
Chang Jun
Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
description Various means have been proposed to solve problems such as high ash content and complex composition in the recycling of nickel-containing residue produced by battery manufacturing enterprises. Microwave roasting pretreatment is proposed to improve the nickel leaching rate from the residue. The effect of different experimental conditions like microwave roasting temperatures, roasting times, and microwave powers on the nickel leaching rate was studied. It was found that the effect of roasting temperature on the nickel leaching rate was more significant than those of roasting time and microwave power. Meanwhile, after microwave roasting pretreatment, the rate of nickel leaching from the residue could be increased by 20.43%, and weight of the material could also be reduced by more than 21%. After microwave roasting at 450°C, there was no significant change in the main phases of the material, but the surface of the particles exhibited an apparent stratified dissociation phenomenon. Response surface methodology (RSM) was used to optimize the parameters of microwave roasting with nickel leaching rate as the response value. The results showed that the nickel leaching rate could reach 93.11% for roasting at the microwave power of 962 W for 6.2 min under the temperature of 452°C.
format article
author Su Guang
Guo Zhanyong
Guo Ping
Li Fachuang
Zhang Qian
Zhou Huilin
Chang Jun
author_facet Su Guang
Guo Zhanyong
Guo Ping
Li Fachuang
Zhang Qian
Zhou Huilin
Chang Jun
author_sort Su Guang
title Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
title_short Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
title_full Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
title_fullStr Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
title_full_unstemmed Study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
title_sort study on the effect of microwave roasting pretreatment on nickel extraction from nickel-containing residue using sulfuric acid
publisher De Gruyter
publishDate 2021
url https://doaj.org/article/d4bbee329982452caa9c39d62ef51461
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