Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology

With the decommissioning of nuclear facilities, an increasing amount of radioactive graphite needs to be treated safely and effectively. In this work, microwave sintering technology was initially applied to treat simulated graphite waste. The effects of microwaves on the phase composition and micros...

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Autores principales: Guilin Wei, Yulong Miao, Beilong Yuan, Xirui Lu
Formato: article
Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/6112c7fedf3f4530b68e9518ad1af66f
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spelling oai:doaj.org-article:6112c7fedf3f4530b68e9518ad1af66f2021-11-12T04:49:09ZInvestigation of the mechanism for simulated graphite waste treatment via microwave sintering technology2666-911010.1016/j.hazl.2021.100046https://doaj.org/article/6112c7fedf3f4530b68e9518ad1af66f2021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2666911021000344https://doaj.org/toc/2666-9110With the decommissioning of nuclear facilities, an increasing amount of radioactive graphite needs to be treated safely and effectively. In this work, microwave sintering technology was initially applied to treat simulated graphite waste. The effects of microwaves on the phase composition and microstructure of graphite were investigated. Combined with the mass loss results and fitting results of the phase, the mechanism for simulated graphite waste treatment via microwave sintering was obtained. According to the results, there are three stages regarding the effect of microwave sintering on the microstructure of graphite waste. This work reveals the potential application of microwave sintering technology in the treatment of graphite waste and its treatment mechanism.Guilin WeiYulong MiaoBeilong YuanXirui LuElsevierarticleSimulated graphite wasteMicrowave sinteringTreatment mechanismHazardous substances and their disposalTD1020-1066ENJournal of Hazardous Materials Letters, Vol 2, Iss , Pp 100046- (2021)
institution DOAJ
collection DOAJ
language EN
topic Simulated graphite waste
Microwave sintering
Treatment mechanism
Hazardous substances and their disposal
TD1020-1066
spellingShingle Simulated graphite waste
Microwave sintering
Treatment mechanism
Hazardous substances and their disposal
TD1020-1066
Guilin Wei
Yulong Miao
Beilong Yuan
Xirui Lu
Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
description With the decommissioning of nuclear facilities, an increasing amount of radioactive graphite needs to be treated safely and effectively. In this work, microwave sintering technology was initially applied to treat simulated graphite waste. The effects of microwaves on the phase composition and microstructure of graphite were investigated. Combined with the mass loss results and fitting results of the phase, the mechanism for simulated graphite waste treatment via microwave sintering was obtained. According to the results, there are three stages regarding the effect of microwave sintering on the microstructure of graphite waste. This work reveals the potential application of microwave sintering technology in the treatment of graphite waste and its treatment mechanism.
format article
author Guilin Wei
Yulong Miao
Beilong Yuan
Xirui Lu
author_facet Guilin Wei
Yulong Miao
Beilong Yuan
Xirui Lu
author_sort Guilin Wei
title Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
title_short Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
title_full Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
title_fullStr Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
title_full_unstemmed Investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
title_sort investigation of the mechanism for simulated graphite waste treatment via microwave sintering technology
publisher Elsevier
publishDate 2021
url https://doaj.org/article/6112c7fedf3f4530b68e9518ad1af66f
work_keys_str_mv AT guilinwei investigationofthemechanismforsimulatedgraphitewastetreatmentviamicrowavesinteringtechnology
AT yulongmiao investigationofthemechanismforsimulatedgraphitewastetreatmentviamicrowavesinteringtechnology
AT beilongyuan investigationofthemechanismforsimulatedgraphitewastetreatmentviamicrowavesinteringtechnology
AT xiruilu investigationofthemechanismforsimulatedgraphitewastetreatmentviamicrowavesinteringtechnology
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