Production of fine alumina from waste aluminum can

Increasing the utilization of aluminum in daily life raises waste aluminum. At present, technology to process the scrap is a conventional process which consumes high energy and caused the environmental problem. An alternative technology has been proposed to process the waste aluminum can into va...

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Main Authors: Wan Mohd, Wan Roslina, Purwanto, Hadi
Format: Proceeding Paper
Language:English
Published: 2011
Subjects:
Online Access:http://irep.iium.edu.my/7995/1/auminium.pdf
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author Wan Mohd, Wan Roslina
Purwanto, Hadi
author_facet Wan Mohd, Wan Roslina
Purwanto, Hadi
author_sort Wan Mohd, Wan Roslina
collection IIUM
description Increasing the utilization of aluminum in daily life raises waste aluminum. At present, technology to process the scrap is a conventional process which consumes high energy and caused the environmental problem. An alternative technology has been proposed to process the waste aluminum can into valuable feedstock materials without release any emission. In this process, aluminum can was treated using alkaline solution in a closed reactor. Aluminum was easily dissolved into the solution and gas was spontaneously released. The results showed that the process was mainly controlled by temperature and concentration. The higher the temperature and concentration resulted in the faster of the dissolution process. At the end of the process, solution was filtrated and calcined at desired temperature. X-ray diffraction analysis revealed that the calcined filtrate contained of pure alumina. Particle size analysis results showed that calcination lead to produce finer particle of the alumina. Hydrogen gas also was produced as a main product that can be utilized as green energy source.
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spelling oai:generic.eprints.org:79952011-12-02T07:20:56Z http://irep.iium.edu.my/7995/ Production of fine alumina from waste aluminum can Wan Mohd, Wan Roslina Purwanto, Hadi TN600 Metallurgy Increasing the utilization of aluminum in daily life raises waste aluminum. At present, technology to process the scrap is a conventional process which consumes high energy and caused the environmental problem. An alternative technology has been proposed to process the waste aluminum can into valuable feedstock materials without release any emission. In this process, aluminum can was treated using alkaline solution in a closed reactor. Aluminum was easily dissolved into the solution and gas was spontaneously released. The results showed that the process was mainly controlled by temperature and concentration. The higher the temperature and concentration resulted in the faster of the dissolution process. At the end of the process, solution was filtrated and calcined at desired temperature. X-ray diffraction analysis revealed that the calcined filtrate contained of pure alumina. Particle size analysis results showed that calcination lead to produce finer particle of the alumina. Hydrogen gas also was produced as a main product that can be utilized as green energy source. 2011-06-26 Proceeding Paper NonPeerReviewed application/pdf en http://irep.iium.edu.my/7995/1/auminium.pdf Wan Mohd, Wan Roslina and Purwanto, Hadi (2011) Production of fine alumina from waste aluminum can. In: International Renewable Energy & Environment Conference (IREEC 2011), 24-26 June 2011, Kuala Lumpur. (Unpublished) http://warponline.org/ireec2011.htm
spellingShingle TN600 Metallurgy
Wan Mohd, Wan Roslina
Purwanto, Hadi
Production of fine alumina from waste aluminum can
title Production of fine alumina from waste aluminum can
title_full Production of fine alumina from waste aluminum can
title_fullStr Production of fine alumina from waste aluminum can
title_full_unstemmed Production of fine alumina from waste aluminum can
title_short Production of fine alumina from waste aluminum can
title_sort production of fine alumina from waste aluminum can
topic TN600 Metallurgy
url http://irep.iium.edu.my/7995/1/auminium.pdf
work_keys_str_mv AT wanmohdwanroslina productionoffinealuminafromwastealuminumcan
AT purwantohadi productionoffinealuminafromwastealuminumcan