Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production

Aluminum is remarkably in demand due to its wider applicability in various applications. Nevertheless, the dross residues need to be treated prior to discharge, not only to recover the valuable metals but also to assess potential economic and environmental impacts. The present study describes the ga...

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Main Authors: Rashidi, N.A., Chai, Y.H., Yusup, S., Kathiravale, S., Ismail, N.M.S.
Format: Book
Published: World Scientific Publishing Co. Pte. Ltd. 2022
Online Access:http://scholars.utp.edu.my/id/eprint/34066/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85141140802&doi=10.1142%2f9789811245800_0007&partnerID=40&md5=576769e7371f1cb2f42023e88ed83050
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spelling oai:scholars.utp.edu.my:340662023-01-03T07:18:44Z http://scholars.utp.edu.my/id/eprint/34066/ Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production Rashidi, N.A. Chai, Y.H. Yusup, S. Kathiravale, S. Ismail, N.M.S. Aluminum is remarkably in demand due to its wider applicability in various applications. Nevertheless, the dross residues need to be treated prior to discharge, not only to recover the valuable metals but also to assess potential economic and environmental impacts. The present study describes the gate-to-gate life cycle assessment of the aluminum recovery from dross wastes via hydrolysis-leaching-calcination technology. Two scenarios that include dual acid leaching techniques using hydrochloric acid (HCl) and sulfuric acid (H2SO4) and utilization of non-renewablebased electricity and renewable-derived electricity impacts were explored. Further, the influence of both scenarios on the Global Warming Potential (GWP) and Marine Aquatic Ecotoxicity Potential (MAETP) was also analyzed. Sensitivity analysis with regard to variations in leaching efficiency (30, 50, and 70) showed good improvement in acidification (36.4 improvement) and eutrophication (43.5 improvement) categories, while other environmental categories are insignificant. Overall, this chapter highlights the conversion methods of black aluminum dross to gamma alumina and the life cycle assessment for 1 ton production of γ-alumina derived from black aluminum dross. © 2022 World Scientific Publishing Company. All rights reserved. World Scientific Publishing Co. Pte. Ltd. 2022 Book NonPeerReviewed Rashidi, N.A. and Chai, Y.H. and Yusup, S. and Kathiravale, S. and Ismail, N.M.S. (2022) Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production. World Scientific Publishing Co. Pte. Ltd., pp. 113-133. ISBN 9789811245800; 9789811245794 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85141140802&doi=10.1142%2f9789811245800_0007&partnerID=40&md5=576769e7371f1cb2f42023e88ed83050 10.1142/9789811245800₀₀₀₇ 10.1142/9789811245800₀₀₀₇
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Aluminum is remarkably in demand due to its wider applicability in various applications. Nevertheless, the dross residues need to be treated prior to discharge, not only to recover the valuable metals but also to assess potential economic and environmental impacts. The present study describes the gate-to-gate life cycle assessment of the aluminum recovery from dross wastes via hydrolysis-leaching-calcination technology. Two scenarios that include dual acid leaching techniques using hydrochloric acid (HCl) and sulfuric acid (H2SO4) and utilization of non-renewablebased electricity and renewable-derived electricity impacts were explored. Further, the influence of both scenarios on the Global Warming Potential (GWP) and Marine Aquatic Ecotoxicity Potential (MAETP) was also analyzed. Sensitivity analysis with regard to variations in leaching efficiency (30, 50, and 70) showed good improvement in acidification (36.4 improvement) and eutrophication (43.5 improvement) categories, while other environmental categories are insignificant. Overall, this chapter highlights the conversion methods of black aluminum dross to gamma alumina and the life cycle assessment for 1 ton production of γ-alumina derived from black aluminum dross. © 2022 World Scientific Publishing Company. All rights reserved.
format Book
author Rashidi, N.A.
Chai, Y.H.
Yusup, S.
Kathiravale, S.
Ismail, N.M.S.
spellingShingle Rashidi, N.A.
Chai, Y.H.
Yusup, S.
Kathiravale, S.
Ismail, N.M.S.
Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production
author_facet Rashidi, N.A.
Chai, Y.H.
Yusup, S.
Kathiravale, S.
Ismail, N.M.S.
author_sort Rashidi, N.A.
title Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production
title_short Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production
title_full Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production
title_fullStr Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production
title_full_unstemmed Gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to γ-alumina as catalyst support for biofuel production
title_sort gate-to-gate life cycle assessment of solid waste conversion of black aluminum dross to î³-alumina as catalyst support for biofuel production
publisher World Scientific Publishing Co. Pte. Ltd.
publishDate 2022
url http://scholars.utp.edu.my/id/eprint/34066/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85141140802&doi=10.1142%2f9789811245800_0007&partnerID=40&md5=576769e7371f1cb2f42023e88ed83050
_version_ 1754532122234716160
score 13.160551