FHNW Fachhochschule Nordwestschweiz
  • Startseite
  • Publikationen
  • Projekte
  • Studentische Arbeiten
  • de
  •  Login
Eintraganzeige 
  •   IRF Home
  • Hochschule für Life Sciences
  • Institut für Ecopreneurship
  • Eintraganzeige
  • Hochschule für Life Sciences
  • Institut für Ecopreneurship
  • Eintraganzeige
JavaScript is disabled for your browser. Some features of this site may not work without it.

Re-using bauxite residues: benefits beyond (critical raw) material recovery

Thumbnail
Öffnen
Re‐using bauxite residues benefits beyond critical raw material recovery.pdf (277.3Kb)
Autor/Autorin
Ujaczki, Eva
Feigl, Victoria
Molnar, Monika
Cusack, Patricia
Curtin, Teresa
Courtney, Ronan
Ronan, Lisa
Davris, Panagiotis
Hugi, Christoph
Evangelou, Michael
Balomenos, Efthymios
Lenz, Markus
Datum
2018
Metadata
Zur Langanzeige
Type
01 - Zeitschriftenartikel, Journalartikel oder Magazin
Zusammenfassung
Since the world economy has been confronted with an increasing risk of supply shortages of critical raw materials (CRMs), there has been a major interest in identifying alternative secondary sources of CRMs. Bauxite residues from alumina production are available at a multi-million tonnes scale worldwide. So far, attempts have been made to find alternative re-use applications for bauxite residues, for instance in cement / pig iron production. However, bauxite residues also constitute an untapped secondary source of CRMs. Depending on their geological origin and processing protocol, bauxite residues can contain considerable amounts of valuable elements. The obvious primary consideration for CRM recovery from such residues is the economic value of the materials contained. However, there are further benefits from re-use of bauxite residues in general, and from CRM recovery in particular. These go beyond monetary values (e.g. reduced investment / operational costs resulting from savings in disposal). For instance, benefits for the environment and health can be achieved by abatement of tailing storage as well as by reduction of emissions from conventional primary mining. Whereas certain tools (e.g. life-cycle analysis) can be used to quantify the latter, other benefits (in particular sustained social and technological development) are harder to quantify. This review evaluates strategies of bauxite residue re-use / recycling and identifies associated benefits beyond elemental recovery. Furthermore, methodologies to translate risks and benefits into quantifiable data are discussed. Ultimately, such quantitative data are a prerequisite for facilitating decision-making regarding bauxite residue re-use / recycling and a stepping stone towards developing a zero-waste alumina production process.
Link
https://onlinelibrary.wiley.com/doi/full/10.1002/jctb.5687
URI
http://hdl.handle.net/11654/26756
http://dx.doi.org/10.26041/fhnw-1532
Übergeordnetes Werk
Journal of Chemical Technology and Biotechnology
Jahrgang
93
Ausgabe
9
Seiten
2498-2510
Zitation

Stöbern

Gesamter BestandBereiche & SammlungenErscheinungsdatumAutoren/AutorinnenTitelThemenDiese SammlungErscheinungsdatumAutoren/AutorinnenTitelThemen

Mein Benutzerkonto

EinloggenRegistrieren
Erweiterter Export: CSVErweiterter Export: RISErweiterter Export: BibTeX

Kontakt

Fachhochschule Nordwestschweiz FHNW
Vizepräsidium Hochschulentwicklung
Bahnhofstrasse 6
5210 Windisch

E-Mail: irf@fhnw.ch

Über das IRF

Das IRF ist das digitale Repositorium der Fachhochschule Nordwestschweiz FHNW. Es enthält Publikationen, studentische Arbeiten und Projekte.

Links

IRF Handbuch
Liste der IRF Power User
Feedbackformular

www.fhnw.ch | Impressum | Datenschutz | Urheberrecht | IRF-Reglement