dc.contributor.author |
Bullock, Liam A.
|
|
dc.contributor.author |
Nkosi, Zakhele H.
|
|
dc.contributor.author |
Vele, Nkosi
|
|
dc.contributor.author |
Amponsah-Dacosta, Maxwell
|
|
dc.date.accessioned |
2024-08-01T12:00:53Z |
|
dc.date.available |
2024-08-01T12:00:53Z |
|
dc.date.issued |
2023-03 |
|
dc.description |
DATA AVAILABILITY : Data will be made available on request. |
en_US |
dc.description.abstract |
South Africa has the potential to be a global leader in implementing strategies targeting geochemical carbon
dioxide removal (CDR) using mine tailings, utilising methods for alkalinity production and mineral carbonation.
This is due to the hundreds of millions of tonnes of geochemically and mineralogically suitable tailings produced
annually from diamond, PGM, chrome, nickel, phosphate, copper, talc and magnesite mines, exploiting mafic
and ultramafic rocks. This approach may offer an additional route towards emissions offsets and reduction
targets for South Africa.
Here, a catalogue of tailings has been developed to highlight overall national CDR potential, drawing attention
to site opportunities for pilot schemes. It has been calculated, using bulk geochemistry and shrinking core
modelling, that South Africa has an average 1.1-1.7 MtCO2 removal capacity per year across all suitable sites,
while an additional 11-17 MtCO2 could be removed through weathering historic tailings. The total CDR that
could be achieved over the 2030-2100 period, considering all annually produced tailings available to weather, is
79-119 MtCO2. The capacity may be higher if mines of limited production information are considered, and pre-
2017 tailings production amounts, abandoned stockpiles, and other industrial by-products are included. Diamond
mines hold the highest geochemical CDR capacities, along with high tailings producers in Phalaborwa,
Nkomati and Mogalakwena metal mines. There are incentives for academia, industry and policymakers to revise
the geochemical CDR potential of mine sites in the years to come, and for other countries to catalogue their own
suitable tailings and geochemical CDR potential capacities for future Mt-scale opportunities. |
en_US |
dc.description.department |
Geology |
en_US |
dc.description.librarian |
am2024 |
en_US |
dc.description.sdg |
SDG-09: Industry, innovation and infrastructure |
en_US |
dc.description.sponsorship |
In part by the GGREW project supported by the Natural Environment Research Council (NERC), the Engineering & Physical Sciences Research Council (EPSRC), the Economic & Social Research Council (ESRC), the Department for Business, Energy & Industrial Strategy (BEIS), the Met Office, H2020-EU.1.3.2. and the University Capacity Development Programme (UCDP), sponsored by the Department of Higher Education of South Africa. |
en_US |
dc.description.uri |
https://www.elsevier.com/locate/ijggc |
en_US |
dc.identifier.citation |
Bullock, L.A., Nkosi, Z., Vele, M. et al. 2023, 'Catalogue of South African mine tailings for geochemical carbon dioxide removal purposes', International Journal of Greenhouse Gas Control, vol. 124, art. 103844, pp. 1-13.
https://DOI.org/10.1016/j.ijggc.2023.103844. |
en_US |
dc.identifier.issn |
1750-5836 (print) |
|
dc.identifier.issn |
1878-0148 (online) |
|
dc.identifier.other |
10.1016/j.ijggc.2023.103844 |
|
dc.identifier.uri |
http://hdl.handle.net/2263/97407 |
|
dc.language.iso |
en |
en_US |
dc.publisher |
Elsevier |
en_US |
dc.rights |
© 2023 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license. |
en_US |
dc.subject |
Mineral carbonation |
en_US |
dc.subject |
Alkalinity generation |
en_US |
dc.subject |
Enhanced weathering |
en_US |
dc.subject |
Mine tailings |
en_US |
dc.subject |
South Africa (SA) |
en_US |
dc.subject |
SDG-09: Industry, innovation and infrastructure |
en_US |
dc.subject |
Carbon dioxide removal (CDR) |
en_US |
dc.title |
Catalogue of South African mine tailings for geochemical carbon dioxide removal purposes |
en_US |
dc.type |
Article |
en_US |