Your selections:
- Abu Fara, Ammar, Rayson, Mark R., Brent, Geoff F., Oliver, Timothy K., Stockenhuber, Michael, Kennedy, Eric M.
Aqueous carbonation of peridotites for carbon utilisation: a critical review
- Rashid, Muhammad Imran, Benhelal, Emad, Anderberg, Leo, Farhang, Faezeh, Oliver, Timothy, Rayson, Mark Stuart, Stockenhuber, Michael
Application of concurrent grinding in direct aqueous carbonation of magnesium silicates
- Rashid, M. I., Benhelal, E., Farhang, F., Oliver, T. K., Stockenhuber, M., Kennedy, E. M.
Development of concurrent grinding for application in aqueous mineral carbonation
- Rashid, M. I., Benhelal, E., Farhang, F., Oliver, T. K., Rayson, M. S., Brent, G. F., Stockenhuber, M., Kennedy, E. M.
- Farhang, F., Oliver, T. K., Rayson, M. S., Brent, G. F., Molloy, T. S., Stockenhuber, M., Kennedy, E. M.
Effects of fly ash properties on carbonation efficiency in CO2 mineralisation
- Ji, Long, Yu, Hai, Zhang, Ruijie, French, David, Grigore, Mihaela, Yu, Bing, Wang, Xiaolong, Yu, Jianglong, Zhao, Shuaifei
Mineral carbonation of CO₂ using alternative feedstocks
Opportunities for mineral carbonation in Australia's mining industry
- Azadi, Mehdi, Edraki, Mansour, Farhang, Faezeh, Ahn, Jiwhan
Study on mineral carbonation of heat activated lizardite at pilot and laboratory scale
- Benhelal, Emad, Rashid, Muhammad Imran, Rayson, Mark S., Prigge, Jan-Dirk, Molloy, Scott, Brent, Geoff F., Cote, Annie, Stockenhuber, Michael, Kennedy, Eric M.
Synthesis and application of mineral carbonation by-products as portland cement substitutes
Aqueous mineral carbonation via decarbonation
CO₂ sequestration by direct mineralisation using fly ash from Chinese Shenfu coal
- Ji, Long, Yu, Hai, Wang, Xiaolong, Grigore, Mihaela, French, David, Gözükara, Yeşim M., Yu, Jianglong, Zeng, Ming
Insights into the dissolution kinetics of thermally activated serpentine for CO₂ sequestration
- Farhang, F., Rayson, M., Brent, G., Hodgins, T., Stockenhuber, M., Kennedy, E.
- Oskierski, H. C., Dlugogorski, B. Z., Oliver, T. K., Jacobsen, G.
Experimental study on the precipitation of magnesite from thermally activated serpentine for CO₂ sequestration
- Farhang, F., Oliver, T. K., Rayson, M., Brent, G., Stockenhuber, M., Kennedy, E.
Mineral carbonation of serpentinite: from the laboratory to pilot scale - the MCi project
- Brent, G. F., Rayson, M. S., Haynes, B. S., Mann, J. P., Hamblin-Wang, S., Dawe, M. S., Conroy, G. L., Cote, A., Kennedy, E. M., Prigge, J. D., Hynes, R., Molloy, S. T., Farhang, F., Zulfiqar, H.
Investigating the suitability of the weak acid process for carbon dioxide mineralisation
Selection of acid for weak acid processing of wollastonite for mineralisation of CO₂
- Ghoorah, Manisha, Dlugogorski, Bogdan Z., Balucan, Reydick D., Kennedy, Eric M.
Natural carbonation of ultramafic rocks in the Great Serpentinite Belt, New South Wales, Australia
Thermal studies of magnesium silicates from the Great Serpentinite Belt in New South Wales for CO₂ sequestration by mineral carbonation in Australia
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