2023 Other Outputs Downscaling - Capital mobilisationGreig, Chris and Finch, Benjamin T. (2023). Downscaling - Capital mobilisation. Carlton, VIC, Australia: Net Zero Australia. |
2023 Other Outputs Downscaling - energy export systemsBharadwaj, Bishal, Pascale, Andrew, Beiraghi, Jordan and Smart, Simon (2023). Downscaling - energy export systems. Brisbane, QLD Australia: Net Zero Australia. |
2023 Other Outputs Downscaling - water use and transmissionBharadwaj, Bishal, Pascale, Andrew, Beiraghi, Jordan and Smart, Simon (2023). Downscaling - water use and transmission. Brisbane, QLD Australia: Net Zero Australia. |
2023 Other Outputs Downscaling - hydrogen and synthetic fuel production, transmission and storagePascale, Andrew, Tabatabaei, Mojgan and Smart, Simon (2023). Downscaling - hydrogen and synthetic fuel production, transmission and storage. Brisbane, QLD Australia: Net Zero Australia. |
2023 Other Outputs Downscaling – carbon dioxide capture, transmission, use and storagePascale, Andrew, Greig, Chris, Tabatabaei, Mojgan, Vosshage, Oscar and Smart, Simon (2023). Downscaling – carbon dioxide capture, transmission, use and storage. Downscaling Reports Brisbane, QLD, Australia: Net Zero Australia. |
2023 Other Outputs Downscaling - onshoring of industryBharadwaj, Bishal, Pascale, Andrew, Beiraghi, Jordan and Smart, Simon (2023). Downscaling - onshoring of industry. Brisbane, QLD Australia: Net Zero Australia. |
2023 Other Outputs Downscaling - natural gas and synthetic methane transmissionPascale, Andrew and Smart, Simon (2023). Downscaling - natural gas and synthetic methane transmission. Brisbane, QLD Australia: Net Zero Australia. |
2023 Other Outputs Net Zero Australia - GIS and Map DataDavis, D, Pascale, Andrew, Vecchi, Andrea, Bharadwaj, Bishal, Ryan A. Jones, Strawhorn, Tom, Tabatabaei, M, Lopez Peralta, Maria, Zhang, Yimin, Beiraghi, Jordan, Kiri, U, Vosshage, Finch, B, Batterham, R, Richard Bolt, Brear, Michael, Cullen, B, Domansky, K, Eckard, R, Greig, C, Keenan, R and Smart, Simon (2023). Net Zero Australia - GIS and Map Data. The University of Queensland. (Dataset) doi: 10.48610/5615114 |
2023 Other Outputs Net Zero Australia - Slide Pack Data (old version)Davis, Dominic, Pascale, Andrew, Vecchi, Andrea, Bharadwaj, Bishal, Ryan A. Jones, Strawhorn, Tom, Tabatabaei, M, Lopez Peralta, Maria, Zhang, Yimin, Beiraghi, Jordan, Kiri, U, Vosshage, Finch, B, Batterham, R, Bolt, R, Brear, Michael, Cullen, B, Domansky, K, Eckard, R, Greig, C, Keenan, R and Smart, Simon (2023). Net Zero Australia - Slide Pack Data (old version). The University of Queensland. (Dataset) doi: 10.48610/6850369 |
2023 Journal Article Byproduct use optimization in a combined sinter plant and blast furnace modelMcMahon, C., Cameron, I., Zughbi, H., Biasutti, M., Halstead, A. and Smart, S. (2023). Byproduct use optimization in a combined sinter plant and blast furnace model. Chemical Engineering and Processing, 183 109216, 109216. doi: 10.1016/j.cep.2022.109216 |
2022 Journal Article Surfactant functionalised cobalt silica membranes – Gas permeation and thin film positron annihilation lifetime spectroscopy characterisationOlguin, Gianni, Yacou, Christelle, Motuzas, Julius, Butterling, Maik, Meulenberg, Wilhelm A., Smart, Simon and Diniz da Costa, João C. (2022). Surfactant functionalised cobalt silica membranes – Gas permeation and thin film positron annihilation lifetime spectroscopy characterisation. Journal of Membrane Science, 664 121040, 1-10. doi: 10.1016/j.memsci.2022.121040 |
2022 Journal Article Can transitioning to non-renewable modern energy decrease carbon dioxide emissions in India?Pascale, Andrew, Chakravarty, Shoibal, Lant, Paul, Smart, Simon and Greig, Chris (2022). Can transitioning to non-renewable modern energy decrease carbon dioxide emissions in India?. Energy Research and Social Science, 91 102733, 1-9. doi: 10.1016/j.erss.2022.102733 |
2022 Other Outputs Methods, assumptions, scenarios and sensitivitiesBatterham, Robin, Beiraghi, Jordan, Bharadwaj, Bishal, Bolt, Richard, Brear, Michael, Cullen, Brendan, Davis, Dominic, Domansky, Katherin, Eckard, Richard, Greig, Chris, Jones, Ryan, Keenan, Rodney, Kiri, Utkarsh, Lopez Peralta, Maria, Pascale, Andrew, Smart, Simon, Strawhorn, Tom, Tabatabaei, Mojgan, Vosshage, Oscar, Vecchi, Andrea and Zhang, Yimin (2022). Methods, assumptions, scenarios and sensitivities. Net Zero Australia Australia: Net Zero Australia. |
2022 Other Outputs Net Zero Australia - Interim resultsBatterham, Robin, Beiraghi, Jordan, Bharadwaj, Bishal, Bolt, Richard, Brear, Michael, Cullen, Brendan, Davis, Dominic, Domansky, Katherin, Eckard, Richard, Greig, Chris, Jones, Ryan, Keenan, Rodney, Kiri, Utkarsh, Lopez Peralta, Maria, Pascale, Andrew, Smart, Simon, Strawhorn, Tom, Tabatabaei, Mojgan, Vosshage, Oscar, Vecchi, Andrea and Zhang, Yimin (2022). Net Zero Australia - Interim results. Net Zero Australia Australia: Net Zero Australia. |
2022 Journal Article Regulating the reaction zone of electrochemical CO2 reduction on gas-diffusion electrodes by distinctive hydrophilic-hydrophobic catalyst layersRabiee, Hesamoddin, Ge, Lei, Zhao, Jing, Zhang, Xueqin, Li, Mengran, Hu, Shihu, Smart, Simon, Rufford, Thomas E., Zhu, Zhonghua, Wang, Hao and Yuan, Zhiguo (2022). Regulating the reaction zone of electrochemical CO2 reduction on gas-diffusion electrodes by distinctive hydrophilic-hydrophobic catalyst layers. Applied Catalysis B: Environmental, 310 121362, 121362. doi: 10.1016/j.apcatb.2022.121362 |
2022 Journal Article A green, hybrid cleaning strategy for the mitigation of biofouling deposition in the elevated salinity forward osmosis membrane bioreactor (FOMBR) operationAb Hamid, Nur Hafizah, Wang, David K., Smart, Simon and Ye, Liu (2022). A green, hybrid cleaning strategy for the mitigation of biofouling deposition in the elevated salinity forward osmosis membrane bioreactor (FOMBR) operation. Chemosphere, 288 (Pt 3) 132612, 1-10. doi: 10.1016/j.chemosphere.2021.132612 |
2022 Journal Article Mechanochemically synthesised flexible electrodes based on bimetallic metal–organic framework glasses for the oxygen evolution reactionLin, Rijia, Li, Xuemei, Krajnc, Andraž, Li, Zhiheng, Li, Mengran, Wang, Wupeng, Zhuang, Linzhou, Smart, Simon, Zhu, Zhonghua, Appadoo, Dominique, Harmer, Jeffrey R., Wang, Zhiliang, Buzanich, Ana Guilherme, Beyer, Sebastian, Wang, Lianzhou, Mali, Gregor, Bennett, Thomas D., Chen, Vicki and Hou, Jingwei (2022). Mechanochemically synthesised flexible electrodes based on bimetallic metal–organic framework glasses for the oxygen evolution reaction. Angewandte Chemie, 134 (4) e202112880, 21-7. doi: 10.1002/ange.202112880 |
2022 Journal Article Binder-Free mechanochemical metal-organic framework nanocrystal coatingsLin, Rijia, Yao, Yuqi, Bin Zulkifli, Muhammad Yazid, Li, Xuemei, Gao, Shuai, Huang, Wengang, Smart, Simon, Lyu, Miaoqiang, Wang, Lianzhou, Chen, Vicki and Hou, Jingwei (2022). Binder-Free mechanochemical metal-organic framework nanocrystal coatings. Nanoscale, 14 (6), 2221-2229. doi: 10.1039/d1nr08377e |
2021 Journal Article Stand-alone asymmetric hollow fiber gas-diffusion electrodes with distinguished bronze phases for high-efficiency CO2 electrochemical reductionRabiee, Hesamoddin, Ge, Lei, Zhang, Xueqin, Hu, Shihu, Li, Mengran, Smart, Simon, Zhu, Zhonghua, Wang, Hao and Yuan, Zhiguo (2021). Stand-alone asymmetric hollow fiber gas-diffusion electrodes with distinguished bronze phases for high-efficiency CO2 electrochemical reduction. Applied Catalysis B: Environmental, 298 120538, 1-11. doi: 10.1016/j.apcatb.2021.120538 |
2021 Journal Article Mechanochemically synthesised flexible electrodes based on bimetallic metal–organic framework glasses for the oxygen evolution reactionLin, Rijia, Li, Xuemei, Krajnc, Andraž, Li, Zhiheng, Li, Mengran, Wang, Wupeng, Zhuang, Linzhou, Smart, Simon, Zhu, Zhonghua, Appadoo, Dominique, Harmer, Jeffrey R., Wang, Zhiliang, Buzanich, Ana Guilherme, Beyer, Sebastian, Wang, Lianzhou, Mali, Gregor, Bennett, Thomas D., Chen, Vicki and Hou, Jingwei (2021). Mechanochemically synthesised flexible electrodes based on bimetallic metal–organic framework glasses for the oxygen evolution reaction. Angewandte Chemie International Edition, 61 (4) e202112880, e202112880. doi: 10.1002/anie.202112880 |