Zobrazeno 1 - 10
of 28
pro vyhledávání: '"T Vincent, Verheyen"'
Publikováno v:
Journal of Cleaner Production. 230:1165-1175
The production of platform chemicals via carbon negative technologies will play an important role in global efforts to mitigate climate change. Succinic acid biorefineries are commercially mature carbon negative technologies that are plagued with lar
Publikováno v:
Journal of Environmental Management. 241:514-524
Amine-based carbon dioxide capture is the most mature technology for reducing flue gas CO2 emissions. It has been postulated and observed during commercialisation of this technology that significant quantities of waste amines are produced. Further in
Publikováno v:
International Journal of Greenhouse Gas Control. 75:243-253
Reducing the capital cost of post combustion CO2 capture by eliminating flue gas desulfurisation (FGD) pre-treatment, requires management of the amines preferential SO2 absorption. Novel technologies such as CS-Cap restrict the impact of SO2 to only
Autor:
Khorshed Chinu, Paul Munroe, Ben Pace, Lukas Van Zwieten, Alicia Reynolds, Sarasadat Taherymoosavi, Christopher E. Marjo, Torsten Thomas, T. Vincent Verheyen, Stephen Joseph, Scott W. Donne, James M. Hook, Aditya Rawal
Publikováno v:
Journal of Analytical and Applied Pyrolysis. 133:22-29
Improved plant disease resistance, seed germination and plant productivity have recently been associated with mineral-enhanced biochars. This has generated interest in characterizing those biochar organic compounds which may contribute to their favor
Autor:
T. Vincent Verheyen, Adeel Ghayur
Publikováno v:
International Journal of Hydrogen Energy. 43:13852-13859
The aim of this study is to develop an industrial ecosystem whereby wastes/products from a Post-combustion CO2 Capture (PCC) plant are utilised in a hydrogen biorefinery. Subsequently, five hydrogen biorefinery models are developed that use PCC's mod
Autor:
T. Vincent Verheyen, Adeel Ghayur
Publikováno v:
2019 IEEE Asia-Pacific Conference on Computer Science and Data Engineering (CSDE).
Chemical processes offer untapped potential to increase overall system efficiencies by synergizing renewable hydrogen storage with dispatchable renewable energy facilities. In this study an Energy Storage Facility model is developed and simulation co
Autor:
Alicia Reynolds, T. Vincent Verheyen
Publikováno v:
Fuel Processing Technology. 155:88-96
Thermal drying of Victorian brown coals is typically accompanied by a characteristic “odour” associated with their emission of Volatile Organic Compounds (VOCs). Evaluating the health implications of VOC emissions from coal mine fires and large s
Publikováno v:
International Journal of Greenhouse Gas Control. 53:391-400
Fossil fuels are used widely for energy production and are likely to continue to play a major role world wide for many years to come. Much work has been done on the technology for capturing CO 2 from gaseous industrial effluent. For large-scale appli
Publikováno v:
International Journal of Greenhouse Gas Control. 52:201-214
As the development of chemical absorption technology for post-combustion capture (PCC) of CO 2 from coal-fired power station flue gases proceeds towards commercial deployment, the focus on establishing a thorough understanding of the degradation of t
Autor:
Bharti Garg, Nawshad Haque, Pauline Pearson, T. Vincent Verheyen, Ashleigh Cousins, Paul Feron
Publikováno v:
International Journal of Greenhouse Gas Control. 98:103065
CSIRO’s patented CS-Cap process aims at reducing the costs of amine-based post-combustion capture by combining SO2 and CO2 capture using one absorbent in a single absorber column. By avoiding the need for a separate flue gas desulfurization unit, t