Browsing Staff publications (SWEE) by Author "Fennell, Paul S."

Browsing Staff publications (SWEE) by Author "Fennell, Paul S."

Sort by: Order: Results:

  • Bui, Mai; Adjiman, Claire S.; Bardow, André; Anthony, Edward J.; Boston, Andy; Brown, Solomon; Fennell, Paul S.; Fuss, Sabine; Galindo, Amparo; Hackett, Leigh A.; Hallett, Jason P.; Herzog, Howard J.; Jackson, George; Kemper, Jasmin; Krevor, Samuel; Maitland, Geoffrey C.; Matuszewski, Michael; Metcalfe, Ian S.; Petit, Camille; Puxty, Graeme; Reimer, Jeffrey; Reiner, David M.; Rubin, Edward S.; Scott, Stuart A.; Shah, Nilay; Smit, Berend; Trusler, J. P. Martin; Webley, Paul; Wilcoxx, Jennifer; Mac Dowell, Niall (Royal Society of Chemistry, 2018-03-12)
    Carbon capture and storage (CCS) is broadly recognised as having the potential to play a key role in meeting climate change targets, delivering low carbon power, decarbonising industry and, more recently, its ability to ...
  • Ji, Guozhao; Yao, Joseph G.; Clough, Peter T.; Diniz da Costa, João C.; Anthony, Edward J.; Fennell, Paul S.; Wang, Wei; Zhao, Ming (Royal Society of Chemistry, 2018-07-24)
    To alleviate the pressing problem of greenhouse gas emissions, the development and deployment of sustainable energy technologies is necessary. One potentially viable approach for replacing fossil fuels is the development ...
  • Ghaedi, Hosein; Zhao, Ming; Clough, Peter T.; Anthony, Ben; Fennell, Paul S. (Elsevier, 2020-07-23)
    To study CO2 capture potential, three types of transition-temperature mixtures (TTMs) were prepared by mixing ethyltriphenylphosphonium bromide (MTPPB) as a hydrogen bond acceptor (HBA) and n-methyl diethanolamine (MDEA) ...
  • Clough, Peter T.; Boot-Handford, Matthew E.; Zheng, Liya; Zhang, Zili; Fennell, Paul S. (MDPI, 2018-05-21)
    The performance of combined CO2-sorbent/catalyst particles for sorption enhanced steam reforming (SESR), prepared via a simple mechanical mixing protocol, was studied using a spout-fluidised bed reactor capable of continuous ...
  • Sikarwar, Vineet; Zhao, Ming; Clough, Peter T.; Yao, Joseph; Zhong, Xia; Memon, Mohammad Zaki; Shah, Nilay; Anthony, Edward J.; Fennell, Paul S. (Royal Society of Chemistry, 2016-06-02)
    Biomass gasification is a widely used thermochemical process for obtaining products with more value and potential applications than the raw material itself. Cutting-edge, innovative and economical gasification techniques ...
  • Erans, María; Jeremias, Michal; Zheng, Liya; Yao, Joseph G.; Blamey, John; Manovic, Vasilije; Fennell, Paul S.; Anthony, Edward J. (Elsevier, 2018-05-26)
    One of the main challenges for commercialising calcium looping (CaL) as a CO2 capture technology is maintaining a high level of sorbent reactivity during long-term cycling. In order to mitigate the decay in carrying capacity, ...
  • Ghaedi, Hosein; Kalhor, Payam; Zhao, Ming; Clough, Peter T.; Anthony, Edward J.; Fennell, Paul S. (Springer, 2021-11-22)
    Is it possible to improve CO2 solubility in potassium carbonate (K2CO3)-based transition temperature mixtures (TTMs)? To assess this possibility, a ternary transition-temperature mixture (TTTM) was prepared by using a ...
  • Sikarwar, Vineet Singh; Zhao, Ming; Fennell, Paul S.; Shah, Nilay; Anthony, Edward J. (Elsevier, 2017-04-06)
    Biofuels from biomass gasification are reviewed here, and demonstrated to be an attractive option. Recent progress in gasification techniques and key generation pathways for biofuels production, process design and integration ...
  • Blamey, John; Zhao, Ming; Manovic, Vasilije; Anthony, Edward J.; Dugwell, Denis R.; Fennell, Paul S. (Rlsevier, 2016-02-01)
    Calcium looping is a developing CO2 capture technology. It is based on the reversible carbonation of CaO sorbent, which becomes less reactive upon cycling. One method of increasing the reactivity of unreactive sorbent ...

Search CERES


Browse

My Account