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All Outputs (5)

CO2 integration in high temperature steam gasification (HTSG) of solid fuels and blends with waste (2016)
Conference Proceeding
Skoulou, V., Kantarelis, E., & Yang, W. (2017). CO2 integration in high temperature steam gasification (HTSG) of solid fuels and blends with waste. In European Biomass Conference and Exhibition Proceedings (970-977). https://doi.org/10.5071/24thEUBCE2016-2CV.3.97

Aim of the present work is to investigate the viability of modifying the high temperature steam gasification process by adding CO2 in an attempt to tailor value added gas suitable for the energy - chemicals production industry. Such an integrated pro... Read More about CO2 integration in high temperature steam gasification (HTSG) of solid fuels and blends with waste.

Spectrum occupancy measurements and lessons learned in the context of cognitive radio (2016)
Conference Proceeding
Mehdawi, M., Riley, N. G., Ammar, M., Fanan, A., & Zolfaghari, M. (2016). Spectrum occupancy measurements and lessons learned in the context of cognitive radio. . https://doi.org/10.1109/TELFOR.2015.7377446

Various measurement campaigns have shown that numerous spectrum bands are vacant even though licenses have been issued by the regulatory agencies. Dynamic spectrum access (DSA) based on Cognitive Radio (CR) has been regarded as a prospective solution... Read More about Spectrum occupancy measurements and lessons learned in the context of cognitive radio.

Microfluidic culture of head and neck tumour maintains viability, as shown by single cell analysis, providing potential for novel applications and personalised medicine (2016)
Conference Proceeding
Bower, R., Green, V., Kuvshinov, D., Crank, S., Stafford, N., & Greenman, J. (2016). Microfluidic culture of head and neck tumour maintains viability, as shown by single cell analysis, providing potential for novel applications and personalised medicine.

The current paper details a succinct characterisation of an in-house designed microfluidic culture device. The maintenance of tissue viability was determined by studying single cells, following dissociation, of head and neck tumour pre and post cultu... Read More about Microfluidic culture of head and neck tumour maintains viability, as shown by single cell analysis, providing potential for novel applications and personalised medicine.