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Results 1-10 of 17 (Search time: 0.003 seconds).
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PreviewIssue DateTitleAuthor(s)
2010An assessment of large scale microalgal harvesting methods for the production of biodieselLee, K.; Lewis, D.; Ashman, P.; CHEMECA (38th : 2010 : Adelaide, Australia)
2010Microalgal lipids as a source of biodieselPahl, S.; Lewis, D.; Ashman, P.; CHEMECA (38th : 2010 : Adelaide, Australia)
2003Experimental technique used to determine the nutritional content of microalgaePahl, S.; Schwarz, M.; Chen, F.; Lewis, D.; Nguyen, Q.; Ashman, P.; Quast, K.; Swain, N.; Australasian Chemical Engineering Conference (31st : 2003 : Adelaide, Australia)
2014Hydrothermal liquefaction of microalgae for biocrude production: improving the biocrude properties with vacuum distillationEboibi, B.; Lewis, D.; Ashman, P.; Chinnasamy, S.
2015Integrating anaerobic digestion and hydrothermal liquefaction for renewable energy production: an experimental investigationEboibi, B.; Lewis, D.; Ashman, P.; Chinnasamy, S.
2015Influence of process conditions on pretreatment of microalgae for protein extraction and production of biocrude during hydrothermal liquefaction of pretreated Tetraselmis sp.Eboibi, B.; Lewis, D.; Ashman, P.; Chinnasamy, S.
2016Technical issues in the large-scale hydrothermal liquefaction of microalgal biomass to biocrudeLee, A.; Lewis, D.; Kalaitzidis, T.; Ashman, P.
2015Release of Cl, S, P, K, and Na during thermal conversion of algal biomassLane, D.; Van Eyk, P.; Ashman, P.; Kwong, C.; De Nys, R.; Roberts, D.; Cole, A.; Lewis, D.
2013Force and energy requirement for microalgal cell disruption: an atomic force microscope evaluationLee, A.; Lewis, D.; Ashman, P.
2013Harvesting of marine microalgae by electroflocculation: the energetics, plant design, and economicsLee, A.; Lewis, D.; Ashman, P.