Janet M. Hughes, Ph.D.

Affiliations: 
2001 George Mason University, Washington, DC 
Area:
Analytical Chemistry
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"Janet Hughes"
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Dennis R. Hardy grad student 2001 George Mason
 (The relationship between naturally occurring basic extractable species found in middle distillate fuel and its lubricity.)
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Publications

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Mushrush GW, Hughes JM, Willauer HD. (2013) Blends of soybean biodiesel with petroleum diesel: Advantages Industrial and Engineering Chemistry Research. 52: 1764-1768
Mushrush GW, Wynne JH, Lloyd CT, et al. (2007) Instability reactions and recycled soybean-derived biodiesel fuel liquids Energy Sources, Part a: Recovery, Utilization and Environmental Effects. 29: 491-497
Morris RE, Evans T, Hughes JM, et al. (2006) Examination of Liquid-Phase Oxidation of Jet Fuel at Operational Temperatures Petroleum Science and Technology. 24: 1097-1113
Mushrush GW, Wynne JH, Lloyd CT, et al. (2005) Recycled soybean derived cooking oils as blending stocks for middle distillate transportation fuels Energy Sources. 27: 781-786
Mushrush GW, Wynne JH, Willauer HD, et al. (2004) Recycled soybean cooking oils as blending stocks for diesel fuels Industrial and Engineering Chemistry Research. 43: 4944-4946
Morris RE, Hughes JM, Colbert JE. (2004) The impact of copper on the liquid-phase oxidation of jet fuel for advanced aircraft Energy and Fuels. 18: 490-496
Wynne JH, Hughes JM, Lloyd CT, et al. (2003) Oxidative instability of fuels: Nickel catalyzed reactions Petroleum Science and Technology. 21: 1327-1334
Mushrush GW, Wynne JH, Hughes JM, et al. (2003) Soybean-derived fuel liquids from different sources as blending stocks for middle distillate ground transportation fuels Industrial and Engineering Chemistry Research. 42: 2387-2389
Wynne JH, Hughes JM, Lloyd CT, et al. (2003) Nickel-catalyzed reactions of indoles and fuel-instability reactions Industrial and Engineering Chemistry Research. 42: 945-948
Hughes JM, Mushrush GW, Hardy DR. (2003) The relationship between the base extractable species found in middle distillate fuel and lubricity Energy and Fuels. 17: 444-449
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