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Experimental study of the factors affecting the oxidation stability of biodiesel FAME fuels
James Pullen,
Khizer Saeed
University of Brighton
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peer-review
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Dive into the research topics of 'Experimental study of the factors affecting the oxidation stability of biodiesel FAME fuels'. Together they form a unique fingerprint.
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Keyphrases
Biodiesel
100%
Oxidation Stability
100%
Fatty Acid Methyl Esters
100%
Oxidative Stability
63%
Antioxidant
36%
Storage Life
18%
Rancimat
18%
Polyunsaturated Fatty Acids
9%
Measurement Accuracy
9%
Prediction Accuracy
9%
Control Accuracy
9%
Oxidative Degradation
9%
Engine Performance
9%
Fatty Acid Composition
9%
Feedstock Type
9%
Fatty Acid Alkyl Esters
9%
Olive
9%
Rapeseed
9%
Arrhenius Temperature
9%
Temperature Curve
9%
Stability Index
9%
Jatropha
9%
Measure Controls
9%
Stability Model
9%
Soya Bean
9%
Biodiesel Stability
9%
Oxidative Instability
9%
Hydroquinone
9%
Butyl
9%
Measurement Prediction
9%
Real Conditions
9%
Biodiesel Quality
9%
Sesame
9%
Chemical Engineering
Fatty Acids
100%
Polyunsaturated Fatty Acid
16%