|
Volumn 673, Issue 2, 2010, Pages 200-205
|
Development of a fast capillary electrophoresis method to determine inorganic cations in biodiesel samples
|
Author keywords
Biodiesel; Capillary electrophoresis; Fractional factorial design; Inorganic cations
|
Indexed keywords
BACK GROUND ELECTROLYTE;
BUFFER CAPACITY;
CONCENTRATION RANGES;
EFFECTIVE LENGTH;
EFFECTIVE MOBILITY CURVES;
EXTRACTANTS;
FRACTIONAL FACTORIAL DESIGNS;
FRACTIONAL FACTORIAL EXPERIMENTAL DESIGN;
FUSED-SILICA CAPILLARIES;
INORGANIC CATIONS;
INTERNAL STANDARDS;
LIMIT OF DETECTION;
MIGRATION TIME;
OPTIMIZED CONDITIONS;
OPTIMUM CONDITIONS;
TOTAL LENGTH;
UV DETECTION;
BARIUM;
CALCIUM;
CAPILLARY ELECTROPHORESIS;
CURVE FITTING;
DESIGN;
ELECTROCHEMISTRY;
ELECTROLYTES;
FUSED SILICA;
OPTIMIZATION;
POSITIVE IONS;
SILICA;
BIODIESEL;
BARIUM ION;
BIODIESEL;
CALCIUM ION;
ELECTROLYTE;
MAGNESIUM ION;
POTASSIUM ION;
SODIUM ION;
BIOFUEL;
CALCIUM;
INORGANIC COMPOUND;
MAGNESIUM;
POTASSIUM;
SODIUM;
ACCURACY;
ARTICLE;
CAPILLARY ELECTROPHORESIS;
COMPUTER PROGRAM;
EXTRACTION;
FACTORIAL DESIGN;
PH;
PRIORITY JOURNAL;
SEPARATION TECHNIQUE;
ULTRAVIOLET SPECTROSCOPY;
CHEMISTRY;
PROCEDURES;
ULTRAVIOLET SPECTROPHOTOMETRY;
BIOFUELS;
CALCIUM;
ELECTROLYTES;
ELECTROPHORESIS, CAPILLARY;
INORGANIC CHEMICALS;
MAGNESIUM;
POTASSIUM;
SODIUM;
SPECTROPHOTOMETRY, ULTRAVIOLET;
|
EID: 77954216762
PISSN: 00032670
EISSN: 18734324
Source Type: Journal
DOI: 10.1016/j.aca.2010.05.031 Document Type: Article |
Times cited : (31)
|
References (26)
|