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The maximum conversion ratio of double bonds is about 70%.
The optimum values for maximum conversion ratio of oleic acid could be obtained by using a Box Behnken center-united design with a minimum of experimental work.
The optimum condition for the production of [11C]CH3I was determined to be 630°C for oven-1 (reaction column), 50°C for oven-2 (iodine column) and 50 ml/min for the He gas flow rate, and gave the maximum conversion ratio of [11C]CH3I, 44%.
The optimum values for maximum conversion ratio obtained by a Box-Behnken center-united design reached 77.02 ± 0.62% when the reaction was carried out at 112 °C for 10 h with a molar ratio of alcohol to oleic acid of 8.8 1 and a content of 14.5 wt.% triethylenetetramine bis methylene phosphonic acid)- functionalized silica catalyst SG T P.
It was found that under slightly fuel-rich conditions (φ⩽1.3) NOx mostly converts to N2 with a maximum conversion ratio of 65%, while for higher equivalence ratios (φ>1.3) a large proportion of NOx converts to NH3. Results from experiments and numerical modeling showed that the temperature profile along the burner has significant effects on the NOx and TFN conversion ratios.
The optimum values for maximum conversion ratio can be obtained by using a Box Behnken center-united design, and the conversion ratio could reach 89.94 ± 0.42% under the conditions that ethanol/acid molar ratio was 1.05:1 and SG-T-P-LS to FFA weight ratio was 14.9 wt.% at 28.6 °C.
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The effects of the thermal and electrical contact resistances and the heat supplied to the cold heat reservoir on the maximum energy conversion ratio, the optimum thermoelement length and the optimum external load resistance are shown.
Measured results show that the power management circuit is able to maintain a proper working condition with an input antenna voltage range of 5.82 12.3 V; the maximum voltage conversion ratio of the rectifier reaches 65.92% when the tag antenna voltage is 9.42 V.
The percentage biodiesel conversion was found to increase greatly with increase in t-butanol:oil volume ratio with a maximum conversion at a t-butanol:oil volume ratio of 0.8.
Nevertheless, the lignin/hemicellulose (L/H) ratio showed a strong correlation with conversion yield (R = 0.90), with maximum conversion values achieved when the L/H ratio was in the range from 3too 4 [ 47].
Based on the RSM analysis, the optimal reaction conditions were determined as follows: reaction time 34.32 h, temperature 54.6 °C, enzyme amount 12.5%, substrate molar ratio 10.22 1 and the maximum conversion of fatty acid ascorbyl esters was 69.18%.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com