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Nevertheless, measuring oxidation rates obtained on standard size samples provides a basis for a meaningful comparison among materials, which may serve as much needed information for predictive models.
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Measured oxidation rates span 10−7 10−5 mol cm−2 s−1.
This effect along with the hydrophobicity of the fluorinated electrode resulted in significantly lower ClO4− formation (96% decrease) while slightly enhancing measured oxidation rates of hydrophobic organic compounds.
For the first time, the previously measured oxidation rates of methyl octanoate under the cool flame regime (560 1000 K) are computationally verified by kinetic modeling that reflects the contribution of the present submodel to an existing detailed mechanism of methyl octanoate.
The use of a respirometer is introduced as a novel technique for measuring the oxidation rates of thermally degrading polymers.
Extrapolating laboratory measured CH4 oxidation rates to the field showed that the biocover system had a much larger CH4 oxidation potential in comparison to the tested CH4 load.
A dual channel respirometer with fuel cell detectors demonstrates sufficient sensitivity to measure the oxidation rates of low-density polymeric samples at ambient temperatures in a relatively short period of time.
Mitochondria were isolated and used to measure substrate oxidation rates at state 3 by polarography as previously described (Fernández-Ayala et al. 2009), using a substrate mix of 20 mM sn-glycerol 3-phosphate, 5 mM sodium pyruvate, and 5 mM proline.
By independently measuring the oxidation rate of zinc (electrical current) and the rate of Zn2+ dissolution (partial elemental current) it is possible to calculate the amount of insoluble zinc cations produced at any instant.
Catalytic activity of peroxidase was determined by measuring the oxidation rate of ABTS at 25 °C in a 1 ml reaction mixture containing 60 mM phosphate buffer pH 5.0, 0.1 mM, ABTS and 1 mM H2O2.
The activity of laccase immobilized on perlite was estimated by measuring the oxidation rate of 2,2′-azino-bis (3-ethylbenzothiazoline-6-sulphonic acid) (ABTS) in a recirculating fixed bed reactor previously designed for the assessment of activity of enzymes immobilized on granular solids [ 13].
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