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The prepared AC under the optimised condition had a BET surface area (SBET) of 1253.5 m2/g with a total pore volume (Vtot) of 0.83 cm3/g, which 56% of it was contributed to the micropore volume (Vmic).
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Under the optimised conditions, a yield of 14.25 mg/g (based on cream weight) and signal-to-noise (S/N) ratio of 23.07 dB were obtained.
Under the optimised conditions, the recoveries obtained for each pesticide ranged from 72.5% to 109.1% with relative standard deviations lower than 12.6%.
The FRAP assay adapted to the FIA system under the optimised conditions was utilised to determine the antioxidant activity of tea samples.
Under the optimised conditions, the experimental values were in close agreement with the prediction model and resulted in a three times yield enhancement of stevioside.
Under the optimised conditions, the purity of the phenolics extract (32%) could allow it to enter the market as a dietary supplement of chlorogenic acid, a product with high trade value.
The predicted maximum response value (ethanol yield) was 69.49% under the optimised conditions for SSF: temperature of 37.5 °C, enzyme loading of 30 FPU/g substrate, yeast concentration of 10 g/L and pH of 4.6.
Under the optimised conditions, 25 mM of 2,4-D could be selectively dechlorinated to phenoxyacetic acid with 85% yield and 66% CE at 298 K after 6 h electrolysis.
Under the optimised conditions, good yields of the N-acyloxyethylamino acid amide products are obtained both via a three- or four-component approach from N-alkylethanolamines, aldehydes/ketones, isocyanides and carboxylic acids.
Under the optimised conditions, the assay yielded a 367-bp DNA fragment from histidine decarboxylases of Gram-positive bacteria, 534-bp fragment from histidine decarboxylases of Gram-negative bacteria, 924-bp from bacterial tyrosine decarboxylases, and 1446-bp fromment from bacterial ornithine decarboxylases.
Under the optimised conditions and according to the results from differential pulse voltammetry (DPV), the BPA oxidation current is linear in a concentration range of 0.1 to 10 μM (R = 0.998), and the detection limit was determined to be 0.02 μM (S/N = 3).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com