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To determine the effect of enzyme concentration on reducing sugars release, lower concentrations than 22.82 U were tested.
Effect of substrate concentration on reducing sugar production was investigated by using various lignocellulosic substrates such as corncob, sunflower stalks, wheat straw, rice straw, and bagasse and it was shown that the increase in substrate concentration favoured reducing sugar production [ 12, 15, 16].
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This strategy relies on the higher concentration of reducing molecules such as glutathione in the cytoplasm (1 10 mmol/L) (Wu et al., 2004) compared to the extracellular environment (about 5 µmol/L in blood) (Mills and Lang, 1996).
In order to obtain the maximum concentration of reducing sugars, experiments on enzymatic hydrolysis of henequen juice were conducted at 60°C in this study.
The yield of BC on the initial concentration of reducing sugar was 0.22 g/g for the SAFS hydrolysate, 0.17 g/g for the SIFS hydrolysate, and 0.18 g/g for the reference medium.
The concentration of reducing sugar was determined at 540 nm on a HITACHI UV2010/3010.
Within the same category of NP size, there is also a concentration-dependent effect on reducing the rate of mucin diffusivity.
This is the first study to report that PM0.3 1.0 measured in mass concentrations had effects on reducing HRV among cardiac, prehypertensive, and hypertensive patients.
Hence, the effect of concentration of the substrate on reducing sugar production was investigated by using different concentrations of substrate [1%, 3%, 5%, and 7% (w/v)] and the optimal unit of enzyme activity (FPase: 93.75 U/g, CMCase: 1669.65 U/g, β-glucosidase: 2605.65 U/g) based on the results obtained in the previous experiment.
The Response Surface design method was used to investigate the effect of soaking temperature, soaking duration, autoclave duration, acid concentration and solid loading on reducing sugar yield.
Then multiple-resistivity drift region is incorporated, with optimized thickness and doping concentration to reduce specific on-resistance while the breakdown voltage is not degraded.
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