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The ethanol yields of these strains were approximately 81, 75, and 82 % (mol ethanol/mol GlcNAc consumed), respectively.
Ethanol and glycerol were the major metabolites produced with a yield from 0.140 to 0.366 g and 0.007 to 0.031 g/g substrate consumed, respectively (Table 1).
For amino acid consumption profiles throughout the growth of S. thermophilus T1C2, the most abundantly consumed amino acids were Gln and Arg, which accounted for 19 and 20% of total amino acids consumed, respectively.
However, in 2012, 7.3 and 6.5 million m3 wooden panels were produced and consumed, respectively, which represents an increase of 12.3% in production and 10.8% in consumption compared to 2011 [2].
However, the use of the additives glycerol and calcium chloride (with an initial culture pH of 5.5), resulted in the formation of loose mycelial filaments with a biomass yield of 0.280 and 0.323 g/g glucose consumed, respectively.
After 16 19 days at 25 °C, about 15, 10, and 50% of xylan, cellulose, and lignin is consumed, respectively, when compared to PII-end (Jurak et al. 2015).
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In the experiments performed in HC-MRT and MC-MRT, AARA consumes, respectively only 54.2 and 46.6% of the total energy consumed by default settings.
Moreover, IFA and 1 bit ADC current consumption consumes, respectively, 0.6 mA and 0.3 mA, which is about 24 and 12%%.
Of the control and experimental subjects, 14 and none consumed analgesics, respectively.
L. bulgaricus was introduced as the most efficient strain with the highest biomass and lactic acid yield of 0.119 and 0.602 g g−1 consumed lactose, respectively.
Figures 11 and 12 demonstrate the analytical graphical charts of the average records of UIQI, SSIM, and FSIM metrics and the consumed time, respectively.
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