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Its canvas sides have been rolled up to reveal the pipes and vats of some form of biological fermentation machine.
Finally, five industrial applications (ceramic membrane reactors, oily wastewater treatments, biological fermentation treatments, plant extracts, and brine refinements) are introduced.
Several mature routes for malic acid production have been developed, such as chemical synthesis, enzymatic conversion and biological fermentation.
Aerated mixing vessel is highly applied in such industrial processes as oxidation, hydrogenation, and biological fermentation where gas and liquid are contacted and mixed to reach steady condition.
Lignocellulosic biomass is the most abundant and renewable substrate for biological fermentation, but the inhibitors present in the lignocellulosic hydrolysates could severely inhibit the cell growth and productivity of industrial strains.
To compare the safety and effectiveness of a high molecular weight hyaluronan produced by biological fermentation (Bio-HA) with those of avian-derived hyaluronan that uses cross-linking to achieve high molecular weight (CL-HA).
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From the experimental evidence and the model predictions, it is concluded that acceleration of mass transfer in gas-producing systems offers challenging perpectives for both heterogeneous catalysis and biological fermentations.
The growing importance of biological production (fermentation) expressed with new routes and increasing production rates, leads to look for technologies of downstream processing for product separation.
To further explore the potential and utility of using combinatorial biocatalysis to create novel compounds with useful biological activity, fermentations were conducted under mildly acidic starting conditions (pH 6) to favor the production of indole based trimers (Figure 1).
The most obvious advantage of this process is that the hydrogen yield is far higher than the theoretical yield (4 H2/glucofe) of biological hydrogen fermentations [9], [15], [18].
Assembly of the high-substrate-selectivity enzymes results in an artificial cascade enzymatic pathway, accompanied by a high hydrogen yield (12 H2/glucose), three time higher than the theoretical yield (4 H2/glucose) from biological hydrogen fermentations [9], [15], [18] and much higher than those from chemical catalysis [8], [10], [11].
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