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The possible influence of fluid mixing on microbial processes was investigated.
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Microbial processes are involved in food, chemical, pharmaceutical, cosmetics, energy, and new-material industries.
Microbial processes are operated at different scales, such as bench, pilot, and plant scales.
Numerical results show that both geochemical and microbial processes are relevant for DO consumption.
The role of biochemical engineers in microbial processes is well defined.
Only a few microbial processes are used for commercial production of biofuels, but this will certainly change with the enhanced production capabilities being achieved through microbial metabolic engineering.
Methods to derive reaction rates of microbial processes are important since these processes are determining many chemical reactions influencing groundwater quality.
The conventional wastewater treatment technology based on highly optimized physical, chemical and microbial processes is cost effective where ecologically sustainable technology would be the best alternative.
Parameters for microbial processes were derived from calibration of the REX in situ experiment carried out at the Äspö underground laboratory.
The assessment of microbial processes is often done in Microbioreactor systems (MBRs), which allow for parallel cultivation in multiple independent wells.
The conversion of ricinoleic acid from renewable sources to long-chain α,ω-dicarboxylic acids or w-hydroxyl carboxylic acids by microbial processes is constrained by toxicity issues.
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