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Bioremediation is an ecologically acceptable technology that employs the use of microorganisms to efficiently degrade pollutants.
A compact bioreactor that uses genetically improved strains of microorganisms to efficiently degrade organic wastewater from food industries.
This enables the individual microorganisms to efficiently grow and establish a stable population in biofilm as the possibility of intra-species competition is greatly reduced.
Several reports have articulated the use of microorganisms to efficiently remove Hg from contaminated matrixes via biological reduction (von Canstein et al. 1999 and von Canstein et al. 2002), biosorption (Francois et al. 2012; Velasquez and Dussan 2009), bioaccumulation (Velasquez and Dussan 2009), and biosequestration (Francois et al. 2012).
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Thus, elucidation of the C. glutamicum regulatory system should establish a new model for bacterial control of carbon metabolism, providing a rational basis for metabolic engineering of this industrial important microorganism to efficiently direct carbon flow from available carbon resources into useful compounds.
Clostridium cellulovorans has been one of promising microorganisms to use biomass efficiently; however the basic metabolic pathways have not been completely known.
In addition, longer contact time of anaerobic organisms and leachate sample will reduce the ability of different microorganism to react efficiently with the leachate pollutants, since more oxygen depleted in the containers.
Many microorganisms use multifunctional enzymes to efficiently break down the recalcitrant polymeric networks that constitute plant cell walls.
Much focus has been placed on optimizing microorganisms and primarily microalgae, to efficiently produce compounds that can substitute for fossil fuels.
Although many microorganisms could be used to efficiently produce 2,3-BD, Paenibacillus polymyxa is the only native producer of optically pure (2 R -2,3-BD3-BD [ 11– 13].
If a reliable source of microorganisms that could degrade biodegradable plastics were found, we could aim to more efficiently recruit such microorganisms to obtain more reliable rates of biodegradable plastic degradation.
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