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Optimization of biomass and lipid in microalgae has been studied in batch, closed and open outdoor systems (Zou and Richmond [2000]; Sandnes et al. [2005]; Grobbelaar [2007]).
A major challenge in the development of microalgal strains for large-scale production is the optimization of biomass accumulation and production of fuel-relevant molecules such as triacylglycerol.
This technology could also assist in the discovery of new feedstocks for biofuel production, which has been already successfully applied to microalgae in the selection of strains and/or optimization of biomass growth [112],[112].
Our research provided a thermodynamic tool for improvement of design and operation optimization of biomass gasification system in SKLMF, which may be also applicable to other biomass gasification system.
However, most of the recent investigations into the design and optimization of biomass supply chains have focused on an economic point of view, sidelining other dimensions of sustainability, which represents a serious drawback for this kind of work.
Correlations obtained are deemed very important for optimization of biomass bale combustion, as well as for modeling transport phenomena occurring in the porous bed formed by biomass bales during their combustion in cigar burners.
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These analyses can be used for both the diagnosis and optimization of a biomass boiler as well as for the design of a new biomass boiler.
This study presents the optimization of algal biomass catalytic gasification for hydrogen-rich gas production.
The optimization of algae biomass productivity in industrial cultivation systems requires genetic improvement of wild type strains isolated from nature.
The pattern of substrate catabolism forms a substrate assimilation fingerprint which is useful in selecting media components for media optimization of maximum biomass production.
A combination of process models and reaction kinetics provides advanced computational tools for the design and optimization of various biomass conversion processes.
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enhancement of biomass
optimization of life
optimization of capacity
improvement of biomass
maximization of biomass
optimization of forest
optimization of production
improvements of biomass
optimization of green
maximizing of biomass
optimization of process
optimization of power
optimization of rate
optimization of immunoreaction
optimization of chemistry
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