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Much research has been focused on reducing the production cost by strain development, developing more efficient fermentation and recovery processes and using inexpensive carbon sources.
A genome-scale metabolic (GSM) model is a powerful tool for understanding the metabolic capacities of an organism and developing metabolic engineering strategies for strain development.
The tools and ku70 mutant developed by the present study should facilitate M. thermophila strain development for industrial applications in the future.
High engineering efficiencies are required for industrial strain development.
Strain development has been the icon of the fermentation industries.
The highest amount of mineral admixture resulted in high shrinkage strain development.
The delayed recovered strain development was modeled using an existing Weibull-based model for creep recovery.
Finally, strain development with time is calculated using image processing technique.
Strain gauges were installed on the strengthening material to monitor the strain development.
Recent significant progresses in strain development and development of ABE fermentation processes are also reviewed.
The axial displacement, lateral deflection, strain development and failure modes of the tested specimens were recorded.
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