Sentence examples for final productivity from inspiring English sources

Exact(10)

Recently, efflux pumps were utilized to alleviate product toxicity and increase final productivity because of their capability to pump out target products from cells [ 21, 25].

However, industrial fermentation of organic acids is often subject to end-product inhibition, which significantly retards cell growth and limits metabolic activities and final productivity.

A final productivity of 154 U/g substrate was achieved, which represents an approximately 3.7-fold increase in enzyme yield when compared with the starting point conditions.

The titer was further increased by deleting DPP1 encoding a second FPP consuming pyrophosphate phosphatase yielding a final productivity and titer, respectively, of 0.21 mg/gDCW h and 92 mg/l of α-santalene.

The flow rate of the multiple fractured well Q is ({raise0.7exhbox{${text{nq}}$} !mathord{left/ {vphantom {{text{nq}} 2}}right.kern-0pt} !lower0.7exhbox{$2$}}), so, the final productivity equation is developed as varPhi_{text{e}} - varPhi_{text{w}} = frac{Q}{2pi }ln left( {frac{{4^{frac{1}{n}} R}}{a}} right).

It is worthy noting that the selectiveness exhibited by ovipositing gravid mosquitoes [50] [52] may to some extent determine the final productivity of aquatic habitats within these habitat types.

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Similar(50)

But there's a problem: labor productivity figures, which are calculated by the Labor Department, count only worker hours in America, even though American-owned factories and labs have been steadily transplanted overseas, and foreign workers have contributed significantly to the final products counted in productivity measures.

The main hindrances have been low productivity, low final product concentration, slow growth, high end-product inhibition, and costly downstream separation from sub-products (Blanc and Goma 1987; Goswami and Srivastava 2001).

The main hindrances have been low productivity, low final product concentration, slow growth, high end-product inhibition, and costly downstream separation from sub products [ 8, 9].

Working with a high-solid loading of a target substrate is an advantage for bioethanol production because it could increase final product concentrations and plant productivity while lowering energy and water input.

After comparing PGAP with the available promoters of P. pastoris, the bioreactor operation parameters and bioreactor operation strategies are analyzed for r-protein production under PGAP by focusing on response of the cells, final product concentration, yield, and productivity.

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