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The results showed that the use of a larger particle size caused the productivity to be limited by the constraint on X2 product concentration, and a maximum productivity was attained by choosing the particle size such that the effect of the X2-concentration limiting factor could be balanced with that of pressure-drop limiting factor.
The maximum productivity was found as 0.31 mol H2/(m3 h).
Finally, the multiple response optimization of tool life and volume of material removed for achieving maximum productivity was carried out using the desirability function approach.
The Y E/ S was approximately the same as in suspended culture without pH control but the maximum productivity was reduced 3.6-fold.
Reports of its total synthesis were available from 1980, [18, 19] and the maximum productivity was reached around 2000 [20, 21, 22, 23].
Still, the maximum productivity was found as 0.47 mol H2/(m3·h), significantly higher than our result with the smaller reactor volume.
Similar(49)
The results show that the maximum productivity is obtained when C/H is twice.
The average loss in maximum productivity is 0.5% loss with each absent species, but it remains unclear, if the initial response is linear.
Finally, scale-up to large-scale continuous operation was considered, and the optimal hydraulic retention time (HRT) and feeding strategy for maximum productivity were estimated.
In forests the loss in maximum productivity is about 10% for each added species, and this is less than the potential gain of average productivity in a random mixture.
It is shown that, when supersaturation is generated by a chemical reaction such as double decomposition, and the mass transfer step for growth offers a significant resistance, maximum productivity is achieved at non-stoichiometric reactant concentrations.
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