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Breakthrough experiments were designed to compare the dynamic binding capacity of pDNA in the conventional arginine-agarose matrix with the modified monolithic support.
Several breakthrough experiments were designed to study the effect of different parameters such as pDNA topology and concentration as well as flow rate on the monolithic support binding capacity.
Moreover, breakthrough experiments were designed to study the effect of different RNA concentrations on the modified monolithic support binding capacity, being verified that the dynamic binding capacity for RNA molecules is dependent of the feed concentration.
Similar(57)
These experiments were designed to obtain the long-term breakthrough curves (BTCs) in order to unambiguously determine the full deposition kinetics and the fraction of the solid surface area (Sf) that was available for NP deposition.
The experiments were designed by G.B.Z.
Two types of experiments were designed.
To investigate this two experiments were designed.
Our experiment was designed to investigate this effect.
The breakthrough experiments were performed by increasing the gas pressure step by step until breakthrough occurred.
To validate the cryogenic adsorption process, breakthrough experiments were performed using the CMSB mock-up.
Multicomponent breakthrough experiments were conducted using a lab-scale fix-bed packed with the adsorbent sample.
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