The obtained organic extract (3.8 L/min) enters to a second extraction phase where is mixed with an aqueous solvent (7.2 L/min). The equilibrium is given by CE = 17 C₂². Calculate: c) The concentration of the metabolite in the wasted and extract of the 2nd phase of extraction. (15 points each) Metabolite in wasted = g/L Metabolite in extract= .8/L d) The global (overall) fraction of extracted metabolite. (20 points) p=

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The obtained organic extract (3.8 L/min) enters to a second extraction phase where is mixed with an aqueous solvent
(7.2 L/min). The equilibrium is given by CE = 17 Ca?. Calculate:
e) The concentration of the metabolite in the wasted and extract of the 2nd phase of extraction. (15 points sach)
Metabolite in wasted =.
1/3
Metabolite in extract =,
g/L
d) The global (overall) fraction of extracted metabolite. (20 poins)
Transcribed Image Text:The obtained organic extract (3.8 L/min) enters to a second extraction phase where is mixed with an aqueous solvent (7.2 L/min). The equilibrium is given by CE = 17 Ca?. Calculate: e) The concentration of the metabolite in the wasted and extract of the 2nd phase of extraction. (15 points sach) Metabolite in wasted =. 1/3 Metabolite in extract =, g/L d) The global (overall) fraction of extracted metabolite. (20 poins)
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