💧 Counter-Current Extraction (Kremser)
Calculate theoretical equilibrium stages (N), Extraction Factor (E), Number of Transfer Units (NTU), and packed column height (Z) for liquid-liquid extraction.
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Double Precision (IEEE 754)
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💧 Counter-Current Liquid-Liquid Extraction Column Simulation
Real-time visual simulation of heavy aqueous feed descending & light solvent droplets rising counter-currently📝 Configuration & Presets
🧪 Acetic Acid / Ethyl Acetate
💊 Penicillin / Amyl Acetate
🛢️ Phenol Removal with MIBK
🥛 Lactic Acid Broth
Kremser Extraction Formulations:
• Extraction Factor: E = (m · S) / F
• Theoretical Stages: N = ln[ ( (xF − yS/m) / (xN − yS/m) ) (1 − 1/E) + 1/E ] / ln E
• NTUOL = [ E / (E − 1) ] · ln[ (1 − 1/E) ( (xF − yS/m) / (xN − yS/m) ) + 1/E ]
• Packed Column Height: Z = NTUOL × HTUOL
• Extraction Factor: E = (m · S) / F
• Theoretical Stages: N = ln[ ( (xF − yS/m) / (xN − yS/m) ) (1 − 1/E) + 1/E ] / ln E
• NTUOL = [ E / (E − 1) ] · ln[ (1 − 1/E) ( (xF − yS/m) / (xN − yS/m) ) + 1/E ]
• Packed Column Height: Z = NTUOL × HTUOL
📊 Extraction Sizing Results
📊 Output Summary
Theoretical Equilibrium Stages (N)
N = 4.24 stages (≈ 5 stages)
Packed Height: Z = 4.05 meters (NTU = 5.41)
E = 1.66
Extraction Factor (E = m·S/F)
1.657
Favorable Extraction
Mass Solute Extracted
76.00 kg/h
95.0 % Recovery
Final Raffinate Concentration (xN)
0.400 %
Feed: 8.00 %
Rich Extract Concentration (y₁)
8.941 %
Solvent Product
📈 Required Stages (N) vs Solvent-to-Feed Ratio (S/F)
📉 Packed Height Z (m) vs Solute Recovery Yield (%)
================================================================= THERMOFLUIDCALC — COUNTER-CURRENT EXTRACTION REPORT ================================================================= Case Title : Acetic Acid Aqueous Extraction with Ethyl Acetate Feed / Solvent Flow Rate : 1000.0 kg/h / 850.0 kg/h (S/F = 0.85) Feed Solute Concentration : 8.00 wt% (Inlet Solvent = 0.00 %) Partition Coefficient (KD) : 1.95 (y/x) EXTRACTION FACTOR (E) : 1.657 ----------------------------------------------------------------- THEORETICAL STAGES (N) : 4.24 stages (Kremser) Number of Transfer Units : 5.41 NTU_OL PACKED COLUMN HEIGHT (Z) : 4.05 meters (HTU = 0.75 m) Target Recovery Yield : 95.00 % Raffinate Solute (xN) : 0.4000 wt% Extract Solute (y1) : 8.9412 wt% Mass Solute Extracted : 76.00 kg/h =================================================================
📘 Calculation Methodology & Extraction Standards
Kremser Analytical Sizing
For dilute immiscible liquid-liquid systems with linear distribution equilibrium $y^* = K_D x$, the Kremser equation solves the exact number of theoretical equilibrium stages:
N = ln[ (xF / xN)(1 − 1/E) + 1/E ] / ln E
Extraction Factor Criterion
When $E = \frac{K_D S}{F} > 1.3$, sharp extraction is achieved with very few stages. Operating below $E = 1$ requires excessive stages or column height.
Key Engineering Assumptions
- Constant liquid phase flow rates (immiscible carrier and solvent).
- Linear distribution partition equilibrium $K_D$.
- Height of a Transfer Unit $HTU_{OL}$ based on packing hydraulics.