โ๏ธ Supercritical CO2 Extraction (Chrastil SFE)
Compute dense supercritical CO2 density, botanical solute solubility using the Chrastil model, extraction rate (g/h), batch cycle time, and specific CO2 demand.
โก Fortran 90 Engine
Double Precision (IEEE 754)
โ ISO / ASME Validated
๐ Solver Telemetry
โ ACTIVE
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25
โก Solves
21
๐พ Downloads
355
๐ฆ Fortran Code
6.4 KB
๐
Released
Jun 2026
โฑ๏ธ Latency
< 1 ms
โ๏ธ High-Pressure Supercritical COโ Extractor Autoclave & Separator Flash
Real-time visual simulation of dense scCO2 percolating through botanical matrix into cyclonic collector๐ Configuration & Presets
โ Green Coffee Decaffeination
๐ฟ Herbal Extract / CBD
๐
Tomato Lycopene (380 bar)
๐บ Hops Bitter Acid SFE
Chrastil SFE Formulations:
โข Chrastil Solubility: S = ฯCO2k ยท exp( a/T + b ) [g solute / kg COโ]
โข Extraction Rate: แนext = แนCO2 ยท S [g/h]
โข Extraction Time: t = 0.90 Mโ / (แนCO2 ยท S) [hours]
โข Specific COโ Demand: mCO2 / mextract [kg/kg]
โข Chrastil Solubility: S = ฯCO2k ยท exp( a/T + b ) [g solute / kg COโ]
โข Extraction Rate: แนext = แนCO2 ยท S [g/h]
โข Extraction Time: t = 0.90 Mโ / (แนCO2 ยท S) [hours]
โข Specific COโ Demand: mCO2 / mextract [kg/kg]
๐ SFE Performance Results
๐ Output Summary
Chrastil Equilibrium Solute Solubility
S = 4.170 g / kg COโ
Extraction Rate: 83.4 g/hour | 90% Batch Time: 8.6 hours
ฯCO2 = 811 kg/mยณ
Batch Extraction Duration (90%)
8.63 hours
518 minutes
Specific COโ Solvent Demand
240 kg COโ
Per 1 kg pure extract
Supercritical COโ Density
810.7 kg/mยณ
Liquid-like density
Hourly Pure Extract Output
83.40 g/h
In solubility phase
๐ Solute Solubility S (g/kg COโ) vs Pressure P (bar)
๐ Extraction Yield (%) vs Time (hours)
================================================================= THERMOFLUIDCALC โ SUPERCRITICAL CO2 EXTRACTION REPORT ================================================================= Case Title : Botanical Herbal Extract / Cannabinoid (CBD) SFE Operating State : 320.0 bar / 45.0 ยฐC (Supercritical) Supercritical CO2 Density : 810.7 kg/m3 Botanical Solid Mass (M) : 10.00 kg (Target Solute M0 = 800.0 g) CO2 Solvent Mass Flow Rate : 20.00 kg/h ----------------------------------------------------------------- CHRASTIL SOLUBILITY (S) : 4.1701 g solute / kg CO2 Extraction Rate : 83.40 g/hour of pure extract Batch Extraction Time (90%): 8.63 hours (518 minutes) Specific CO2 Consumption : 239.8 kg CO2 per kg extract =================================================================
๐ Calculation Methodology & Chrastil SFE Standards
Chrastil Density-Based Model
Solute solubility in dense gas is directly related to the fluid density $\rho$ raised to the association number $k$ of solvent molecules forming a solvato-complex:
ln S = k ยท ln ฯ + (a / T) + b
Sovova Extraction Kinetics
Extraction proceeds in two phases: solubility-controlled constant extraction from broken surface cells, followed by internal diffusion from intact plant vacuoles.
Key Engineering Assumptions
- Critical point of carbon dioxide: $T_c = 31.1^\circ\text{C}$, $P_c = 73.8\,\text{bar}$.
- Equilibrium saturation of $CO_2$ exit stream in early batch phase.
- Total separation in depressurization cyclone flash vessel.