Separate Butyric Acid from Glucose

Separation strategy for Butyric Acid (88 Da) from Glucose (180 Da) using Liquid-Liquid Extraction.

Recommended technique

Liquid-Liquid Extraction Best Match

Separation handle: Hydrophobic small molecule recovery.

Scope: Partition coefficient. CAPEX range: $200k-$1.5M.

Property comparison

PropertyButyric AcidGlucose
Molecular weight88.11 Da180.16 Da
Solubility (water)1000 g/L909 g/L
Charge-10
Isoelectric point
pKa4.8212.28
Density0.96 g/cm³1.54 g/cm³
Diffusion coefficient1.00e-05 cm²/s6.73e-06 cm²/s
Log P0.79-3.24

Process design walkthrough

1

Define your feed stream

Set Butyric Acid and Glucose as components with their concentrations and physical properties. Use the molecule database to auto-populate properties.

2

Drop in Liquid-Liquid Extraction

Connect the feed inlet, configure operating parameters (MWCO, pH, eluent, residence time as relevant), and connect the two outlets to product and waste streams.

3

Run the simulation

untangle.bio calculates outlet concentrations using mass balance and the separation function for this technique. Iterate on parameters to optimise yield vs purity.

4

Add polishing if needed

If the single step doesn't meet your purity spec, add a second separation with a complementary handle (e.g., size after charge, hydrophobicity after size).

Frequently Asked Questions

Why is Liquid-Liquid Extraction the right choice for this pair?

Liquid-Liquid Extraction exploits hydrophobic small molecule recovery as the separation handle. The property gap between Butyric Acid and Glucose on this axis is large enough to give a clean separation in a single step at industrially relevant flow rates.

What yield and purity can I expect?

Typical single-step recovery is 85-99% depending on operating conditions. Purity from a single liquid-liquid extraction step is in the 90-99% range; polishing steps push above 99.5%.

What does this step cost to operate?

Capital cost for Liquid-Liquid Extraction at biotech scale is in the $200k-$1.5M range. Operating cost depends on scale, feed concentration, and product value. See the technique page for details.

How do I design this in untangle.bio?

Drop a liquid-liquid extraction unit operation into the flowsheet, connect the feed stream containing both Butyric Acid and Glucose, and the simulator will calculate mass balance and expected outlet concentrations using the molecule database properties.

Design this separation in untangle.bio

Build a flowsheet, simulate yield and purity, and estimate CAPEX for separating Butyric Acid from Glucose.

Open untangle.bio

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