Related Experiment Video
Updated: Jul 2, 2026

Using the GELFREE 8100 Fractionation System for Molecular Weight-Based Fractionation with Liquid Phase Recovery
Published on: December 3, 2009
Comparison of a novel distillation method versus a traditional distillation method in a model gin system using
Derek Greer1, Les Pfahl, Jim Rieck
1Bacardi-Martini Product Development, 12200 North Main Street, Jacksonville, Florida 32218, USA. derek.greer@sensient-tech.com
Abstract:
This research studied a novel form of distillation (high vacuum distillation) as a method for preserving volatile aroma chemicals important to the organoleptic attributes of a four botanical model gin as well as the degradation products generated during the heating required in traditional methods of gin distillation. A 2 (5) factorial experiment was conducted in a partially confounded incomplete block design and analyzed using the PROC MIXED procedure from SAS. A model gin was made of dried juniper berries (Juniperus communis), coriander seed (Coriandrum sativum), angelica root (Angelica archangelica), and dry lemon peel (Citrus limonum). This was distilled on a traditional still utilizing atmospheric pressure and a heating mantel to initiate phase separation as well as a novel still (high vacuum) utilizing high vacuum pressures below 0.1 mmHg and temperatures below -15 degrees C to initiate phase separation. The degradation products (alpha-pinene, alpha-phellandrene, E-caryophyllene, and beta-myrcene) were present at greater levels (approximately 10 times) in the traditional still-made gin as compared to the novel gin.
More Related Videos
Related Concept Videos
Distillation: Vapor–Liquid Equilibria
Gas Chromatography: Introduction
In GC, a sample is vaporized and mixed with an inert carrier gas (the mobile phase), which transports it through a column.
In Vitro Drug Dissolution: Alternative Methods
High-Performance Liquid Chromatography: Elution Process
Gas Chromatography: Sample Injection Systems
Two primary injection methods are used...
In Vitro Drug Dissolution: Compendial Testing Models II

