Supercritical fluids in separation and purification: A review

Сверхкритические флюиды в разделении и очистке: обзор
Sampatrao D. Manjare, Kabir Dhingra
2019-05-02

carbon dioxideco-solvents and modifiersnatural product extractionseparation and purificationsupercritical fluid extraction
The properties of the supercritical fluid near the critical point can be changed by varying the pressure and temperature, allowing selective and faster extraction. Supercritical fluids exhibit liquid-like density and gas – like viscosity & diffusion coefficients and can penetrate more into the solid matrix inaccessible to liquids due to negligible surface tension and viscosity. They are suitable as a substitute for organic solvents in a range of industrial and laboratory processes. These properties of supercritical fluids are well suited for the extraction of solutes, from various plants, fruits, flowers, seeds, leaves, which cannot be easily extracted using conventional extraction processes. In view of above mentioned advantages, supercritical fluid extraction is becoming increasingly popular in many industries such as petroleum, chemical, food, and perfumery. Supercritical fluids are also used for the extraction of metal ions from aqueous solutions and solid and liquid matrices. This review paper provides a concise review of the applications of supercritical fluids from the perspective of feed materials, type of supercritical fluids, co solvents and modifiers used, nature of work, operating conditions, findings, limitations of the work done and scope for further research. The application of supercritical fluids in extraction and purification of various natural extracts and others, using CO 2 accounts for more than 90% of the published research in the field of supercritical fluid technology. Other supercritical fluids being used are propane, hexane and butane. Carbon dioxide is a relatively non-polar solvent but has some limited affinity with polar molecules due to its large molecular quadrupole. Co-solvents and modifiers are often be added to improve the solubility of polar molecules. On addition of various co solvents and modifier such as isopropyl alcohol and ethanol, n -hexane, heptane, pentane, toluene, methanol, acetone, formic acid with ammonium formate in methanol etc enhances the performance of supercritical extraction process. Despite this, the status of supercritical fluid technology commercialization is less than satisfactory. A review studies revealed that most of the published research is at laboratory scale with little or no information on scale up and design strategies.
1
Carbon dioxide accounts for more than 90% of published supercritical-fluid technology research; its limited polarity is often enhanced with co-solvents or modifiers such as ethanol and isopropyl alcohol.
2
Liquid-like density combined with gas-like viscosity and diffusivity allows supercritical fluids to penetrate solid matrices more effectively than conventional liquid solvents.
3
Other reported supercritical fluids include propane, hexane, and butane, while the review identifies operating conditions, limitations, and future research needs across applications.
4
Supercritical fluids can substitute for organic solvents in industrial and laboratory extraction and purification, including natural products and metal-ion recovery from aqueous, solid, and liquid matrices.
5
Supercritical-fluid extraction is increasingly applied in petroleum, chemical, food, and perfumery industries because of its processing advantages.
6
Supercritical-fluid properties can be tuned through pressure and temperature, enabling selective and faster extraction.

Supercritical-fluid extraction and purification processes for plant, food, chemical, petroleum, perfumery, and metal-containing feed materials

The effects of supercritical-fluid type, pressure, temperature, co-solvents, and modifiers on selective extraction and purification performance, including solute solubility and recovery

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2019-05-02
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Sampatrao D. Manjare
Kabir Dhingra
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