This document summarizes different techniques for extracting bioactive components from plants, including conventional methods like Soxhlet extraction and maceration as well as modern green techniques. Some key modern techniques discussed are microwave assisted extraction, ultrasound assisted extraction, supercritical fluid extraction using carbon dioxide, and deep eutectic solvent extraction. These green techniques have advantages over conventional methods like faster extraction rates, more effective energy use, reduced equipment needs, and preservation of bioactive compounds. The document provides details on how each technique works and its advantages.
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Active Ingredients Extraction Methods
1. Active Ingredients – Bioactive
Component Extraction Process
An Academic presentation by
Dr. Nancy Agnes, Head, Technical Operations, FoodResearchLab
Group: www.foodresearchlab.com
Email: info@foodresearchlab.com
2. Introduction
Conventional Method of Extraction
Biocomponent Extraction with Modern
Techniques
Components of Green techniques
TODAY'S DISCUSSION
3. INTRODUCTION
Bioactive components are compounds
extracted from plants that have
pharmacological effects on human health.
In a way the extracts are nothing but
nutraceuticals or elements from a natural
plant source which is extracted with the
purpose of making a cure for an existing
disease or as a preventive measure.
For example, grape used for wine making
has by products like pomace, stems and
leaves.
Contd...
4. The grape pomace has polyphenols and other small phenolic
compounds exhibiting high health beneficial properties, such as
cardio-protective, neuro-protective, anti-inflammatory, anti-
carcinogenic, and antimicrobial activities.
Other examples of fruit by products are apple pomace, citrus peels,
seeds and pulp and waste from carrot, potato and tomato.
Contd...
5. They are extracted by both conventional and modern techniques.
The examples of bioactive compounds are carotenoids, flavonoids,
carnitine, choline, coenzyme Q, dithiolthiones, phytosterols,
phytoestrogens, glucosinolates, polyphenols, and taurine.
6. As the name suggests, using the Soxhlet apparatus
that uses a solvent that passes through a small
amount of the sample.
This process is both time taking and consumes a lot
of solvent.
The main conventional extraction techniques in relation
to bioactive compounds are
SOXHLET
CONVENTIONAL METHOD
OF EXTRACTION
Contd...
7.
8. A small amount of sample is ground to a fine powder
and mixed with the solvent and continuously stirred.
The extract is made more efficient by diffusion and
the fact that the surface of the sample is increased
with maceration or grinding, thus making it easier to
mix with the solvent.
MACERATION
Contd...
9. Contd...
Hydrodistillation undergoes three physicochemical
processes namely hydrodiffusion, hydrolysis, and
decomposition by heat.
This process takes 6 to 8 hrs to complete and does
not involve the use of organic solvents.
Distilled water is used to perform the process and
is used to extract the volatile fraction in foods.
Use of high temperature during extraction can
often lead to degradation of these compounds.
HYDRODISTILLATION
10. Contd...
This is one of the limitations of this technique.
Hydrodistillation is a very complete process.
Both volatile organic compounds and non-volatile
organic compounds can be extracted and
physically separated in one step.
Azeotropic distillation is used to separate the
volatile organic compounds from the matrix.
They are then condensed, collected, and
separated in a Florentine flask.
11.
12. The soluble non-volatile organic compounds are
extracted in the boiling water.
There is of course high levels of energy
consumption and is time consuming.
There is always a risk involved about the toxicity of
the solvents used to extract the bioactive compounds
and the chances of presence of the same in the
extracts along with low yield when the conventional
methods are used.
Contd...
13. In such a case, the modern method comes handy.
It works towards preserving nature.
However, there are some challenges in the development and
formulation of functional foods with its active ingredients.
14. BIOCOMPONENT EXTRACTION
WITH MODERN TECHNIQUES
Modern techniques or green techniques
are also known as cold extraction
techniques.
It promotes the idea of reducing the
waiting time and use of resources in order
to get the desired results with maximum
efficiency.
15. Faster extraction rate
More effective energy use
Increased mass and heat transfer
Reduced equipment size and reduction in the
number of processing steps.
The benefits of the green technologies over the
conventional methods are as follows:
16. COMPONENTS OF GREEN
TECHNIQUES
MAE is based on the principle of dielectric heating.
that is the process in which a microwave
electromagnetic radiation heats a dielectric material
by molecular dipole rotation of the polar components
present in the matrix.
MICROWAVE ASSISTED EXTRACTION (MAE)
Contd...
17. Contd...
Ultrasound with the frequency of 20kHz to
100MHz is passed through the sample
resulting in compression and expansion cycles
creating a cavities.
These cavities collide with each other resulting
in inter-particle collision, inter-particle diffusion
and enhanced diffusion of the extractable
compounds into the solvent.
ULTRASOUND ASSISTED EXTRACTION (UAE)
18. This process uses supercritical CO2.
It allows selective extraction of phenolic
compounds that are soluble in supercritical CO2.
In comparison to the conventional techniques there
are the advantages of easy recovery, selectivity,
compounds stability, time, and an overall total
energy saving.
SUPERCRITICAL FLUID EXTRACTION (SFE)
Contd...
19. Contd...
The physico-chemical parameters of sCO2.
are temperature, pressure, and amount of co-
solvent and the biomass nature and processing
before extraction (lyophilization, micronization,
etc.) deeply affect the final extraction yields and
composition
The phenolic compounds from agri-food wastes
are extracted using DES.
DES preparation is done by mixing, at a suitable
temperature, a hydrogen bond acceptor (HBA)
and a hydrogen bond donor (HBD).
DEEP EUTECTIC SOLVENT (DES) EXTRACTION
20. Compared to common organic solvents, DES offer many advantages
such as low price, easy preparation, and easy availability.
Moreover, most of them are biodegradable with very low toxicity.
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