Javascript must be enabled to continue!
Methodologies for the Extraction of Phenolic Compounds from Environmental Samples: New Approaches
View through CrossRef
Phenolic derivatives are among the most important contaminants present in the environment. These compounds are used in several industrial processes to manufacture chemicals such as pesticides, explosives, drugs and dyes. They also are used in the bleaching process of paper manufacturing. Apart from these sources, phenolic compounds have substantial applications in agriculture as herbicides, insecticides and fungicides. However, phenolic compounds are not only generated by human activity, but they are also formed naturally, e.g., during the decomposition of leaves or wood. As a result of these applications, they are found in soils and sediments and this often leads to wastewater and ground water contamination. Owing to their high toxicity and persistence in the environment, both, the US Environmental Protection Agency (EPA) and the European Union have included some of them in their lists of priority pollutants. Current standard methods of phenolic compounds analysis in water samples are based on liquid–liquid extraction (LLE) while Soxhlet extraction is the most used technique for isolating phenols from solid matrices. However, these techniques require extensive cleanup procedures that are time-intensive and involve expensive and hazardous organic solvents, which are undesirable for health and disposal reasons. In the last years, the use of news methodologies such as solid-phase extraction (SPE) and solid-phase microextraction (SPME) have increased for the extraction of phenolic compounds from liquid samples. In the case of solid samples, microwave assisted extraction (MAE) is demonstrated to be an efficient technique for the extraction of these compounds. In this work we review the developed methods in the extraction and determination of phenolic derivatives in different types of environmental matrices such as water, sediments and soils. Moreover, we present the new approach in the use of micellar media coupled with SPME process for the extraction of phenolic compounds. The advantages of micellar media over conventional extractants are reduction of organic solvent, low cost, easy handling and shorter time procedures.
Title: Methodologies for the Extraction of Phenolic Compounds from Environmental Samples: New Approaches
Description:
Phenolic derivatives are among the most important contaminants present in the environment.
These compounds are used in several industrial processes to manufacture chemicals such as pesticides, explosives, drugs and dyes.
They also are used in the bleaching process of paper manufacturing.
Apart from these sources, phenolic compounds have substantial applications in agriculture as herbicides, insecticides and fungicides.
However, phenolic compounds are not only generated by human activity, but they are also formed naturally, e.
g.
, during the decomposition of leaves or wood.
As a result of these applications, they are found in soils and sediments and this often leads to wastewater and ground water contamination.
Owing to their high toxicity and persistence in the environment, both, the US Environmental Protection Agency (EPA) and the European Union have included some of them in their lists of priority pollutants.
Current standard methods of phenolic compounds analysis in water samples are based on liquid–liquid extraction (LLE) while Soxhlet extraction is the most used technique for isolating phenols from solid matrices.
However, these techniques require extensive cleanup procedures that are time-intensive and involve expensive and hazardous organic solvents, which are undesirable for health and disposal reasons.
In the last years, the use of news methodologies such as solid-phase extraction (SPE) and solid-phase microextraction (SPME) have increased for the extraction of phenolic compounds from liquid samples.
In the case of solid samples, microwave assisted extraction (MAE) is demonstrated to be an efficient technique for the extraction of these compounds.
In this work we review the developed methods in the extraction and determination of phenolic derivatives in different types of environmental matrices such as water, sediments and soils.
Moreover, we present the new approach in the use of micellar media coupled with SPME process for the extraction of phenolic compounds.
The advantages of micellar media over conventional extractants are reduction of organic solvent, low cost, easy handling and shorter time procedures.
Related Results
Echinococcus granulosus in Environmental Samples: A Cross-Sectional Molecular Study
Echinococcus granulosus in Environmental Samples: A Cross-Sectional Molecular Study
Abstract
Introduction
Echinococcosis, caused by tapeworms of the Echinococcus genus, remains a significant zoonotic disease globally. The disease is particularly prevalent in areas...
From Olive Fruits to Olive Oil: Phenolic Compound Transfer in Six Different Olive Cultivars Grown under the Same Agronomical Conditions
From Olive Fruits to Olive Oil: Phenolic Compound Transfer in Six Different Olive Cultivars Grown under the Same Agronomical Conditions
Phenolic compounds are responsible of the nutritional and sensory quality of extra-virgin olive oil (EVOO). The composition of phenolic compounds in EVOO is related to the initial ...
Effect of probiotic bacterial species on the bioactivity of a fermented spelt-based beverage
Effect of probiotic bacterial species on the bioactivity of a fermented spelt-based beverage
Background: Spelt grain, due to its valuable chemical composition, can serve as a promising substrate for functional beverages. Probiotic microorganisms are capable of hydrolyzing ...
Enzyme-assisted extraction of anti-inflammatory compounds from habanero chili pepper (Capsicum chinense) seeds
Enzyme-assisted extraction of anti-inflammatory compounds from habanero chili pepper (Capsicum chinense) seeds
Capsaicinoids are the main bioactive compounds extracted from chili pepper seeds (CPSs) but other bioactive compounds such as phenolic compounds may be found. Enzyme-assisted extra...
Optimization of phenolic extraction from Amomum compactum fruits using simplex centroid design
Optimization of phenolic extraction from Amomum compactum fruits using simplex centroid design
Cardamom (Amomum compactum Sol. Ex Maton) is a medicinal plant that belongs to the family Zingiberaceae. Phenolic compound detected in Cardamom fruit that responsible for several ...
Experimental and In Silico Evaluation of Honey‐Derived Phenolic Compounds: Antioxidant Activity, Anti‐Inflammatory Potential Pharmacokinetic Properties, Toxicity Assessment, and Multitarget Anti‐Inflammatory Potential
Experimental and In Silico Evaluation of Honey‐Derived Phenolic Compounds: Antioxidant Activity, Anti‐Inflammatory Potential Pharmacokinetic Properties, Toxicity Assessment, and Multitarget Anti‐Inflammatory Potential
Honey is a natural product rich in phenolic compounds that contribute to its antioxidant and anti‐inflammatory properties. The present study aimed to evaluate the biological activi...
Development of an Ultrasound-Assisted Extraction Procedure for the Simultaneous Determination of Anthocyanins and Phenolic Acids in Black Beans
Development of an Ultrasound-Assisted Extraction Procedure for the Simultaneous Determination of Anthocyanins and Phenolic Acids in Black Beans
Beans are an essential source of nutritional components such as plant proteins, minerals and dietary fiber, as well as of antioxidants such as phenolic compounds. Phenolic compound...
Phenolic compounds from Arthrospira platensis and Chlorella vulgaris enhance growth, digestive function, antioxidant capacity, and immune-related gene expression in Nile Tilapia
Phenolic compounds from Arthrospira platensis and Chlorella vulgaris enhance growth, digestive function, antioxidant capacity, and immune-related gene expression in Nile Tilapia
Microalgae have many bioactive compounds as well as nutritional properties and have been used as a functional feed supplement to improve the health status of fish and their perform...

