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In addition to the application of nanostructured materials for extraction of metal ions, the use of these materials to catalyse diverse organic reactions has received much attention in recent times [16, 17, 18, 19, 20, 21, 22, 23, 24].
But, in the present review, we have focused on the synthesis and application of porous and chelated nanostructured multifunctional materials for extraction of metal ions and as catalysts for diverse organic reactions.
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Sage herbal dust, discarded as by-product from filter tea factory, was used as raw material for extraction.
In this work, sage (Salvia officinalis L). by-products from filter tea factory, i.e. sage herbal dust, was valorized as raw material for extraction of phenolic antioxidants.
Results suggested that SWE provided significant advantages in terms of polyphenols yield, comparing to maceration, and that herbal dust from filter tea factory could be potentially utilized as good raw material for extraction of valuable bioactive compounds.
For each determination, at least two plants were used as a source of leaf material for extraction and analysis.
Briefly, plant material for extraction was assessed by HPLC for its content of diterpenoids, after which selected peeled roots of TwHF were ground and extracted with EA.
Principal strengths of genomics and transcriptomics lay in the ability to amplify genetic material for extraction of genetic and transcript profiles even from a single cell [ 6].
These by-products can be used in biotechnological processes, such as fermentative processes for the production of value-added compounds (e.g., xylitol, ethanol) as substrates for culturing microorganisms and as raw material for extraction of compounds such as antioxidants [ 10].
Samples were snap frozen to provide material for extraction of RNA or protein, or fixed in 10% neutral buffered formaldehyde for 16 to 24 h then stored in 70% (w v−1) ethanol prior to processing into paraffin wax at the Department of Pathology using standard procedures.
Biomass wastes (almond shell and olive tree pruning) were used in this work as raw materials for the extraction of high purity lignin by different delignification methods.
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