Search results for "Green solvents"

showing 4 items of 4 documents

Green Analytical Chemistry Past, Present and Perspectives

2019

The book explains the principles and fundamentals of Green Analytical Chemistry (GAC) and highlights the current developments and future potential of the analytical green chemistry-oriented applications of various solutions. The book consists of sixteen chapters, including the history and milestones of GAC; issues related to teaching of green analytical chemistry and greening the university laboratories; evaluation of impact of analytical activities on the environmental and human health, direct techniques of detection, identification and determination of trace constituents; new achievements in the field of extraction of trace analytes from samples characterized by complex composition of the…

MicroextractionPassive techniquesPollution remote monitoringGreen chromatographyDerivatization processGreen solventsGreen analytical techniquesGreen sorption materialsGreen Analytical ChemistryDirect techniques
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Phenolic and Antioxidant Analysis of Olive Leaves Extracts (Olea europaea L.) Obtained by High Voltage Electrical Discharges (HVED)

2019

Background: The aim of this study was to evaluate high voltage electrical discharges (HVED) as a green technology, in order to establish the effectiveness of phenolic extraction from olive leaves against conventional extraction (CE). HVED parameters included different green solvents (water, ethanol), treatment times (3 and 9 min), gases (nitrogen, argon), and voltages (15, 20, 25 kV). Methods: Phenolic compounds were characterized by ultra-performance liquid chromatography-tandem mass spectrometer (UPLC-MS/MS), while antioxidant potency (total phenolic content and antioxidant capacity) were monitored spectrophotometrically. Data for Near infrared spectroscopy (NIR) spectroscopy, colorimetry…

Health (social science)Antioxidant030309 nutrition & dieteticsmedicine.medical_treatmentchemistry.chemical_elementPlant Sciencelcsh:Chemical technologyHealth Professions (miscellaneous)MicrobiologyArticleColorimetry (chemical method)olive leaves extracts03 medical and health sciences0404 agricultural biotechnologymedicinelcsh:TP1-1185high voltage electrical discharge ; olive leaves extracts ; green solvents ; eco-extraction ; sustainabilitygreen solvents0303 health sciencesChromatographyhigh voltage electrical dischargebiologyPesticide residueChemistryExtraction (chemistry)eco-extraction04 agricultural and veterinary sciencessustainabilitybiology.organism_classification040401 food scienceNitrogenOleaYield (chemistry)EmulsionFood ScienceFoods
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Advancements in Sustainable PVDF Copolymer Membrane Preparation Using Rhodiasolv® PolarClean As an Alternative Eco-Friendly Solvent

2021

In this work, Rhodiasolv® PolarClean was employed as a more sustainable solvent for the preparation of poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) flat sheet membranes via phase inversion technique by coupling vapour induced phase separation (VIPS) and non-solvent induced phase separation (NIPS) processes. Preliminary calculations based on Hansen solubility parameters well predicted the solubilization of the polymer in the selected solvent. The effect of exposure time on humidity and the influence of polyethylene glycol (PEG), polyvinyl pyrrolidone (PVP) and sulfonated polyether sulfone (S-PES) on membrane properties and performance, were evaluated. Three different coagulation …

Materials scienceMicrofiltrationUltrafiltrationEnvironmental engineeringPolyethylene glycolPVDF-HFP membrane preparationEnvironmental technology. Sanitary engineeringchemistry.chemical_compoundvihreä kemiaPolarCleanPhase inversion (chemistry)green solventsTD1-1066chemistry.chemical_classificationkalvot (tekniikka)General EngineeringmuovitekniikkaPolymerpolymeerikemiaTA170-171SolventHildebrand solubility parameterMembranechemistryChemical engineeringliuottimet
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N-Methylcaprolactam as a Dipolar Aprotic Solvent for Iron-Catalyzed Cross-Coupling Reactions: Matching Efficiency with Safer Reaction Media

2019

Although iron‐catalysis provides a powerful alternative to the more conventional palladium and nickel in the cross‐coupling arena, the major limitation is the necessity for carcinogenic N‐methylpyrrolidone as a co‐solvent in the vast majority of catalytic reactions. Herein, we introduce N‐methylcaprolactam as an efficient, non‐toxic and practical dipolar aprotic solvent for iron‐catalyzed C(sp2)−C(sp3) alkylative cross‐coupling of aryl chlorides and tosylates. The utility of this method is reflected by its wide substrate scope, high yields and capacity to cross‐couple challenging alkyl organometallics prone to b‐hydride elimination and homocoupling. Considering the broad utility of iron‐cat…

Matching (statistics)catalysisChemistryIron catalyzedOrganic ChemistrysustainabilityCoupling reactionCatalysisInorganic ChemistrySolventDipoleComputational chemistrySAFERcross-couplingPhysical and Theoretical Chemistrygreen solventsiron catalysisChemcatchem
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