Search results for "sunscreen"

showing 6 items of 26 documents

Sunscreen Products as Emerging Pollutants to Coastal Waters

2013

A growing awareness of the risks associated with skin exposure to ultraviolet (UV) radiation over the past decades has led to increased use of sunscreen cosmetic products leading the introduction of new chemical compounds in the marine environment. Although coastal tourism and recreation are the largest and most rapidly growing activities in the world, the evaluation of sunscreen as source of chemicals to the coastal marine system has not been addressed. Concentrations of chemical UV filters included in the formulation of sunscreens, such as benzophehone 3 (BZ-3), 4-methylbenzylidene camphor (4-MBC), TiO2 and ZnO, are detected in nearshore waters with variable concentrations along the day a…

Marine ChemistryMarine and Aquatic Scienceslcsh:MedicineHeavy MetalsOceanographyWater ChemistryAnalytical Chemistryvisual_art.visual_artistWater AnalysisWater QualityMicroalgaeWater pollutionlcsh:ScienceTitaniumMultidisciplinarySunbathingEcologyChemistryEcologyChemical OceanographyMarine EcologyChemical oceanographyZincChemistryEnvironmental chemistryvisual_artCoastal EcologyResearch ArticlePollutantsAlgal bloomPhosphatesBenzophenonesInhibitory Concentration 50Chemical AnalysisSunbathingMediterranean SeaHumansEnvironmental ChemistrySeawaterMarine ecosystemBiological oceanographyBiologyDiatomsPollutantBiological Oceanographylcsh:RKineticsSpainEarth SciencesSeawaterlcsh:QSunscreening AgentsWater Pollutants ChemicalEnvironmental Protection
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Efficient flow injection and sequential injection methods for spectrophotometric determination of oxybenzone in sunscreens based on reaction with Ni(…

2001

Spectrophotometric determination of a widely used UV-filter, such as oxybenzone, is proposed. The method is based on the complexation reaction between oxybenzone and Ni(II) in ammoniacal medium. The stoichiometry of the reaction, established by the Job method, was 1:1. Reaction conditions were studied and the experimental parameters were optimized, for both flow injection (FI) and sequential injection (SI) determinations, with comparative purposes. Sunscreen formulations containing oxybenzone were analyzed by the proposed methods and results compared with those obtained by HPLC. Data show that both FI and SI procedures provide accurate and precise results. The ruggedness, sensitivity and LO…

Reaction conditionsChromatographymedicine.diagnostic_testColor reactionAnalytical chemistryBiochemistryHigh-performance liquid chromatographySensitivity and Specificitychemistry.chemical_compoundSequential injectionBenzophenoneschemistryAmmoniaNickelSpectrophotometrySpectrophotometrymedicineIndicators and ReagentsOxybenzoneQuantitative analysis (chemistry)Sunscreening AgentsStoichiometryChromatography High Pressure LiquidFresenius' journal of analytical chemistry
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Dispersive solid-phase extraction based on oleic acid-coated magnetic nanoparticles followed by gas chromatography-mass spectrometry for UV-filter de…

2011

Abstract A sensitive analytical method to concentrate and determine extensively used UV filters in cosmetic products at (ultra)trace levels in water samples is presented. The method is based on a sample treatment using dispersive solid-phase extraction (dSPE) with laboratory-made chemisorbed oleic acid-coated cobalt ferrite (CoFe 2 O 4 @oleic acid) magnetic nanoparticles (MNPs) as optimized sorbent for the target analytes. The variables involved in dSPE were studied and optimized in terms of sensitivity, and the optimum conditions were: mass of sorbent, 100 mg; donor phase volume, 75 mL; pH, 3; and sodium chloride concentration, 30% (w/v). After dSPE, the MNPs were eluted twice with 1.5 mL …

SorbentBiochemistrySensitivity and SpecificityGas Chromatography-Mass SpectrometryAnalytical ChemistryTap waterRiversSample preparationSolid phase extractionMagnetite NanoparticlesDetection limitChromatographyElutionChemistryOrganic ChemistryExtraction (chemistry)Osmolar ConcentrationSolid Phase ExtractionReproducibility of ResultsWaterGeneral MedicineHydrogen-Ion ConcentrationGas chromatography–mass spectrometrySunscreening AgentsWater Pollutants ChemicalOleic AcidJournal of chromatography. A
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Analytical methodologies for atomic spectrometric determination of metallic oxides in UV sunscreen creams.

2000

In this study, methodologies for determining titanium oxide, zinc oxide and iron oxide are proposed and assayed in commercial sunscreen products. The proposed methodology for TiO2, determination in sunscreens is based on a microwave-assisted treatment for digesting the organic components in a closed teflon reactor in presence of HNO3 and HCl. Titanium is determined by inductive coupled plasma emission spectrometry (ICP-AES). The proposed methodologies for measuring ZnO and Fe2O3 are based on a sample emulsification in water with a non ionic tensioactive and IBMK, followed by Zn and Fe determination by flame atomic absorption spectrometry (FAAS). The methodologies allow a precise and accurat…

Ultraviolet RaysClinical BiochemistryInorganic chemistryIron oxidePharmaceutical Sciencechemistry.chemical_elementZincFerric CompoundsSensitivity and SpecificityAnalytical Chemistrylaw.inventionchemistry.chemical_compoundlawSpectrophotometryDrug DiscoverymedicineSpectroscopyTitaniummedicine.diagnostic_testChemistrySpectrophotometry AtomicTitanium oxideInductively coupled plasma atomic emission spectroscopyInductively coupled plasmaZinc OxideAtomic absorption spectroscopySunscreening AgentsTitaniumJournal of pharmaceutical and biomedical analysis
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Caffeine analysis and extraction from a topical cream intended for UV-skin protection

2020

Made available in DSpace on 2021-06-25T10:16:59Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-01-01 This study aimed to develop and validate a method for the analysis of caffeine in complex cosmetic samples, such as sunscreens. Besides, an extraction method of caffeine from coffee oil and from creams, which contains both lipophilic and hydrophilic components, has been developed. The method to analyze caffeine was developed using an isocratic pump, Waters 1515 and an automatic injector Perkin-Elmer Series 200 and an UV detector Perkin-Elmer. As stationary phase, Kromasil C-18 (150 × 4.6 mm ID with particle size of 5 µm) column was used and a mixture of water (pH 4.00)/acetonitrile (…

emulsionSkin protectionSunscreensChromatographyPolymers and PlasticsExtraction (chemistry)02 engineering and technology021001 nanoscience & nanotechnologySurfaces Coatings and Filmschemistry.chemical_compoundTopical cream020401 chemical engineeringchemistrychemical analysisEmulsionextractionExtraction methods0204 chemical engineeringPhysical and Theoretical Chemistry0210 nano-technologyCaffeinecaffeineJournal of Dispersion Science and Technology
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UV filters: From sunscreens to human body and the environment

2007

Recognition of the harmful effects of ultraviolet (UV) radiation on the skin has triggered development of organic chemicals (commonly referred as UV filters) that can absorb UV radiation and attenuate the negative effects of sunlight exposure. Depending on the properties and the intended degree of protection, a wide array of combinations is being marketed as delivering protection against most kinds of UV-induced skin damage. However, some UV filters have dermatological implications, so maximum applicable concentrations have been established. To monitor to what extent commercial products comply with the mandatory limits, several analytical methods have been used for their determination in co…

p-aminobenzoic acidvivo skin penetrationpercutaneous-absorptiongas chromatographymedia_common.quotation_subjectmedicine.disease_causeCosmeticsAnalytical ChemistryMatrix (chemical analysis)by-productSkin surfaceliquid-chromatographyWater environmentmedicineliquid chromatographytopical applicationSpectroscopyVolume concentrationmedia_commonsunscreensun protection factorChromatographyOrganic chemicalsChemistryoctyl-methoxycinnamatepercutaneous absorptionin-vitro permeationsolid-phase microextractionSkin penetrationBiochemical engineeringuv filterenvironmentmetabolismUltravioletchromatography-mass-spectrometryTrAC Trends in Analytical Chemistry
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