Search results for "Water Analysis"

showing 5 items of 5 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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COD and TPH analysis in slops experimental treatment plants: analytical problems.

2015

COD AND TPH ANALYSIS IN SLOPS EXPERIMENTAL TREATMENT PLANTS: ANALYTICAL PROBLEMS. In the last years, the persistence and accumulation of xenobiotic compounds in the environment created many disposal problems of oily wastewater generated by ships, mainly in engine-rooms (bilge waters) and by cleaning of tanker (slops). The high salinity levels (up to 25.000 mgL-1) and the pollutants concentration, both limit the chances of discharge into the sewer systems and address the disposal of these wastewaters to the sea. For these reasons it is necessary to treat such wastewater efficiently before discharging [1]. As a part of a broader project concerning slops treatments, this work addresses issues …

TPH interferenceSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSettore AGR/13 - Chimica Agrariaoil-in-water analysisCOD interference
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Illicit drugs consumption evaluation by wastewater-based epidemiology in the urban area of Palermo city (Italy)

2017

Introduction. A wastewater-based epidemiology approach was performed to estimate the drug consumption in Palermo city, the fifth largest city of Italy with a population of 671 696 inhabitants, and to investigate the monthly variability of drug loads in wastewater from different areas of the city. A seven-months detection campaign was conducted at the two wastewater treatment plants of the city. Methods. Following a pre-treatment, 32 samples of wastewater were analyzed by liquid chromatography-tandem mass spectrometry. Results. We estimated a mean cocaine use in Palermo of 0.19 g/day/1000 people, corresponding to 1.90 doses/1000 people and cannabinoids use of 2.85 g/day/1000 people, correspo…

drugs consumptionSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleIllicit DrugsSubstance-Related DisorderscocaineamphetaminescannabinoidWastewaterSettore MED/42 - Igiene Generale E Applicatawastewater-based epidemiologyItalyTandem Mass Spectrometrywastewater analysiPrevalenceHumansdrugs consumption; wastewater analysis; wastewater-based epidemiology; cannabinoids; cocaine; amphetaminesChromatography High Pressure Liquid
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Wastewater-based epidemiology, a tool to bridge biomarkers of exposure, contaminants, and human health

2021

The concept of wastewater-based epidemiology also known as sewage epidemiology was proposed by Daughton in 2001. Wastewater-based epidemiology has become now a reality that makes it possible to determine consumption or exposure to chemical substances or pathogens in a population by measuring certain compounds (drugs of abuse, metabolites, or biomarkers) or microorganisms (viruses, bacteria, and parasites) in wastewater. The first and most developed application is the estimation of illicit drug consumption in communities or populations, but it can be used to measure both consumption and exposure to a wide range of substances and pathogens. Its recent application to measure the severe acute r…

medicine.medical_specialtyHealth Toxicology and MutagenesisSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)0208 environmental biotechnologyPopulationSewage02 engineering and technologyDisease010501 environmental sciences01 natural sciencesHuman healthEnvironmental healthEpidemiologyEnvironmental ChemistryMedicineeducation0105 earth and related environmental scienceseducation.field_of_studybusiness.industryWastewater analysisPublic Health Environmental and Occupational HealthContamination020801 environmental engineeringWastewaterChemicalsPathogensbusinessCommunity health assessmentBiomarkersCurrent Opinion in Environmental Science & Health
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Application of molecular imprinted polymers for selective solid phase extraction of bisphenol A

2016

Selective molecularly imprinted polymers (MIPs) with bisphenol A as template were synthesized using the non-covalent imprinting approach. MIPs were prepared using thermally initiated polymerization with 1,1’-azobis(cyclohexanecarbonitryle) (ACHN) as initiator and ethylene glycol dimethacrylate (EDMA) as a cross-linking agent. The tested functional monomers included methacrylic acid, acrylamide, and 4-vinylpyridine. The selectivity of the BPA-MIP for the solid phase extraction of bisphenol A was tested in samples containing other related alkylphenols. The polymers prepared in acetonitrile using methacrylic acid or acrylamide as monomer showed the highest selectivity towards target analyte (t…

water analysisbisphenol A1’-azobis(cyclohexanecarbonitryle)1solid-phase extractionmolecularly imprinted polymerEcological Chemistry and Engineering. S = Chemia i Inżynieria Ekologiczna. S
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