Search results for "Trace elements"

showing 10 items of 165 documents

Recognition of Trace Element Contamination Using Ficus macrophylla Leaves in Urban Environment

2020

Urban areas are characterized by numerous pollutants emitted by anthropic sources both in the form of solid and gaseous particulates. Biomonitoring is an easy, economical, and accessible approach for the determination of atmospheric pollutants. In this study, we used the leaves of Ficus macrophylla Desf. ex Pers., collected in the city of Palermo (Italy), to determine major and trace elements. Geogenic elements exhibited the highest concentrations, making up 99% of the weight of the analyzed elements (Ca, K, Mg, P, S, Na, Fe, and Al)

Pollution010504 meteorology & atmospheric sciencesHealth Toxicology and Mutagenesismedia_common.quotation_subjectlcsh:Medicinetrace elements010501 environmental sciences01 natural sciencesenvironmental geochemistrySettore BIO/01 - Botanica Generalebiogeochemistry<I>Ficus macrophylla</i> Desf. ex Pers. leavesBiomonitoringFicus macrophylla Desf. ex Pers. leave0105 earth and related environmental sciencesmedia_commonPollutantChemistrylcsh:RPublic Health Environmental and Occupational HealthTrace elementBiogeochemistryContaminationParticulatesair qualitySettore GEO/08 - Geochimica E VulcanologiaEnvironmental chemistryMetalloid
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Damage monitoring on carbonate stones: Field exposure tests contributing to pollution impact evaluation in two Italian sites

2017

During the last decades, many studies have been carried out on environmental monitoring in specific sites aiming at their protection and conservation; however, researches focused on the direct implications, in terms of quantitative evaluation of stone deterioration, of these monitoring actions are still scarce. This experimental work aims at monitoring the degradation processes affecting historical buildings constituted by carbonate stones. Specifically, specimens of Carrara marble and two limestones largely used in the Sicilian Baroque architecture, namely Noto and Comiso stones, were exposed outdoor in two Italian sites (Catania and Palermo), which are characterized by different environme…

Pollution010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectAir pollutionAir pollution010501 environmental sciencesmedicine.disease_cause01 natural scienceschemistry.chemical_compoundDegradationair pollution ; building materials ; degradation ; particulate mater soluble fraction ; trace elementsEnvironmental monitoringmedicineGeneral Materials ScienceSoluble fractionInductively coupled plasma mass spectrometry0105 earth and related environmental sciencesmedia_commonCivil and Structural EngineeringTrace elementsChemistryMetallurgyBuilding and ConstructionParticulatesparticulate materDeposition (aerosol physics)Environmental chemistryBuilding materialsTrace elementCarbonate rockCarbonateBuilding materialMaterials Science (all)Particulate matter
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Bioavailability and assessment of heavy metal pollution in sediment cores off the Mejerda River Delta (Gulf of Tunis): How useful is a multiproxy app…

2016

International audience; Three core samples were taken from zones offshore from the Mejerda River Delta (Tunisia) and analyzed formajor and trace elements to assess their relationships with organic matter, monosulfides and carbonates, aswell as for pollution and bioavailability. Chemical speciation,ΣSEM/AVS, the enrichment factor (EF) and thegeo-accumulation index (I-geo) were used. Iron, cadmium, lead and zinc – the most frequently mined metalsin the Mejerda catchment – were found as contaminants in the offshore areas. Estimations of trace elementaccumulation using the EF and the I-geo index show that lead, and to a lesser extent zinc, are the most pollutingmetals off the Mejerda outlet. Ac…

PollutionDeltaGeologic SedimentsTunisia010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectCarbonateschemistry.chemical_elementEnvironmental pollution010501 environmental sciencesAquatic ScienceOceanographyCoastal areas01 natural sciencesMining[ SDE ] Environmental SciencesRiversMetals Heavy0105 earth and related environmental sciencesmedia_commongeographyCadmiumRiver deltageography.geographical_feature_categoryToxicityTrace elementSedimentGeo-accumulation indexPollutionEnrichment factor6. Clean waterTrace ElementsZincchemistry13. Climate actionEnvironmental chemistry[SDE]Environmental SciencesEnvironmental scienceChemical speciationEnvironmental PollutionEnrichment factorWater Pollutants ChemicalCadmiumEnvironmental Monitoring
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Geochemical characterization and health risk assessment in two diversified environmental settings (Southern Italy).

2021

An integrated approach using chemical and microbial indicators has been tested in two different sites of the Campania Plain (Southern Italy) with different land use covering and different hydrogeological features in order: (1) to define the water-rock interaction processes, (2) to differentiate sources of pollution in a detailed way (3) to evaluate the degree of water quality in the studied alluvial aquifer and (4) to identify the most worrying elements for human's health. Groundwater have showed a HCO3-Ca signature for both investigated sites, and a progressive enrichment in alkali ions has been highlighted moving from the boundary of the plain toward the coastal areas, due to groundwater …

PollutionEnvironmental Engineering010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectFecal pollution010501 environmental sciences01 natural sciencesRisk AssessmentGQIGeochemistry and PetrologyWater QualityEnvironmental ChemistryHumansGroundwaterAlluvial aquifer Factor analysis Fecal pollution GQI HRA Trace elements0105 earth and related environmental sciencesGeneral Environmental ScienceWater Science and Technologymedia_commonHydrogeologyNitratesLand useHealth risk assessmentbusiness.industryGeneral MedicineHRAFactor analysiTrace ElementsFecal coliformAgricultureAlluvial aquiferEnvironmental scienceWater qualityWater resource managementbusinessGroundwaterWater Pollutants ChemicalEnvironmental MonitoringEnvironmental geochemistry and health
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Impact of 70 years urban growth associated with heavy metal pollution

2014

Historical trends in trace element deposition were analyzed using herbaria specimens. We determined Al, Fe, Mg, Mn, Ca, Na, P, K, S, As, Cd, Cr, Cu, Ni, Pb and Zn contents in leaves of eight specimens collected in 1941. To assess changes, we collected the same plants from a botanical garden in 2012. The concentrations of major elements showed large species variability. However, temporal trends were predominately detected for heavy metals. The Cd, Ni and Cr contents in the 2012 leaves were 10, 13 and 16 times higher, respectively, than in 1941. Urban activities have substantially raised the levels of these metals in urban atmospheres due to changes in human activities over 70 years of urban …

PollutionRetrospective analysisHealth Toxicology and Mutagenesismedia_common.quotation_subjectchemistry.chemical_elementUrban environmentZincManganeseToxicologyChromiumMetals HeavyHumansCitiesPopulation GrowthArsenicHerbarium specimensmedia_commonCadmiumBotanical gardenTrace elementAirborne pollutionGeneral MedicinePollutionTrace ElementsDeposition (aerosol physics)chemistryMetalsEnvironmental chemistryEnvironmental PollutionEnvironmental Monitoring
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Major and trace element distribution in the peat from ombrotrophic bogs in Latvia.

2011

This study was undertaken to analyse major and trace elements and the nature of their accumulation in peat, with a particular emphasis on peat properties and the impact of local and regional pollution sources on the character of element accumulation in ombrotrophic bogs in Latvia. The element concentration values in peat from Latvia reflect the local processes that affect element concentrations in the peat mass, indicating accumulation of trace elements – apparently of anthropogenic origin (Pb, Cd, Co, Ni and others) – in the upper layers of the peat profiles. In addition, they indicate accumulation of several elements (for example, As, Cr and others) in deeper layers of bog, possibly due t…

PollutiongeographyEnvironmental EngineeringPeatgeography.geographical_feature_categorySaturation (genetic)media_common.quotation_subjectTrace elementOmbrotrophicGeneral MedicineLatviaTrace ElementsEnvironmental chemistryWetlandsSphagnopsidaWater Pollution ChemicalEnvironmental scienceBogGroundwaterWater Pollutants Chemicalmedia_commonEnvironmental MonitoringJournal of environmental science and health. Part A, Toxic/hazardous substancesenvironmental engineering
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Background element content in the lichen Pseudevernia furfuracea: a comparative analysis of digestion methods

2019

In bioaccumulation studies, the interpretation of pollutant contents in the target biomonitor has to be performed by assessing a deviation from an unaltered reference condition. A common strategy consists in the comparison with background element content (BEC) values, often built up by uncritically merging methodologically heterogeneous data. In this respect, the acid digestion of samples was identified as a major step affecting BEC data. Here, the analytical outcomes of two acid mixtures were compared on a set of matched paired samples of the lichen Pseudevernia furfuracea, a widely used biomonitor for which BEC values based on partial digestion were previously provided. The standard refer…

Pseudevernia furfuraceaMultivariate statisticsAcid extraction; Air pollution; Baseline; Bioaccumulation; Biomonitor; Mineralization; Environmental Monitoring; Environmental Pollutants; Hydrochloric Acid; Italy; Lichens; Nitric Acid; Trace Elements; 2300; Pollution; Management Monitoring Policy and LawMineralization010504 meteorology & atmospheric sciencesLichensMonitoringAir pollutionLichen010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciencesNitric AcidAcid extractionAcid extraction; Air pollution; Baseline; Bioaccumulation; Biomonitor; Mineralization; Environmental Monitoring; Environmental Pollutants; Hydrochloric Acid; Italy; Lichens; Nitric Acid; Trace Elementschemistry.chemical_compoundDigestion (alchemy)Nitric acidBaselineBiomonitoringAqua regiaEnvironmental Pollutant0105 earth and related environmental sciencesGeneral Environmental Sciencebiology2300Policy and LawGeneral Medicinebiology.organism_classificationAir pollution; Baseline; Bioaccumulation; Biomonitor; Mineralization; Acid extractionBioaccumulationPollutionTrace ElementsManagementchemistryItalyBiomonitorBioaccumulationEnvironmental chemistryAnalytical proceduresEnvironmental PollutantsHydrochloric AcidEnvironmental Monitoring
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New Interpretative Scales for Lichen Bioaccumulation Data: The Italian Proposal

2019

The interpretation of lichen bioaccumulation data is of paramount importance in environmental forensics and decision-making processes. By implementing basic ideas underlying previous interpretative scales, new dimensionless, species-independent &ldquo

Pseudevernia furfuraceaPollutionBackground levelAtmospheric Science010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectair pollutionEvernia prunastritrace elementsAir pollution; Background levels; Biomonitoring; Evernia prunastri; Flavoparmelia caperata; Lichen transplants; Native lichens; Pseudevernia furfuracea; Trace elements; Xanthoria parietina; Environmental Science (miscellaneous)native lichenslcsh:QC851-999010501 environmental sciencesEnvironmental Science (miscellaneous)<i>Flavoparmelia caperata</i>01 natural sciencesnative lichenNative lichenXanthoria parietinaFlavoparmelia caperataBiomonitoringPseudevernia furfuraceaLichen0105 earth and related environmental sciencesmedia_commonAir pollution; Background levels; Biomonitoring; Evernia prunastri; Flavoparmelia caperata; Lichen transplants; Native lichens; Pseudevernia furfuracea; Trace elements; Xanthoria parietinaFlavoparmelia caperatabiologyEvernia prunastriBiomonitoring; native lichens; lichen transplants air pollution; trace elements; background levels; Flavoparmelia caperata; Xanthoria parietina; Evernia prunastri; Pseudevernia furfuracea<i>Evernia prunastri</i>trace elementbiology.organism_classificationbackground levelXanthoria parietinaLichen transplantlichen transplantsbackground levelsBioaccumulation<i>Xanthoria parietina</i>Biomonitoring<i>Pseudevernia furfuracea</i>Trace elementEnvironmental sciencelcsh:Meteorology. ClimatologyPhysical geographylichen transplants air pollution
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Conflicting coccolithophore and geochemical evidence for productivity levels in the Eastern Mediterranean sapropel S1

2011

Abstract The cyclic development of anoxic conditions in the eastern Mediterranean deep sea waters is one of the most fascinating research topics in paleoceanographic studies. In combination with bottom water stagnation, enhanced primary production is a common explanation for the deposition of organic-rich layers (sapropels). This is supported by extensive evidence from both geochemical and micropaleontological studies. The correspondence of recent sapropel layers with peaks of the lower photic zone coccolithophore species Florisphaera profunda has been interpreted as a proxy for the development of a deep chlorophyll maximum (DCM), due to the pycnocline/nutricline shallowing into the lower p…

Pycnocline010504 meteorology & atmospheric sciencesCoccolithophoretrace elementsNannofossil Accumulation Rates Trace Elements Sapropel S1 Deep Chlorophyll Maximum010502 geochemistry & geophysicsOceanography01 natural sciencesDeep seaCoccolithBottom waterEastern Mediterranean SeaPhotic zone14. Life underwaterNannofossil Accumulation Rates0105 earth and related environmental sciencesDeep chlorophyll maximumbiologyPaleontologySapropeldeep chlorophyll maximum15. Life on landbiology.organism_classificationsapropel S1OceanographyGeologyMarine Micropaleontology
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A selective microscale x-ray fluorescence analyzing method for determination of trace elements

1973

Abstract A new selective X-ray fluorescence analyzing method for trace element determination has been developed. In this method each trace element is measured independently. The excitation source is an X-ray tube that has a changeable anode and a variable high voltage. The exciting radiation is shaped with critical absorbers. The sample is viewed at backward angles through an absorber to reduce backscattered radiation. The estimated accuracy of this method is of the order of 10 per cent in thesub-ppm range of trace element concentration in organic samples. Measurement times are of the order of a few minutes.

RadiationTrace AmountsChemistrySpectrum AnalysisTrace elementAnalytical chemistryX-ray fluorescenceRadiationFluorescenceFluorescenceTrace ElementsAnodeNuclear Energy and EngineeringMethodsRadiology Nuclear Medicine and imagingEnvironmental PollutionMicroscale chemistryExcitationThe International Journal of Applied Radiation and Isotopes
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