1987, ISBN 0306425939, xxv, 883
Book
1973, The Analysis of organic materials, 4-, ISBN 9780121973018, v.
Book
Science of the Total Environment, ISSN 0048-9697, 05/2014, Volume 481, Issue 1, pp. 509 - 521
In this study, we assessed past and present influence of ancient mining activity on metal(loid) enrichment in sediments of a former mining watershed (Gardon...
Metal and metalloid | Sequential extraction | Sedimentary archive | Zinc isotopes | Mining-affected river | HEAVY-METALS | STREAM SEDIMENTS | CONTINENTAL-CRUST | ENVIRONMENTAL SCIENCES | ANTHROPOGENIC CONTAMINATION | REMEDIATION OPTIONS | ENVIRONMENTAL SIGNIFICANCE | ACID-MINE DRAINAGE | ISOTOPIC COMPOSITION | Environmental Monitoring | Mercury - analysis | Thallium - analysis | Metals - analysis | Arsenic - analysis | Water Pollutants, Chemical - analysis | Mining | Zinc - analysis | Antimony - analysis | Rivers - chemistry | Geologic Sediments - chemistry | Lead - analysis | Cadmium - analysis | France | Metalloids - analysis | Geochemistry | Earth Sciences | Sciences of the Universe | Environmental Sciences | Global Changes
Metal and metalloid | Sequential extraction | Sedimentary archive | Zinc isotopes | Mining-affected river | HEAVY-METALS | STREAM SEDIMENTS | CONTINENTAL-CRUST | ENVIRONMENTAL SCIENCES | ANTHROPOGENIC CONTAMINATION | REMEDIATION OPTIONS | ENVIRONMENTAL SIGNIFICANCE | ACID-MINE DRAINAGE | ISOTOPIC COMPOSITION | Environmental Monitoring | Mercury - analysis | Thallium - analysis | Metals - analysis | Arsenic - analysis | Water Pollutants, Chemical - analysis | Mining | Zinc - analysis | Antimony - analysis | Rivers - chemistry | Geologic Sediments - chemistry | Lead - analysis | Cadmium - analysis | France | Metalloids - analysis | Geochemistry | Earth Sciences | Sciences of the Universe | Environmental Sciences | Global Changes
Journal Article
Journal of Environmental Science and Health, Part A, ISSN 1093-4529, 07/2019, Volume 54, Issue 8, pp. 810 - 825
High-performance liquid chromatography (HPLC) coupled with inductively coupled plasma mass spectrometry (ICP-MS) was applied to the speciation of arsenic...
chemometric analysis | chromium | antimony | arsenic | Speciation | HPLC-ICP-MS | Chromatography, High Pressure Liquid - methods | Humans | Waste Water - analysis | Environmental Monitoring - methods | Metals - analysis | Arsenicals - analysis | Arsenic - analysis | Water Pollutants, Chemical - analysis | Industrial Waste - analysis | Antimony - analysis | Rivers - chemistry | Water - chemistry | Cacodylic Acid - analysis | Geologic Sediments - chemistry | Poland | Metalloids - analysis | Mass Spectrometry - methods | Principal Component Analysis | Chromium - analysis | HEAVY-METAL POLLUTION | SEDIMENTS | CHEMICAL FATE | ENVIRONMENTAL SCIENCES | ECOLOGICAL RISK-ASSESSMENT | ENGINEERING, ENVIRONMENTAL | ELEMENTAL SPECIATION | SOURCE IDENTIFICATION | ARSENIC SPECIATION | SEQUENTIAL EXTRACTION PROCEDURE | WATER
chemometric analysis | chromium | antimony | arsenic | Speciation | HPLC-ICP-MS | Chromatography, High Pressure Liquid - methods | Humans | Waste Water - analysis | Environmental Monitoring - methods | Metals - analysis | Arsenicals - analysis | Arsenic - analysis | Water Pollutants, Chemical - analysis | Industrial Waste - analysis | Antimony - analysis | Rivers - chemistry | Water - chemistry | Cacodylic Acid - analysis | Geologic Sediments - chemistry | Poland | Metalloids - analysis | Mass Spectrometry - methods | Principal Component Analysis | Chromium - analysis | HEAVY-METAL POLLUTION | SEDIMENTS | CHEMICAL FATE | ENVIRONMENTAL SCIENCES | ECOLOGICAL RISK-ASSESSMENT | ENGINEERING, ENVIRONMENTAL | ELEMENTAL SPECIATION | SOURCE IDENTIFICATION | ARSENIC SPECIATION | SEQUENTIAL EXTRACTION PROCEDURE | WATER
Journal Article
2004, ISBN 9783540208297, 328
Book
Environmental Science and Pollution Research, ISSN 0944-1344, 11/2017, Volume 24, Issue 31, pp. 24333 - 24345
In city playgrounds, there is a potential risk of harming children’s health by contamination coming from anthropogenic activities. With the aim to determinate...
Human health | Environmental Health | Ecotoxicology | Metals | Lead isotopic ratio | Chemometric analysis | Environment, general | Playgrounds | Normalized-and-Weighted Average Concentration | Environment | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | ICP-MS | Environmental Chemistry | Atmospheric Protection/Air Quality Control/Air Pollution | URBAN-ENVIRONMENT | ATMOSPHERIC LEAD | SIZE | SOUTHERN-HEMISPHERE | ENVIRONMENTAL SCIENCES | TRACE-ELEMENTS | DUST | CITY | METAL CONTAMINATION | SOIL | EXPOSURE | Environmental Monitoring | Isotopes - analysis | Risk Assessment | Humans | Brazil | Lead - analysis | Metals - analysis | Environmental Exposure | Metalloids - analysis | Soil Pollutants - analysis | Child | Parks, Recreational | Parks | Analysis | Metalloids | Metal concentrations | Statistical methods | Isotope ratios | Risk factors | Lead | Children | Isotopes | Parks & recreation areas | Soil contamination | Statistical analysis | Pollution sources | Rural areas | Antimony | Principal components analysis | Statistics | Recreation areas | Contamination | Anthropogenic factors | Heavy metals | Correlation analysis | Samples | Chromium | Environmental protection | Index Medicus
Human health | Environmental Health | Ecotoxicology | Metals | Lead isotopic ratio | Chemometric analysis | Environment, general | Playgrounds | Normalized-and-Weighted Average Concentration | Environment | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | ICP-MS | Environmental Chemistry | Atmospheric Protection/Air Quality Control/Air Pollution | URBAN-ENVIRONMENT | ATMOSPHERIC LEAD | SIZE | SOUTHERN-HEMISPHERE | ENVIRONMENTAL SCIENCES | TRACE-ELEMENTS | DUST | CITY | METAL CONTAMINATION | SOIL | EXPOSURE | Environmental Monitoring | Isotopes - analysis | Risk Assessment | Humans | Brazil | Lead - analysis | Metals - analysis | Environmental Exposure | Metalloids - analysis | Soil Pollutants - analysis | Child | Parks, Recreational | Parks | Analysis | Metalloids | Metal concentrations | Statistical methods | Isotope ratios | Risk factors | Lead | Children | Isotopes | Parks & recreation areas | Soil contamination | Statistical analysis | Pollution sources | Rural areas | Antimony | Principal components analysis | Statistics | Recreation areas | Contamination | Anthropogenic factors | Heavy metals | Correlation analysis | Samples | Chromium | Environmental protection | Index Medicus
Journal Article
Chemosphere, ISSN 0045-6535, 04/2017, Volume 172, pp. 505 - 515
Heavy metals (HMs) and metalloids migrate into their surroundings, thus increasing environmental risks and threatening human health. Current studies on...
Brownfield | Soils | Particle size | Human health | Coal mine | Heavy metals | COALFIELD | SEDIMENTS | IDENTIFICATION | ENVIRONMENTAL SCIENCES | TRACE-ELEMENTS | GOLD MINE | AREA | POLLUTION | CONTAMINATED SOILS | RISK-ASSESSMENT | EXPOSURE | Geography | Metalloids | Mercury - analysis | Risk Assessment | Humans | Environmental Monitoring - methods | Ecology | Arsenic - analysis | Environmental Exposure | Soil Pollutants - analysis | Particle Size | Copper - analysis | Zinc - analysis | China | Coal | Metals, Heavy - analysis | Soil | Adult | Cadmium - analysis | Dietary Fiber | Child | Coal Mining | Environmental Pollutants - analysis | Rare earth metals | Coal industry | Arsenic | Green technology | Mineral industry | Food supply | Mining industry | Index Medicus
Brownfield | Soils | Particle size | Human health | Coal mine | Heavy metals | COALFIELD | SEDIMENTS | IDENTIFICATION | ENVIRONMENTAL SCIENCES | TRACE-ELEMENTS | GOLD MINE | AREA | POLLUTION | CONTAMINATED SOILS | RISK-ASSESSMENT | EXPOSURE | Geography | Metalloids | Mercury - analysis | Risk Assessment | Humans | Environmental Monitoring - methods | Ecology | Arsenic - analysis | Environmental Exposure | Soil Pollutants - analysis | Particle Size | Copper - analysis | Zinc - analysis | China | Coal | Metals, Heavy - analysis | Soil | Adult | Cadmium - analysis | Dietary Fiber | Child | Coal Mining | Environmental Pollutants - analysis | Rare earth metals | Coal industry | Arsenic | Green technology | Mineral industry | Food supply | Mining industry | Index Medicus
Journal Article
Environmental Science and Pollution Research, ISSN 0944-1344, 1/2019, Volume 26, Issue 1, pp. 126 - 140
In this research, we conducted a statistical analysis of ten (metalloid) heavy metals, including Cu, Hg, Cd, Zn, Pb, As, Ni, Cr, Co, and Mn in urban dust of 58...
Environment, general | Pollution levels | Environmental Health | Ecotoxicology | China | Health risks | (Metalloid) heavy metals | Environment | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | Urban dusts | Environmental Chemistry | Atmospheric Protection/Air Quality Control/Air Pollution | SEDIMENTS | CONTAMINATION | BIOAVAILABILITY | ENVIRONMENTAL SCIENCES | FRACTIONS | CITY | ROAD DUST | ENRICHMENT | SOIL | PARTICLE-SIZE | ACCUMULATION | Dust - analysis | Metals, Heavy - adverse effects | Mercury - analysis | Risk Assessment | Soil Pollutants - adverse effects | Humans | Environmental Monitoring - methods | Environmental Exposure - analysis | Soil Pollutants - analysis | Carcinogens - analysis | Environmental Exposure - adverse effects | Industry | Metals, Heavy - analysis | Adult | Cities | Metalloids - analysis | Child | Metalloids - adverse effects | Environmental Pollution - analysis | Spatial discrimination | Cobalt | Mining | Carcinogens | Pollution | Risk assessment | Lead | Children | Copper | Environmental assessment | Cadmium | Evaluation | Statistical analysis | Health | Spatial analysis | Exposure | Environmental risk | Zinc | Heavy metals | Dust | Spatial distribution | Chromium | Air pollution | Adults | Skin | Nickel | Health risk assessment | Mercury | Mercury (metal) | Manganese
Environment, general | Pollution levels | Environmental Health | Ecotoxicology | China | Health risks | (Metalloid) heavy metals | Environment | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | Urban dusts | Environmental Chemistry | Atmospheric Protection/Air Quality Control/Air Pollution | SEDIMENTS | CONTAMINATION | BIOAVAILABILITY | ENVIRONMENTAL SCIENCES | FRACTIONS | CITY | ROAD DUST | ENRICHMENT | SOIL | PARTICLE-SIZE | ACCUMULATION | Dust - analysis | Metals, Heavy - adverse effects | Mercury - analysis | Risk Assessment | Soil Pollutants - adverse effects | Humans | Environmental Monitoring - methods | Environmental Exposure - analysis | Soil Pollutants - analysis | Carcinogens - analysis | Environmental Exposure - adverse effects | Industry | Metals, Heavy - analysis | Adult | Cities | Metalloids - analysis | Child | Metalloids - adverse effects | Environmental Pollution - analysis | Spatial discrimination | Cobalt | Mining | Carcinogens | Pollution | Risk assessment | Lead | Children | Copper | Environmental assessment | Cadmium | Evaluation | Statistical analysis | Health | Spatial analysis | Exposure | Environmental risk | Zinc | Heavy metals | Dust | Spatial distribution | Chromium | Air pollution | Adults | Skin | Nickel | Health risk assessment | Mercury | Mercury (metal) | Manganese
Journal Article
Science of the Total Environment, ISSN 0048-9697, 10/2013, Volume 463-464, pp. 131 - 139
Many metals and metalloids, jointly termed metal(loid)s, are toxic to plants even at low levels. This has limited the study of their uptake, distribution, and...
X-ray fluorescence microscopy | Hydrated root | Toxicity | Metal(loid)s | Uptake | Distribution | RICE GRAIN | PIXE MICROANALYSIS | ION BINDING STRENGTHS | ARSENIC ACCUMULATION | SELENIUM | ZINC | ENVIRONMENTAL SCIENCES | HIGHER-PLANTS | NUCLEAR MICROPROBE | PHOSPHATE-TRANSPORT | Mercury - analysis | Fabaceae - chemistry | Nickel - analysis | Electron Probe Microanalysis | Metals - analysis | Arsenic - analysis | Manganese - analysis | Copper - analysis | Zinc - analysis | Selenium - analysis | Plant Roots - chemistry | Metalloids - analysis | Microscopy, Fluorescence | Fluorescence | Particle accelerators | X-ray spectroscopy | Analysis | Microscope and microscopy | Index Medicus
X-ray fluorescence microscopy | Hydrated root | Toxicity | Metal(loid)s | Uptake | Distribution | RICE GRAIN | PIXE MICROANALYSIS | ION BINDING STRENGTHS | ARSENIC ACCUMULATION | SELENIUM | ZINC | ENVIRONMENTAL SCIENCES | HIGHER-PLANTS | NUCLEAR MICROPROBE | PHOSPHATE-TRANSPORT | Mercury - analysis | Fabaceae - chemistry | Nickel - analysis | Electron Probe Microanalysis | Metals - analysis | Arsenic - analysis | Manganese - analysis | Copper - analysis | Zinc - analysis | Selenium - analysis | Plant Roots - chemistry | Metalloids - analysis | Microscopy, Fluorescence | Fluorescence | Particle accelerators | X-ray spectroscopy | Analysis | Microscope and microscopy | Index Medicus
Journal Article
Review of Scientific Instruments, ISSN 0034-6748, 03/2015, Volume 86, Issue 3, p. 033906
We describe a simple magneto-optical experiment and introduce a magneto-optical Kramers-Kronig analysis (MOKKA) that together allow extracting the complex...
ROTATION | INSTRUMENTS & INSTRUMENTATION | PHYSICS, APPLIED | RESONANCE | ANOMALIES | MAGNETOREFLECTION | GRAPHITE | BISMUTH | ABSORPTION | Metalloids | Circular polarization | Broadband | Retarders | Rotation | Polarized light | Wave plates | Handedness | Polarizers | Graphene | Optical properties | Faraday effect | Bismuth | Optical rotation | Absorption spectra | Reflectance
ROTATION | INSTRUMENTS & INSTRUMENTATION | PHYSICS, APPLIED | RESONANCE | ANOMALIES | MAGNETOREFLECTION | GRAPHITE | BISMUTH | ABSORPTION | Metalloids | Circular polarization | Broadband | Retarders | Rotation | Polarized light | Wave plates | Handedness | Polarizers | Graphene | Optical properties | Faraday effect | Bismuth | Optical rotation | Absorption spectra | Reflectance
Journal Article
1987, ISBN 3540172165, Volume 45., iv, 181
Book
Environmental Geochemistry and Health, ISSN 0269-4042, 06/2017, Volume 39, Issue 3, pp. 565 - 589
Panasqueira mine is a tin-tungsten mineralization hosted by metasediments with quartz veins rich in ferberite. The mineralization also comprises wolframite,...
Heavy metals/metalloids | Exposure | Vegetables | Mining activity | Hazard | SOILS | URBAN | CONTAMINATION | WATER RESOURCES | ENVIRONMENTAL SCIENCES | PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH | POLLUTION | CADMIUM | ENGINEERING, ENVIRONMENTAL | PLANTS | TAILINGS | ACCUMULATION | MINERALOGY | Environmental Monitoring | Risk Assessment | Arsenic - analysis | Soil Pollutants - analysis | Water Pollutants, Chemical - analysis | Portugal | Mining | Agricultural Irrigation | Vegetables - chemistry | Copper - analysis | Zinc - analysis | Tungsten | Lead - analysis | Metals, Heavy - analysis | Tin | Cadmium - analysis | Chromium - analysis | Potatoes | Arsenic | Food contamination | Mineral industry | Gardens | Heavy metals | Case studies | Silver | Sulfides | Risk assessment | Rankings | Health aspects | Mining industry | Metalloids | Metals | Roots | Soil pollution | Risks | Tubers | Leaves | Mineralization | Lead | Villages | Carbonates | Cassiterite | Copper | Soil contamination | Soil contaminants | Cadmium | Health risks | Mine wastes | Contamination | Tailings | Zinc | Lettuces | Rhizosphere | Soils | Beans | Chalcopyrite | Chromium | Health risk assessment
Heavy metals/metalloids | Exposure | Vegetables | Mining activity | Hazard | SOILS | URBAN | CONTAMINATION | WATER RESOURCES | ENVIRONMENTAL SCIENCES | PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH | POLLUTION | CADMIUM | ENGINEERING, ENVIRONMENTAL | PLANTS | TAILINGS | ACCUMULATION | MINERALOGY | Environmental Monitoring | Risk Assessment | Arsenic - analysis | Soil Pollutants - analysis | Water Pollutants, Chemical - analysis | Portugal | Mining | Agricultural Irrigation | Vegetables - chemistry | Copper - analysis | Zinc - analysis | Tungsten | Lead - analysis | Metals, Heavy - analysis | Tin | Cadmium - analysis | Chromium - analysis | Potatoes | Arsenic | Food contamination | Mineral industry | Gardens | Heavy metals | Case studies | Silver | Sulfides | Risk assessment | Rankings | Health aspects | Mining industry | Metalloids | Metals | Roots | Soil pollution | Risks | Tubers | Leaves | Mineralization | Lead | Villages | Carbonates | Cassiterite | Copper | Soil contamination | Soil contaminants | Cadmium | Health risks | Mine wastes | Contamination | Tailings | Zinc | Lettuces | Rhizosphere | Soils | Beans | Chalcopyrite | Chromium | Health risk assessment
Journal Article
Environment International, ISSN 0160-4120, 11/2014, Volume 72, pp. 176 - 185
Rapid development, industrialisation, and urbanisation have resulted in serious contamination of soil by metals and metalloids from anthropogenic sources in...
Human risk assessment | Contaminated soil | Metals and metalloids | Urban soils | MONITORING METALS | SEWAGE-SLUDGE | GROUNDWATER ARSENIC CONTAMINATION | MUNICIPAL WASTE INCINERATOR | SURFACE SOIL | ENVIRONMENTAL SCIENCES | INDUSTRIAL-CITY | CEMENT PLANT | HEAVY-METAL | REGULATORY GUIDANCE VALUES | SPATIAL-DISTRIBUTION | Environmental Monitoring | Risk Assessment | Humans | Soil Pollutants - chemistry | Metals - analysis | Environmental Exposure - prevention & control | Arsenic - analysis | Cities | Metalloids - analysis | Soil Pollutants - analysis | Principal Component Analysis | Chromium - analysis | Urbanization | Health | Health aspects | Risk assessment | Index Medicus
Human risk assessment | Contaminated soil | Metals and metalloids | Urban soils | MONITORING METALS | SEWAGE-SLUDGE | GROUNDWATER ARSENIC CONTAMINATION | MUNICIPAL WASTE INCINERATOR | SURFACE SOIL | ENVIRONMENTAL SCIENCES | INDUSTRIAL-CITY | CEMENT PLANT | HEAVY-METAL | REGULATORY GUIDANCE VALUES | SPATIAL-DISTRIBUTION | Environmental Monitoring | Risk Assessment | Humans | Soil Pollutants - chemistry | Metals - analysis | Environmental Exposure - prevention & control | Arsenic - analysis | Cities | Metalloids - analysis | Soil Pollutants - analysis | Principal Component Analysis | Chromium - analysis | Urbanization | Health | Health aspects | Risk assessment | Index Medicus
Journal Article
Chemosphere, ISSN 0045-6535, 03/2015, Volume 122, pp. 219 - 226
Mining operations are a potential source of metal and metalloid contamination by atmospheric particulate generated from smelting activities, as well as from...
Lead isotopes | MOUDI | Dust and aerosol | Smelting | Metal and metalloid contamination | RATIOS | AUSTRALIA | SIGNATURES | GASOLINE | ENVIRONMENTAL SCIENCES | SHANGHAI | DUST | DEPOSITS | AIRBORNE | Mining | Air Pollutants - analysis | Particulate Matter - analysis | Isotopes - analysis | Environmental Monitoring - methods | Lead - analysis | Aerosols - analysis | Arsenic - analysis | Copper | Soil Pollutants - analysis | Arizona | Air pollution | Usage | Arsenic | Copper industry | Analysis | Green technology | Metalloids | Pollution sources | Contaminants | Smelters | Atmospherics | Mines
Lead isotopes | MOUDI | Dust and aerosol | Smelting | Metal and metalloid contamination | RATIOS | AUSTRALIA | SIGNATURES | GASOLINE | ENVIRONMENTAL SCIENCES | SHANGHAI | DUST | DEPOSITS | AIRBORNE | Mining | Air Pollutants - analysis | Particulate Matter - analysis | Isotopes - analysis | Environmental Monitoring - methods | Lead - analysis | Aerosols - analysis | Arsenic - analysis | Copper | Soil Pollutants - analysis | Arizona | Air pollution | Usage | Arsenic | Copper industry | Analysis | Green technology | Metalloids | Pollution sources | Contaminants | Smelters | Atmospherics | Mines
Journal Article