Brazil’s heavy metal pollution harms humans and ecosystems
暂无分享,去创建一个
[1] J. A. Bogo Chies,et al. Pesticide Pollution in the Brazilian Pampa: Detrimental Impacts on Ecosystems and Human Health in a Neglected Biome , 2023, Pollutants.
[2] M. Crespo-López,et al. Mercury in the Amazon: The danger of a single story. , 2023, Ecotoxicology and environmental safety.
[3] C. Nobre,et al. Brazilian Biodiversity as a Source of Power and Sustainable Development: A Neglected Opportunity , 2022, Sustainability.
[4] C. Massone,et al. Human risk assessment of ash soil after 2020 wildfires in Pantanal biome (Brazil) , 2022, Air Quality, Atmosphere & Health.
[5] Fábio Kummrow,et al. Bioaccumulation, genotoxicity, and risks to native fish species from inorganic contaminants in the Pantanal Sul-Mato-Grossense, Brazil. , 2022, Environmental pollution.
[6] J. Ellwanger,et al. Protect Brazil’s overlooked Pampa biome , 2022, Science.
[7] M. Vianna,et al. Potential adverse effects of heavy metals on clinical health parameters of Caretta caretta from a nesting area affected by mining tailings in Brazil. , 2022, Journal of Trace Elements and Minerals.
[8] C. W. Nascimento,et al. Soil degradation and Cu, Cr, Ni, Pb and Zn contamination in dumpsites of humid and semiarid tropical regions in northeastern Brazil , 2022, Environmental Monitoring and Assessment.
[9] R. Luiz,et al. [Mercury exposure and anemia in children and adolescents from six riverside communities of Brazilian Amazon]. , 2022, Ciencia & saude coletiva.
[10] Gideon A. Erkenswick,et al. Amazon forests capture high levels of atmospheric mercury pollution from artisanal gold mining , 2022, Nature communications.
[11] R. Menezes,et al. Pernambuco Caatinga: relevance of soil chemical composition for biodiversity conservation , 2022, Chemistry and Ecology.
[12] A. Gioda,et al. Children Environmentally Exposed to Agrochemicals in Rural Areas Present Changes in Oxidative Status and DNA Damage , 2021, Biological Trace Element Research.
[13] D. Ciampi de Andrade,et al. Neurological Impacts of Chronic Methylmercury Exposure in Munduruku Indigenous Adults: Somatosensory, Motor, and Cognitive Abnormalities , 2021, International journal of environmental research and public health.
[14] D. Ciampi de Andrade,et al. Mercury Exposure in Munduruku Indigenous Communities from Brazilian Amazon: Methodological Background and an Overview of the Principal Results , 2021, International journal of environmental research and public health.
[15] A. T. Paulino,et al. Potentially toxic metal environmental pollution in sediments of a model hydroelectric plant water reservoir in Brazil , 2021, Environmental Earth Sciences.
[16] C. G. Tornquist,et al. Understanding Brazil’s catastrophic fires: Causes, consequences and policy needed to prevent future tragedies , 2021, Perspectives in Ecology and Conservation.
[17] M. Crespo-López,et al. Human neurotoxicity of mercury in the Amazon: A scoping review with insights and critical considerations. , 2021, Ecotoxicology and environmental safety.
[18] Cácio Luiz Boechat,et al. Assessing the Distribution and Concentration of Heavy Metals in Soils of an Agricultural Frontier in the Brazilian Cerrado , 2020, Water, Air, & Soil Pollution.
[19] F. A. de Oliveira Camargo,et al. The Urban Pressure Over the Sediment Contamination in a Southern Brazil Metropolis: the Case of Diluvio Stream , 2020, Water, Air, & Soil Pollution.
[20] L. Mekuto,et al. Toxic Metal Implications on Agricultural Soils, Plants, Animals, Aquatic life and Human Health , 2020, International journal of environmental research and public health.
[21] A. Hursthouse,et al. It’s Time to Replace the Term “Heavy Metals” with “Potentially Toxic Elements” When Reporting Environmental Research , 2019, International journal of environmental research and public health.
[22] J. Bundschuh,et al. Arsenic enrichment in sediments and beaches of Brazilian coastal waters: A review. , 2019, The Science of the total environment.
[23] A. Bianchini,et al. High arsenic and low lead concentrations in fish and reptiles from Taim wetlands, a Ramsar site in southern Brazil. , 2019, The Science of the total environment.
[24] S. Hacon,et al. Human Mercury Exposure in Yanomami Indigenous Villages from the Brazilian Amazon , 2018, International journal of environmental research and public health.
[25] Nathália Santos Serrão de Castro,et al. Hair as a Biomarker of Long Term Mercury Exposure in Brazilian Amazon: A Systematic Review , 2018, International journal of environmental research and public health.
[26] A. W. Haron,et al. The detrimental effects of lead on human and animal health , 2016, Veterinary world.
[27] J. S. Govone,et al. Contamination of wetland soils and floodplain sediments from agricultural activities in the Cerrado Biome (State of Minas Gerais, Brazil) , 2015 .
[28] Blessy B. Mathew,et al. Toxicity, mechanism and health effects of some heavy metals , 2014, Interdisciplinary toxicology.
[29] J. A. Baptista Neto,et al. Heavy metal accumulation in mangrove sediments surrounding a large waste reservoir of a local metallurgical plant, Sepetiba Bay, SE, Brazil , 2013, Environmental Earth Sciences.
[30] J. Dias,et al. Assessment of heavy metal content and DNA damage in Hypsiboas faber (anuran amphibian) in coal open-casting mine. , 2013, Environmental toxicology and pharmacology.
[31] S. A. Talamoni,et al. Heavy Metals in Hair of Wild Canids from the Brazilian Cerrado , 2012, Biological Trace Element Research.
[32] A. Ferreira. Assessment of heavy metals in Egretta thula: case study: Coroa Grande mangrove, Sepetiba Bay, Rio de Janeiro, Brazil. , 2011, Brazilian journal of biology = Revista brasleira de biologia.
[33] F. Carvalho,et al. Heavy metals and DNA damage in blood cells of insectivore bats in coal mining areas of Catarinense coal basin, Brazil. , 2010, Environmental research.
[34] P. H. Ott,et al. Levels of Cadmium, Mercury, and Lead in Magellanic Penguins (Spheniscus magellanicus) Stranded on the Brazilian Coast , 2010, Archives of environmental contamination and toxicology.
[35] Bernard J. Smith,et al. The contribution of heavy metal pollution derived from highway runoff to Guanabara Bay sediments--Rio de Janeiro/Brazil. , 2007, Anais da Academia Brasileira de Ciencias.
[36] Tadashi Ninomiya,et al. Minamata disease revisited: An update on the acute and chronic manifestations of methyl mercury poisoning , 2007, Journal of the Neurological Sciences.
[37] M. A. R. Veado,et al. Metal Pollution in the Environment of Minas Gerais State – Brazil , 2006, Environmental monitoring and assessment.
[38] T. Leipe,et al. Spatial distribution of heavy metals in surficial sediments from Guanabara Bay: Rio de Janeiro, Brazil , 2006 .
[39] F. G. Araújo,et al. Evaluation of heavy metals in fish of the Sepetiba and Ilha Grande Bays, Rio de Janeiro, Brazil. , 2002, Environmental research.
[40] K. Eto. Minamata disease , 2000, Neuropathology : official journal of the Japanese Society of Neuropathology.
[41] C. M. D. Rocha,et al. Metal contamination in omnivores, carnivores and detritivores fish along the Tramandaí River Basin, RS, Brazil , 2021 .
[42] T. Corvelo,et al. Mercury exposure of children living in Amazonian villages: influence of geographical location where they lived during prenatal and postnatal development. , 2019, Anais da Academia Brasileira de Ciencias.
[43] A. Figueiredo,et al. Metals in playground soils of São Paulo city, Brazil , 2011 .
[44] D. Mergler,et al. Human mercury exposure and adverse health effects in the Amazon: a review. , 2008, Cadernos de saude publica.