Distribution and health risk assessment of potentially toxic elements in an abandoned mining area in the southeastern region of China
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[1] Xianzheng Guo,et al. Distribution of Co, Se, Cd, In, Re and other critical metals in sulfide ores from a porphyry-skarn system: A case study of Chengmenshan Cu deposit, Jiangxi, China , 2023, Ore Geology Reviews.
[2] Hesham MH Zakaly,et al. Assessment of heavy metals contamination of sediments and surface waters of Bitter lake, Suez Canal, Egypt: Ecological risks and human health. , 2023, Marine pollution bulletin.
[3] Chunchao Zhang,et al. Characterization of drinking groundwater quality and assessment of human health risk in Xin’an spring basin, a typical mining and karst area of the northern China , 2023, Environmental Earth Sciences.
[4] Quanying Wang,et al. Levels of heavy metal in soil and vegetable and associated health risk in peri-urban areas across China. , 2023, Ecotoxicology and environmental safety.
[5] C. Aralu,et al. Potentially toxic element contamination and risk assessment of borehole water within a landfill in the Nnewi metropolis , 2023, Health and Environment.
[6] A. L. Muccillo-Baisch,et al. Human health risk assessment of air pollutants in the largest coal mining area in Brazil , 2023, Environmental Science and Pollution Research.
[7] O. Díaz Rizo,et al. Heavy metals concentration, pollution indexes, and health risk assessment of urban road dust in the historical center of Havana, Cuba , 2023, Environmental Monitoring and Assessment.
[8] H. O. Abugu,et al. Preliminary investigation of pollution, impact on milk quality and health risk of potentially toxic elements in raw milk from free-ranging cattle bred in Northwestern Nigeria , 2023, International Journal of Environmental Analytical Chemistry.
[9] Guannan Liu,et al. Distribution and Source Apportionment of Heavy Metals in Soil around Dexing Copper Mine in Jiangxi Province, China , 2023, Sustainability.
[10] V. Chrastný,et al. Road-side dust from central Jakarta, Indonesia: Assessment of metal(loid) content, mineralogy, and bioaccessibility , 2022, Environmental Technology & Innovation.
[11] Qingyu Guan,et al. A Monte Carlo simulation-based health risk assessment of heavy metals in soils of an oasis agricultural region in northwest China. , 2022, The Science of the total environment.
[12] H. O. Abugu,et al. A multi-criteria approach to drinking and irrigation water assessment of spring water in Igbo-Etiti, Nigeria , 2022, Applied Water Science.
[13] K. Schlauch,et al. Naturally occurring metals in unregulated domestic Wells in Nevada, USA. , 2022, The Science of the total environment.
[14] Z. Sultana,et al. Health risk assessment associated with heavy metals through fractioned dust from coal and chromite mines in Pakistan , 2022, Environmental Geochemistry and Health.
[15] H. Yang,et al. Heavy Metals in the Mainstream Water of the Yangtze River Downstream: Distribution, Sources and Health Risk Assessment , 2022, International journal of environmental research and public health.
[16] F. Molina-Freaner,et al. Distribution of heavy metals polluting the soil near an abandoned mine in Northwestern Mexico , 2022, Environmental Earth Sciences.
[17] Ishwar Chandra Yadav,et al. Pollution level and health risk assessment of heavy metals in ambient air and surface dust from Saudi Arabia: a systematic review and meta-analysis , 2022, Air Quality, Atmosphere & Health.
[18] Yunhui Zhang,et al. Soil contamination with cadmium and potential risk around various mines in China during 2000-2020. , 2022, Journal of environmental management.
[19] Peng-Cheng Luo,et al. Distributions of Heavy Metals in Rice and Corn and Their Health Risk Assessment in Guizhou Province , 2022, Bulletin of Environmental Contamination and Toxicology.
[20] H. Wang,et al. Seasonal pollution and risk assessment of heavy metals in atmospheric dust from coal mining area , 2022, International Journal of Environmental Science and Technology.
[21] Yingze Tian,et al. Potential Risks of PM2.5-Bound Polycyclic Aromatic Hydrocarbons and Heavy Metals from Inland and Marine Directions for a Marine Background Site in North China , 2022, Toxics.
[22] S. Praveena,et al. Heavy Metal Contamination in Oryza sativa L. at the Eastern Region of Malaysia and Its Risk Assessment , 2022, International journal of environmental research and public health.
[23] S. Giri,et al. Evaluation of metal contamination, flux and the associated human health risk from atmospheric dustfall in metal mining areas of Southern Jharkhand, India , 2021, Environmental Science and Pollution Research.
[24] Yu Yan,et al. Incorporating bioaccessibility and source apportionment into human health risk assessment of heavy metals in urban dust of Xiamen, China. , 2021, Ecotoxicology and environmental safety.
[25] P. Ning,et al. Concentrations, Source Characteristics, and Health Risk Assessment of Toxic Heavy Metals in PM2.5 in a Plateau City (Kunming) in Southwest China , 2021, International journal of environmental research and public health.
[26] A. Hursthouse,et al. Source identification and groundwater health risk assessment of PTEs in the stormwater runoff in an abandoned mining area , 2021, Environmental Geochemistry and Health.
[27] D. Witkowska,et al. Heavy Metals and Human Health: Possible Exposure Pathways and the Competition for Protein Binding Sites , 2021, Molecules.
[28] Yang Lin,et al. Ecological Restoration of Wetland Polluted by Heavy Metals in Xiangtan Manganese Mine Area , 2021, Processes.
[29] Lingqing Wang,et al. Concentrations, spatial distribution, sources and environmental health risks of potentially toxic elements in urban road dust across China. , 2021, The Science of the total environment.
[30] R. Tyszka,et al. Experimental simulations of ZnPb slag weathering and its impact on the environment: Effects of acid rain, soil solution, and microbial activity , 2021 .
[31] Xi Zhang,et al. Risk assessment and management of PM2.5-bound heavy metals in the urban area of Kitakyushu, Japan. , 2021, The Science of the total environment.
[32] H. Abugu,et al. Potential Toxic Elements Load and their Health Risk Assessment in Vegetables Grown in Nsukka Area of South-Eastern Nigeria , 2021, Toxicology International.
[33] O. Morakinyo,et al. Health Risk Analysis of Elemental Components of an Industrially Emitted Respirable Particulate Matter in an Urban Area , 2021, International journal of environmental research and public health.
[34] F. Bautista,et al. Heavy metal pollution of street dust in the largest city of Mexico, sources and health risk assessment , 2021, Environmental Monitoring and Assessment.
[35] M. Jain,et al. Assessment of Pollution and Health Risks of Heavy Metals in Particulate Matter and Road Dust Along the Road Network of Dhanbad, India , 2021, Journal of health & pollution.
[36] K. Akpomie,et al. Geochemical and health risk assessment of heavy metals concentration in soils around Oke-Ere mining area in Kogi State, Nigeria , 2021, International Journal of Environmental Analytical Chemistry.
[37] Beihai Zhou,et al. Bibliometric overview of research trends on heavy metal health risks and impacts in 1989–2018 , 2020 .
[38] Suzhen Cao,et al. Health risk assessment of total exposure from cadmium in South China. , 2020, Chemosphere.
[39] Zhenglei Li,et al. Characteristics, source apportionment and health risk assessment of heavy metals exposure via household dust from six cities in China. , 2020, The Science of the total environment.
[40] C. Kukusamude,et al. Heavy metals and probabilistic risk assessment via rice consumption in Thailand. , 2020, Food chemistry.
[41] H. O. Abugu,et al. Ecological and potential health risk assessment of heavy metals in soils and food crops grown in abandoned urban open waste dumpsite , 2020, Journal of Environmental Health Science and Engineering.
[42] M. Cave,et al. Incorporating oral bioaccessibility into human health risk assessment due to potentially toxic elements in extractive waste and contaminated soils from an abandoned mine site. , 2020, Chemosphere.
[43] H. Qian,et al. Spatial characteristics of heavy metal contamination and potential human health risk assessment of urban soils: A case study from an urban region of South India. , 2020, Ecotoxicology and environmental safety.
[44] G. Qian,et al. Evaluation for the heavy metal risk in fine particulate matter from the perspective of urban energy and industrial structure in China: A meta-analysis , 2020 .
[45] I. Nabipour,et al. Levels and ecological and health risk assessment of PM2.5-bound heavy metals in the northern part of the Persian Gulf , 2019, Environmental Science and Pollution Research.
[46] Pinghui Liu,et al. Health risk assessment and spatial distribution characteristics of heavy metal pollution in rice samples from a surrounding hydrometallurgy plant area in No. 721 uranium mining, East China , 2019 .
[47] C. Yuan,et al. Speciation and bioaccessibility of heavy metals in PM2.5 in Baoding city, China. , 2019, Environmental pollution.
[48] F. Coulon,et al. Linking oral bioaccessibility and solid phase distribution of potentially toxic elements in extractive waste and soil from an abandoned mine site: Case study in Campello Monti, NW Italy. , 2019, The Science of the total environment.
[49] F. Wang,et al. Heavy metal characteristics and health risk assessment of PM2.5 in three residential homes during winter in Nanjing, China , 2018, Building and Environment.
[50] Penradee Chanpiwat,et al. Analysis and probabilistic risk assessment of bioaccessible arsenic in polished and husked jasmine rice sold in Bangkok. , 2018, Chemosphere.
[51] L. Papadopoulou,et al. Characterization and geochemistry of technogenic magnetic particles (TMPs) in contaminated industrial soils: Assessing health risk via ingestion , 2017 .
[52] Tahir Husain,et al. Heavy metals in drinking water: Occurrences, implications, and future needs in developing countries. , 2016, The Science of the total environment.
[53] S. Kongsri,et al. Instrumental Neutron Activation Analysis of Selected Elements in Thai Jasmine Rice , 2016 .
[54] Lingqing Wang,et al. Contamination and health risk assessment of heavy metals in road dust in Bayan Obo Mining Region in Inner Mongolia, North China , 2015, Journal of Geographical Sciences.
[55] A. Piazzalunga,et al. High secondary aerosol contribution to particulate pollution during haze events in China , 2014, Nature.
[56] F. Solmon,et al. Health hazard prospecting by modeling wind transfer of metal-bearing dust from mining waste dumps: application to Jebel Ressas Pb–Zn–Cd abandoned mining site (Tunisia) , 2014, Environmental Geochemistry and Health.
[57] M. L. Pignata,et al. Heavy metals and trace elements in atmospheric fall-out: their relationship with topsoil and wheat element composition. , 2012, Journal of hazardous materials.
[58] E. De Miguel,et al. Geochemistry and risk assessment of street dust in Luanda, Angola: A tropical urban environment , 2005 .
[59] L. Håkanson. An ecological risk index for aquatic pollution control.a sedimentological approach , 1980 .