Comprehensive micropollutant characterization of wastewater during Covid-19 crisis in 2020: Suspect screening and environmental risk prioritization strategy
暂无分享,去创建一个
O. Zuloaga | G. Orive | A. Prieto | M. Olivares | M. Irazola | U. Lertxundi | N. Lopez-Herguedas | I. Alvarez-Mora
[1] Vinicius Roveri,et al. In silico prediction of persistent, mobile, and toxic pharmaceuticals (PMT): a case study in São Paulo Metropolitan Region, Brazil , 2022, Computational Toxicology.
[2] C. Mota,et al. Quantification of SARS-CoV-2 in wastewater samples from hospitals treating COVID-19 patients during the first wave of the pandemic in Brazil , 2022, Science of The Total Environment.
[3] V. Bolliet,et al. Prioritization based on risk assessment to study the bioconcentration and biotransformation of pharmaceuticals in glass eels (Anguilla anguilla) from the Adour estuary (Basque Country, France). , 2022, Environmental pollution.
[4] I. Pugajeva,et al. Qualitative fingerprinting of psychoactive pharmaceuticals, illicit drugs, and related human metabolites in wastewater: A year-long study from Riga, Latvia , 2022, Journal of environmental chemical engineering.
[5] D. Aga,et al. Complementing RNA Detection with Pharmaceutical Monitoring for Early Warning of Viral Outbreaks through Wastewater-Based Epidemiology , 2022, Environmental Science & Technology Letters.
[6] Miguel M Santos,et al. Use of illicit drugs, alcohol and tobacco in Spain and Portugal during the COVID-19 crisis in 2020 as measured by wastewater-based epidemiology , 2022, Science of The Total Environment.
[7] L. Posthuma,et al. A risk based assessment approach for chemical mixtures from wastewater treatment plant effluents. , 2022, Environment international.
[8] C. Roscioli,et al. Suspect screening of wastewaters to trace anti-COVID-19 drugs: Potential adverse effects on aquatic environment , 2022, Science of The Total Environment.
[9] G. Orive,et al. Drugs used during the COVID-19 first wave in Vitoria-Gasteiz (Spain) and their presence in the environment , 2022, Science of The Total Environment.
[10] S. Waara,et al. Risk-based screening for prioritisation of organic micropollutants in Swedish freshwater. , 2022, Journal of hazardous materials.
[11] B. Eitzer,et al. Changes in Sewage Sludge Chemical Signatures During a COVID‐19 Community Lockdown, Part 1: Traffic, Drugs, Mental Health, and Disinfectants , 2021, Environmental toxicology and chemistry.
[12] A. Rico,et al. Characterization of the contamination fingerprint of wastewater treatment plant effluents in the Henares River Basin (central Spain) based on target and suspect screening analysis. , 2021, The Science of the total environment.
[13] Nikiforos A Alygizakis,et al. Change in the chemical content of untreated wastewater of Athens, Greece under COVID-19 pandemic , 2021, Science of The Total Environment.
[14] Nikiforos A Alygizakis,et al. Patterns of pharmaceuticals use during the first wave of COVID-19 pandemic in Athens, Greece as revealed by wastewater-based epidemiology , 2021, Science of The Total Environment.
[15] B González-Gaya,et al. Suspect screening workflow comparison for the analysis of organic xenobiotics in environmental water samples. , 2021, Chemosphere.
[16] F. Hernández,et al. The embodiment of wastewater data for the estimation of illicit drug consumption in Spain. , 2021, The Science of the total environment.
[17] R. Bivins. ‘Suspect’ screening , 2021 .
[18] F. Hernández,et al. Changes in drug use in European cities during early COVID-19 lockdowns – A snapshot from wastewater analysis , 2021, Environment International.
[19] H. Godini,et al. Water and wastewater as potential sources of SARS-CoV-2 transmission: a systematic review , 2021, Reviews on environmental health.
[20] Quentin J. Leclerc,et al. Antimicrobial resistance and COVID-19: Intersections and implications , 2021, eLife.
[21] Manish Kumar,et al. Predicted occurrence, ecotoxicological risk and environmentally acquired resistance of antiviral drugs associated with COVID-19 in environmental waters , 2021, Science of The Total Environment.
[22] A. Goonetilleke,et al. Impacts of COVID-19 pandemic on the wastewater pathway into surface water: A review , 2021, Science of The Total Environment.
[23] A. Mahvi,et al. Monitoring of caffeine concentration in infused tea, human urine, domestic wastewater and different water resources in southeast of Iran- caffeine an alternative indicator for contamination of human origin. , 2021, Journal of environmental management.
[24] H. Oberacher,et al. Monitoring drug consumption in Innsbruck during coronavirus disease 2019 (COVID-19) lockdown by wastewater analysis , 2020, Science of The Total Environment.
[25] D. Larsen,et al. High-throughput wastewater analysis for substance use assessment in central New York during the COVID-19 pandemic. , 2020, Environmental science. Processes & impacts.
[26] Á. Borja,et al. Contaminants of emerging concern in the Basque coast (N Spain): Occurrence and risk assessment for a better monitoring and management decisions. , 2020, The Science of the total environment.
[27] S. Rodríguez-Mozaz,et al. Extended suspect screening to identify contaminants of emerging concern in riverine and coastal ecosystems and assessment of environmental risks. , 2020, Journal of hazardous materials.
[28] F. Lai,et al. Occurrence and removal of chemicals of emerging concern in wastewater treatment plants and their impact on receiving water systems. , 2020, The Science of the total environment.
[29] Deblina Roy,et al. Impact of COVID-19 and lockdown on mental health of children and adolescents: A narrative review with recommendations , 2020, Psychiatry Research.
[30] M. Ibáñez,et al. Occurrence and ecological risks of pharmaceuticals in a Mediterranean river in Eastern Spain. , 2020, Environment international.
[31] K. Hanna,et al. Environmental side effects of the injudicious use of antimicrobials in the era of COVID-19 , 2020, Science of The Total Environment.
[32] S. Shakir,et al. Lopinavir-Ritonavir in the Treatment of COVID-19: A Dynamic Systematic Benefit-Risk Assessment , 2020, Drug Safety.
[33] F. Hernández,et al. First nation-wide estimation of tobacco consumption in Spain using wastewater-based epidemiology. , 2020, The Science of the total environment.
[34] A. Guerrero,et al. Development of bioplastics from a microalgae consortium from wastewater. , 2020, Journal of environmental management.
[35] S. Shakir,et al. Lopinavir-Ritonavir in treatment of COVID-19: A dynamic systematic benefit-risk assessment , 2020, medRxiv.
[36] D. Aga,et al. Retrospective analysis of the global antibiotic residues that exceed the predicted no effect concentration for antimicrobial resistance in various environmental matrices. , 2020, Environment international.
[37] G. Roviello,et al. SARS CoV-2: Recent Reports on Antiviral Therapies Based on Lopinavir/Ritonavir, Darunavir/Umifenovir, Hydroxychloroquine, Remdesivir, Favipiravir and Other Drugs for the Treatment of the New Coronavirus. , 2020, Current medicinal chemistry.
[38] S. Rhiem,et al. Mixture toxicity in the Erft River: assessment of ecological risks and toxicity drivers , 2020, Environmental Sciences Europe.
[39] G. Rubin,et al. The psychological impact of quarantine and how to reduce it: rapid review of the evidence , 2020, The Lancet.
[40] E. Heath,et al. Antiviral drugs in aquatic environment and wastewater treatment plants: A review on occurrence, fate, removal and ecotoxicity. , 2020, The Science of the total environment.
[41] T. Schultz,et al. Mechanistic relationship between biodegradation and bioaccumulation. Practical outcomes. , 2019, Regulatory toxicology and pharmacology : RTP.
[42] D. Barceló,et al. Pharmaceuticals as chemical markers of wastewater contamination in the vulnerable area of the Ebro Delta (Spain). , 2019, The Science of the total environment.
[43] M. Gros,et al. Critical review: Grand challenges in assessing the adverse effects of contaminants of emerging concern on aquatic food webs , 2018, Environmental toxicology and chemistry.
[44] E. Papa,et al. High-throughput evaluation of organic contaminant removal efficiency in a wastewater treatment plant using direct injection UHPLC-Orbitrap-MS/MS. , 2018, Environmental science. Processes & impacts.
[45] Antony J. Williams,et al. OPERA models for predicting physicochemical properties and environmental fate endpoints , 2018, Journal of Cheminformatics.
[46] M. L. Martín-Díaz,et al. Environmental risk assessment of effluents as a whole emerging contaminant: Efficiency of alternative tertiary treatments for wastewater depuration. , 2017, Water research.
[47] S. Rodríguez-Mozaz,et al. Screening and prioritization of micropollutants in wastewaters from on-site sewage treatment facilities. , 2017, Journal of hazardous materials.
[48] L. Nováková,et al. Simplified solid-phase extraction procedure combined with liquid chromatography tandem-mass spectrometry for multiresidue assessment of pharmaceutical compounds in environmental liquid samples. , 2017, Journal of chromatography. A.
[49] S. Lacorte,et al. Determination of cytostatic drugs in Besòs River (NE Spain) and comparison with predicted environmental concentrations , 2017, Environmental Science and Pollution Research.
[50] C. Fernández-López,et al. Comparison of the removal efficiencies of selected pharmaceuticals in wastewater treatment plants in the region of Murcia, Spain , 2016 .
[51] D. Andersson,et al. Selection of a Multidrug Resistance Plasmid by Sublethal Levels of Antibiotics and Heavy Metals , 2014, mBio.
[52] Emma L. Schymanski,et al. Identifying small molecules via high resolution mass spectrometry: communicating confidence. , 2014, Environmental science & technology.
[53] Richard J. Williams,et al. Worldwide estimation of river concentrations of any chemical originating from sewage-treatment plants using dilution factors , 2013, Environmental toxicology and chemistry.
[54] D. Barceló,et al. Occurrence and behavior of pesticides in wastewater treatment plants and their environmental impact. , 2013, The Science of the total environment.
[55] J. Santos,et al. Occurrence of pharmaceutical compounds in wastewater and sludge from wastewater treatment plants: removal and ecotoxicological impact of wastewater discharges and sludge disposal. , 2012, Journal of hazardous materials.
[56] K. L. Le Corre,et al. Consumption-based approach for assessing the contribution of hospitals towards the load of pharmaceutical residues in municipal wastewater. , 2012, Environment international.
[57] D. Andersson,et al. Evolution of antibiotic resistance at non-lethal drug concentrations. , 2012, Drug resistance updates : reviews and commentaries in antimicrobial and anticancer chemotherapy.
[58] Kyungho Choi,et al. Pharmaceuticals and Personal Care Products in the Environment: What Are the Big Questions? , 2012, Environmental health perspectives.
[59] Thomas Backhaus,et al. Predictive environmental risk assessment of chemical mixtures: a conceptual framework. , 2012, Environmental science & technology.
[60] Heinz Singer,et al. Hospital wastewater treatment by membrane bioreactor: performance and efficiency for organic micropollutant elimination. , 2012, Environmental science & technology.
[61] T. Jones-Lepp,et al. Pharmaceuticals and personal care products in biosolids/sewage sludge: the interface between analytical chemistry and regulation , 2007, Analytical and bioanalytical chemistry.
[62] Ralph Kühne,et al. Acute to chronic ratios in aquatic toxicity—variation across trophic levels and relationship with chemical structure , 2006, Environmental toxicology and chemistry.
[63] J. Weaver. Oral Antidiabetic Agents , 1959, British medical journal.
[64] Gomez Cortes Livia,et al. Selection of substances for the 3rd Watch List under the Water Framework Directive , 2020 .
[65] Johan Bengtsson-Palme,et al. Concentrations of antibiotics predicted to select for resistant bacteria: Proposed limits for environmental regulation. , 2016, Environment international.
[66] Emma L. Schymanski,et al. Nontarget Analysis of Environmental Samples Based on Liquid Chromatography Coupled to High Resolution Mass Spectrometry (LC-HRMS) , 2016 .
[67] D. Barceló,et al. Occurrence, partition and removal of pharmaceuticals in sewage water and sludge during wastewater treatment. , 2011, Water research.
[68] João Carlos Mota. [At risk]. , 2007, Revista portuguesa de cirurgia cardio-toracica e vascular : orgao oficial da Sociedade Portuguesa de Cirurgia Cardio-Toracica e Vascular.
[69] P. Ringwald,et al. Antimicrobial resistance. , 2001, Emerging infectious diseases.