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Sergiy Medinets

Biographic Data

ID7993167
NAMESergiy Medinets
GIVEN NAMESSergiy
FAMILY NAMEMedinets
SIGNATUREMEDINETS S
AFFILIATIONSAarhus University
ORCID0000-0001-5980-1054
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS0
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2016
LATEST PUBLICATION YEAR2024
H-INDEX0
  • Atmospheric deposition of nitrogen and sulphur in the Dniester catchment: The impact of war at a glance

    Sergiy Medinets, В І Мединец et al.•ARTICLE•International Journal of…•2024

    Burning of fossil fuels, application of fertilisers, and livestock farming have greatly increased emissions of reactive nitrogen (N). The consequent increase in atmospheric deposition of N compounds has compromised air, soil and water quality, ecosystems, and human health and wellbeing. Sulphate aerosols also affect climate dynamics by scattering solar radiation, leading to surface cooling and, indirectly, cloud formation and precipitation. Durin…

  • The nitrogen footprint of Ukraine: Why personal consumption matters

    Open Access•Sergiy Medinets, Allison M Leach et al.•ARTICLE•Environmental Research Letters•2024

    Unintended reactive nitrogen (N) losses from agriculture, energy and transportation pose significant environmental hazards, including eutrophication, acidification, water and air pollution, biodiversity loss, human health risks and climate change. The concept of a nitrogen footprint (NF) emerges as a pivotal metric, reflecting potential N losses in the entire production-consumption chain of goods and services used by an individual within a define…

  • Impact of climate change on soil nitric oxide and nitrous oxide emissions from typical land uses in Scotland

    Open Access•Sergiy Medinets, Stella White et al.•ARTICLE•Environmental Research Letters•2021

    Soil emissions of NO and N 2 O from typical land uses across Lowland and Highland Scotland were simulated under climate change conditions, during a short-term laboratory study. All locations investigated were significant sources of N 2 O (range: 157–277 μ g N 2 O–N m −2 h −1 ) and low-to-moderate sources of NO emissions (range: 0.4–30.5 μ g NO–N m −2 h −1 ), with a general tendency to decrease with altitude and increase with fertiliser and atmosp…

  • Assessing the contribution of soil NOx emissions to European atmospheric pollution

    Open Access•Ute Skiba, Sergiy Medinets et al.•ARTICLE•Environmental Research Letters•2020

    Atmospheric NO x concentrations are declining steadily due to successful abatement strategies predominantly targeting combustion sources. On the European continent, total NO x emissions fell by 55% between 1990 and 2017, but only modest reductions were achieved from the agricultural sector; with 7.8% from 20 Eastern European countries and 19.1% from 22 Western European countries. Consequently, the share of agricultural NO x emissions for these 42…

  • Cold season soil NO fluxes from a temperate forest: Drivers and contribution to annual budgets

    Open Access•Sergiy Medinets, Rainer Gasché et al.•ARTICLE•Environmental Research Letters•2016

    Soils, and here specifically acidic forest soils exposed to high rates of atmospheric nitrogen deposition, are a significant source for the secondary greenhouse gas nitric oxide (NO). However, as flux estimates are mainly based on measurements during the vegetation period, annual NO emissions budgets may hold uncertainty as cold season soil NO fluxes have rarely been quantified. Here we analyzed cold season soil NO fluxes and potential environmen…

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  • Cold season soil NO fluxes from a temperate forest: Drivers and contribution to annual budgets

    Open Access•Sergiy Medinets, Rainer Gasché et al.•ARTICLE•Environmental Research Letters•2016

    Soils, and here specifically acidic forest soils exposed to high rates of atmospheric nitrogen deposition, are a significant source for the secondary greenhouse gas nitric oxide (NO). However, as flux estimates are mainly based on measurements during the vegetation period, annual NO emissions budgets may hold uncertainty as cold season soil NO fluxes have rarely been quantified. Here we analyzed cold season soil NO fluxes and potential environmen…

  • Assessing the contribution of soil NOx emissions to European atmospheric pollution

    Open Access•Ute Skiba, Sergiy Medinets et al.•ARTICLE•Environmental Research Letters•2020

    Atmospheric NO x concentrations are declining steadily due to successful abatement strategies predominantly targeting combustion sources. On the European continent, total NO x emissions fell by 55% between 1990 and 2017, but only modest reductions were achieved from the agricultural sector; with 7.8% from 20 Eastern European countries and 19.1% from 22 Western European countries. Consequently, the share of agricultural NO x emissions for these 42…

  • Impact of climate change on soil nitric oxide and nitrous oxide emissions from typical land uses in Scotland

    Open Access•Sergiy Medinets, Stella White et al.•ARTICLE•Environmental Research Letters•2021

    Soil emissions of NO and N 2 O from typical land uses across Lowland and Highland Scotland were simulated under climate change conditions, during a short-term laboratory study. All locations investigated were significant sources of N 2 O (range: 157–277 μ g N 2 O–N m −2 h −1 ) and low-to-moderate sources of NO emissions (range: 0.4–30.5 μ g NO–N m −2 h −1 ), with a general tendency to decrease with altitude and increase with fertiliser and atmosp…

  • Atmospheric deposition of nitrogen and sulphur in the Dniester catchment: The impact of war at a glance

    Sergiy Medinets, В І Мединец et al.•ARTICLE•International Journal of…•2024

    Burning of fossil fuels, application of fertilisers, and livestock farming have greatly increased emissions of reactive nitrogen (N). The consequent increase in atmospheric deposition of N compounds has compromised air, soil and water quality, ecosystems, and human health and wellbeing. Sulphate aerosols also affect climate dynamics by scattering solar radiation, leading to surface cooling and, indirectly, cloud formation and precipitation. Durin…

  • The nitrogen footprint of Ukraine: Why personal consumption matters

    Open Access•Sergiy Medinets, Allison M Leach et al.•ARTICLE•Environmental Research Letters•2024

    Unintended reactive nitrogen (N) losses from agriculture, energy and transportation pose significant environmental hazards, including eutrophication, acidification, water and air pollution, biodiversity loss, human health risks and climate change. The concept of a nitrogen footprint (NF) emerges as a pivotal metric, reflecting potential N losses in the entire production-consumption chain of goods and services used by an individual within a define…

Environmental Science (5 works) · Atmospheric sciences (3 works) · Chemistry (3 works) · Ecology (3 works) · Soil Carbon and Nitrogen Dynamics (3 works) · Agronomy (2 works) · Biology (2 works) · Geology (2 works) · Hydrology (agriculture (2 works) · Nitrogen (2 works)

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