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E C Rowe

Biographic Data

ID2552854
NAMEE C Rowe
GIVEN NAMESE C
FAMILY NAMERowe
SIGNATUREROWE E C
AFFILIATIONSUK Centre for Ecology & Hydrology
ORCID0000-0003-4784-7236
VERIFIEDYes
TOTAL WORKS4
TOTAL CITATIONS1
AUTHOR COUNT4
EDITOR COUNT0
FIRST PUBLICATION YEAR1935
LATEST PUBLICATION YEAR2022
H-INDEX1
  • Terrestrial carbon sequestration under future climate, nutrient and land use change and management scenarios: A national-scale UK case study

    Open Access•Dmitry Yumashev, Victoria Janes‐bassett et al.•ARTICLE•Environmental Research Letters•2022

    Carbon sequestration (C seq ) in soils and plant biomass is viewed as an important means of mitigating climate change. Recent global assessments have estimated considerable potential for terrestrial C seq , but generally lack sensitivity to climate warming, nutrient limitations and perspective on local land use. These are important factors since higher temperatures can accelerate the decomposition of soil organic matter, nutrient availability aff…

  • Changes in carbon storage since the pre-industrial era: A national scale analysis

    Open Access•Victoria Janes-Bassett, Victoria Janes‐bassett et al.•ARTICLE•Anthropocene•2021•Cited by: 1•References: 37

    Carbon stores in the terrestrial biosphere globally represent over 50% of present-day organic carbon reservoirs and have significantly altered over the last three centuries owing to anthropogenic disturbances. Conversion of natural land to agricultural uses often results in a loss of soil carbon, whilst atmospheric deposition of pollutants such as nitrogen has increased carbon storage in both soil and biomass. Terrestrial carbon storage underpins…

  • Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests

    Open Access•Thomas Dirnböck, Gisela Pröll et al.•ARTICLE•Environmental Research Letters•2018

    Atmospheric nitrogen (N) pollution is considered responsible for a substantial decline in plant species richness and for altered community structures in terrestrial habitats worldwide. Nitrogen affects habitats through direct toxicity, soil acidification, and in particular by favoring fast-growing species. Pressure from N pollution is decreasing in some areas. In Europe (EU28), overall emissions of NO x declined by more than 50% while NH 3 declin…

  • A case of educational futility

    E C Rowe•ARTICLE•Journal of Abnormal & Social…•1935

  • Changes in carbon storage since the pre-industrial era: A national scale analysis

    Open Access•Victoria Janes-Bassett, Victoria Janes‐bassett et al.•ARTICLE•Anthropocene•2021•Cited by: 1•References: 37

    Carbon stores in the terrestrial biosphere globally represent over 50% of present-day organic carbon reservoirs and have significantly altered over the last three centuries owing to anthropogenic disturbances. Conversion of natural land to agricultural uses often results in a loss of soil carbon, whilst atmospheric deposition of pollutants such as nitrogen has increased carbon storage in both soil and biomass. Terrestrial carbon storage underpins…

  • A case of educational futility

    E C Rowe•ARTICLE•Journal of Abnormal & Social…•1935

  • Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests

    Open Access•Thomas Dirnböck, Gisela Pröll et al.•ARTICLE•Environmental Research Letters•2018

    Atmospheric nitrogen (N) pollution is considered responsible for a substantial decline in plant species richness and for altered community structures in terrestrial habitats worldwide. Nitrogen affects habitats through direct toxicity, soil acidification, and in particular by favoring fast-growing species. Pressure from N pollution is decreasing in some areas. In Europe (EU28), overall emissions of NO x declined by more than 50% while NH 3 declin…

  • Changes in carbon storage since the pre-industrial era: A national scale analysis

    Open Access•Victoria Janes-Bassett, Victoria Janes‐bassett et al.•ARTICLE•Anthropocene•2021•Cited by: 1•References: 37

    Carbon stores in the terrestrial biosphere globally represent over 50% of present-day organic carbon reservoirs and have significantly altered over the last three centuries owing to anthropogenic disturbances. Conversion of natural land to agricultural uses often results in a loss of soil carbon, whilst atmospheric deposition of pollutants such as nitrogen has increased carbon storage in both soil and biomass. Terrestrial carbon storage underpins…

  • Terrestrial carbon sequestration under future climate, nutrient and land use change and management scenarios: A national-scale UK case study

    Open Access•Dmitry Yumashev, Victoria Janes‐bassett et al.•ARTICLE•Environmental Research Letters•2022

    Carbon sequestration (C seq ) in soils and plant biomass is viewed as an important means of mitigating climate change. Recent global assessments have estimated considerable potential for terrestrial C seq , but generally lack sensitivity to climate warming, nutrient limitations and perspective on local land use. These are important factors since higher temperatures can accelerate the decomposition of soil organic matter, nutrient availability aff…

Ecology (3 works) · Ecosystem (3 works) · Environmental Science (3 works) · Peatlands and Wetlands Ecology (3 works) · Soil Carbon and Nitrogen Dynamics (3 works) · Soil Science (3 works) · Soil water (3 works) · Arable land (2 works) · Biology (2 works) · Carbon cycle (2 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae