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Annette Eschenbach

Biographic Data

ID7997315
NAMEAnnette Eschenbach
GIVEN NAMESAnnette
FAMILY NAMEEschenbach
SIGNATUREESCHENBACH A
AFFILIATIONSUniversität Hamburg
ORCID0000-0002-8778-1342
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2024
LATEST PUBLICATION YEAR2025
H-INDEX0
  • Soil and vegetation responses to biochar application in terms of its feedback on carbon sequestration under different environmental conditions—LiDels model overview

    Open Access•Mikita Maslouski, Annette Eschenbach et al.•ARTICLE•Environmental Research Letters•2025

    Biochar application to soil shows promise for enhancing soil properties, increasing crop yields, improving water retention, and promoting carbon sequestration. While the direct effects of biochar on soil properties have been studied to some extent, the overall impact on ecosystem carbon balance remains uncertain, as field and lab studies typically do not account for interactions with vegetation. The LiDELS (LiBry-DETECT Layer Scheme) model offers…

  • Long-term carbon dioxide removal potential from the application of wood biochar and basanite rock powder in sandy soil using the LiDelsv2 process-based modeling approach

    Open Access•Mikita Maslouski, Maria Seedtke et al.•ARTICLE•Environmental Research Letters•2025

    The rise in atmospheric carbon dioxide (CO 2 ) concentrations requires scalable and effective carbon dioxide removal (CDR) strategies. pyrogenic carbon capture and storage relies on the pyrolysis of biomass and the non-oxidative use of biochar, e.g. in soils. Enhanced rock weathering (ERW) captures CO 2 by forming dissolved bicarbonate. In addition to CDR, both methods may offer soil improvement as a co-benefit. However, their interaction and com…

  • Combined effects of climate change and agricultural intensification on soil erosion in uphill shifting cultivation in Northeast India

    Open Access•Lea S Schröder, Livia Rasche et al.•ARTICLE•Land Degradation and Development•2024

    Shifting cultivation will face increasing pressure from erosion‐related land degradation caused by rising cultivation intensities and climate change. However, empirical knowledge about future trends of soil erosion and thus land degradation in shifting cultivation systems is limited. We use the Environmental Policy Integrated Climate (EPIC) model to first explore the combined effects of climate change and agricultural intensification on soil eros…

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  • Combined effects of climate change and agricultural intensification on soil erosion in uphill shifting cultivation in Northeast India

    Open Access•Lea S Schröder, Livia Rasche et al.•ARTICLE•Land Degradation and Development•2024

    Shifting cultivation will face increasing pressure from erosion‐related land degradation caused by rising cultivation intensities and climate change. However, empirical knowledge about future trends of soil erosion and thus land degradation in shifting cultivation systems is limited. We use the Environmental Policy Integrated Climate (EPIC) model to first explore the combined effects of climate change and agricultural intensification on soil eros…

  • Soil and vegetation responses to biochar application in terms of its feedback on carbon sequestration under different environmental conditions—LiDels model overview

    Open Access•Mikita Maslouski, Annette Eschenbach et al.•ARTICLE•Environmental Research Letters•2025

    Biochar application to soil shows promise for enhancing soil properties, increasing crop yields, improving water retention, and promoting carbon sequestration. While the direct effects of biochar on soil properties have been studied to some extent, the overall impact on ecosystem carbon balance remains uncertain, as field and lab studies typically do not account for interactions with vegetation. The LiDELS (LiBry-DETECT Layer Scheme) model offers…

  • Long-term carbon dioxide removal potential from the application of wood biochar and basanite rock powder in sandy soil using the LiDelsv2 process-based modeling approach

    Open Access•Mikita Maslouski, Maria Seedtke et al.•ARTICLE•Environmental Research Letters•2025

    The rise in atmospheric carbon dioxide (CO 2 ) concentrations requires scalable and effective carbon dioxide removal (CDR) strategies. pyrogenic carbon capture and storage relies on the pyrolysis of biomass and the non-oxidative use of biochar, e.g. in soils. Enhanced rock weathering (ERW) captures CO 2 by forming dissolved bicarbonate. In addition to CDR, both methods may offer soil improvement as a co-benefit. However, their interaction and com…

Biochar (2 works) · Carbon dioxide (2 works) · Carbon sequestration (2 works) · Ecology (2 works) · Environmental Science (2 works) · Geology (2 works) · Soil carbon (2 works) · Soil Carbon and Nitrogen Dynamics (2 works) · Agriculture (1 works) · Agroforestry (1 works)

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