51cg

Dr Saeed Karbin

Dr Saeed Karbin
Dr Saeed Karbin
Dr Saeed Karbin

Research Fellow

51cg
Email Address
saeed.karbin@abdn.ac.uk
Office Address
G43 23 St. Machar Drive
Old Aberdeen Campus
23 St. Machar Drive
AB24 3RY

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School/Department
School of Biological Sciences

Latest Publications

  • Ecosystem-specific interaction effects on CO₂ and CH₄ fluxes during autumn freeze–thaw cycles in permafrost peatlands of the Great Hinggan Mountains, Northeast China

    Song, L., Zang, S., Smith, P., Campbell, G., Karbin, S., Chen, H.
    Environmental Research, vol. 305, no. Part 2, 125076
    Contributions to Journals: Articles
  • Diversifying cropping with vetch enhances agroecosystem services under reduced nitrogen supply: Insights from field measurements and modeling evidence

    Wei, J., Chen, H., Xu, Y., Chai, Q., Yin, W., Gan, G., Wan, P., Hu, F., Fan, Z., Zhao, L., Sun, Y., Karbin, S., Smith, P., Abdalla, M.
    Agricultural Systems, vol. 238, 104892
    Contributions to Journals: Articles
  • Metagenomic insights into the influence of soil microbiome on greenhouse gas emissions from paddy fields under varying irrigation and fertilisation regimes

    Jiang, Z., Yang, S., Pang, Q., Abdalla, M., Karbin, S., Qi, S., Hu, J., Qiu, H., Song, X., Smith, P.
    Journal of Environmental Management, vol. 393, 127129
    Contributions to Journals: Articles
  • Initiating conservation agriculture shows reduced soil CO2 emissions and improved soil aggregate stability in the first season in rainfed cropping in India

    Karbin, S., Kassam, A., Oza, A., Sawhney, T., Sahu, P., Mogare, B., Mitra, B., Viswakarma, S., Singh, J., Mahajan, R., Malviya, S., Badole, P., Patidar, N.
    International Journal of Environmental Studies, vol. 79, no. 6, pp. 998-1014
    Contributions to Journals: Articles
  • Estimating Greenhouse Gases Emissions from Karun-4 Water Reservoir by Applying G-res Model

    Karbin, S., Rezaee, N., Jamali, S.
    Chapters in Books, Reports and Conference Proceedings: Conference Proceedings

View My Publications

Research

Research Overview

My research examines the biogeochemistry of greenhouse gases in soils and possible mitigation strategies. I have worked extensively on measuring and modelling fluxes of carbon dioxide, methane, and hydrogen across soil-atmosphere interfaces in agricultural, grassland, and forest ecosystems. This work has spanned several countries and engaged diverse stakeholders including different national and international research institutions and NGOs such as Aga Khan Foundation and FAO.

Currently, I am developing process-based models to estimate the global soil uptake and release of hydrogen gas by soils. This project accounts for the biological and physical factors influencing hydrogen dynamics in soils, including diffusion, microbial oxidation, and release from nitrogen fixation. The goal is to produce a model suitable for linking soil hydrogen processes to atmospheric chemistry and climate. Quantifying these dynamics is crucial, as the use of hydrogen as a clean fuel relies on minimizing leakage and indirect warming effects.

Overall, my aim is to provide solutions for sustainable soil management that reduce greenhouse gas emissions and improve soil health. My research contributes quantitative understanding needed to predict climate feedbacks and inform mitigation strategies.

Research Areas

Biological and Environmental Sciences

Research Specialisms

  • Soil Science
  • Mathematical Modelling
  • Environmental Management
  • Sustainable Agriculture and Landscape Development

Our research specialisms are based on the Higher Education Classification of Subjects (HECoS) which is , published under the licence.

Current Research

My present research centers on a building process-based model to estimate the global flux of hydrogen gas exchanged between soils and the atmosphere. Robustly modeling changes in tropospheric hydrogen requires representing the chemistry regulating airborne hydrogen concentrations along with its interactions with terrestrial sources and sinks. Using hydrogen as a clean substitute for fossil fuels would provide climate benefits by avoiding carbon dioxide emissions. However, any hydrogen leakage could indirectly warm the climate by altering atmospheric composition.

I am developing a model to estimate hydrogen uptake and release from soils on global scales over multi-decadal timeframes. This model incorporates the biological drivers of soil hydrogen cycling, including diffusion into soil profiles, microbial oxidation, and production during nitrogen fixation. By linking these process representations to atmospheric chemistry and transport, the goal is to predict how variability in soil hydrogen fluxes may feedback to climate under different scenarios. The model builds on established approaches for simulating soil organic matter coupled with empirical moisture and temperature responses. Overall, this work will quantify an important yet uncertain component of the terrestrial hydrogen budget.

Past Research

My previous works focused on sustainable soil management, measuring soil-atmosphere GHG fluxes and modelling soil organic carbon in different countries like Iran, Switzerland, India and Tajikistan with different national and international research institutions and NGOs such as Aga Khan Foundation and FAO.   

Publications

Page 1 of 1 Results 1 to 12 of 12

  • Ecosystem-specific interaction effects on CO₂ and CH₄ fluxes during autumn freeze–thaw cycles in permafrost peatlands of the Great Hinggan Mountains, Northeast China

    Song, L., Zang, S., Smith, P., Campbell, G., Karbin, S., Chen, H.
    Environmental Research, vol. 305, no. Part 2, 125076
    Contributions to Journals: Articles
  • Diversifying cropping with vetch enhances agroecosystem services under reduced nitrogen supply: Insights from field measurements and modeling evidence

    Wei, J., Chen, H., Xu, Y., Chai, Q., Yin, W., Gan, G., Wan, P., Hu, F., Fan, Z., Zhao, L., Sun, Y., Karbin, S., Smith, P., Abdalla, M.
    Agricultural Systems, vol. 238, 104892
    Contributions to Journals: Articles
  • Metagenomic insights into the influence of soil microbiome on greenhouse gas emissions from paddy fields under varying irrigation and fertilisation regimes

    Jiang, Z., Yang, S., Pang, Q., Abdalla, M., Karbin, S., Qi, S., Hu, J., Qiu, H., Song, X., Smith, P.
    Journal of Environmental Management, vol. 393, 127129
    Contributions to Journals: Articles
  • Initiating conservation agriculture shows reduced soil CO2 emissions and improved soil aggregate stability in the first season in rainfed cropping in India

    Karbin, S., Kassam, A., Oza, A., Sawhney, T., Sahu, P., Mogare, B., Mitra, B., Viswakarma, S., Singh, J., Mahajan, R., Malviya, S., Badole, P., Patidar, N.
    International Journal of Environmental Studies, vol. 79, no. 6, pp. 998-1014
    Contributions to Journals: Articles
  • Estimating Greenhouse Gases Emissions from Karun-4 Water Reservoir by Applying G-res Model

    Karbin, S., Rezaee, N., Jamali, S.
    Chapters in Books, Reports and Conference Proceedings: Conference Proceedings
  • Water reservoirs are important sinks for greenhouse gases

    Alikhani, H. A., Karbin, S.
    Dams and Reservoirs, vol. 29, no. 4, pp. 128-132
    Contributions to Journals: Articles
  • Spatial micro-distribution of methanotrophic activity along a 120-year afforestation chronosequence

    Karbin, S., Hagedorn, F., Hiltbrunner, D., Zimmermann, S., Niklaus, P. A.
    Plant and Soil, vol. 415, no. 1-2, pp. 13-23
    Contributions to Journals: Articles
  • Effects of long-term CO2 enrichment on soil- atmosphere CH4 fluxes and the spatial micro-distribution of methanotrophic bacteria

    Karbin, S., Guillet, C., Kammann, C. I., Niklaus, P. A.
    PloS ONE, vol. 10, no. 7, e0131665
    Contributions to Journals: Articles
  • Treeline soil warming does not affect soil methane fluxes and the spatial micro-distribution of methanotrophic bacteria

    Karbin, S., Hagedorn, F., Dawes, M. A., Niklaus, P. A.
    Soil Biology and Biochemistry, vol. 86, pp. 164-171
    Contributions to Journals: Articles
  • Effects of Global Change on Soil Methane Dynamics

    Karbin, S.
    University of Zurich
    Books and Reports: Other Reports
  • Episodic High CH4 Emission Events can Damage the Potential of Soils to Act as CH4 Sink: Evidence from 17 Years of CO2 Enrichment in a Temperate Grassland Ecosystem

    Guillet, C., Kammann, C., Andresen, L. C., Karbin, S., Niklaus, P. A., Muller, C.
    Procedia Environmental Sciences, vol. 29, pp. 208-209
    Contributions to Journals: Articles
  • Increasing soil methane sink along a 120-year afforestation chronosequence is driven by soil moisture

    Hiltbrunner, D., Zimmerman, S., Karbin, S., Hagedorn, F., Niklaus, P. A.
    Global Change Biology, vol. 18, pp. 3664-3671
    Contributions to Specialist Publications: Articles

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Books and Reports

Chapters in Books, Reports and Conference Proceedings

Contributions to Journals

Contributions to Specialist Publications