Soil Physics and Land Management Group
Research in the chair group Soil Physics and Land Management (SLM) addresses soil physical and hydrological processes at different temporal and spatial scales, and their central role in sustainable land and water management. Specific attention is given to flow and transport processes of water and solutes through and over the soil system, and their effects on crops, vegetation and the groundwater.
Agenda
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Soil 4 Life MOOC is online!
Learn why soil is so important, how it’s being threatened and what we can do to protect this natural resource so vital to our lives.
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Recent projects
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De-facto and direct exploitation of alternative water resources: benefits and trade-offs
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FARMWISE: Future Agricultural Resource Management and Water Innovations for a Sustainable Europe
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Exploring learning approaches and competencies for shaping effective change-agents in sustainable agriculture in Burundi
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Burrowing animals as actors of landscape change
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South Eastern Mediterranean Excellence Development in FIre REsearch (SEMEDFIRE)
Latest Publication
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Collected knowledge on the impacts of agricultural soil management practices in Europe
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Temporal dynamics of inundation area, hydrochemistry and brine in Bakhtegan Lake, South-Central Iran
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Short-term impacts of polyethylene and polyacrylonitrile microplastics on soil physicochemical properties and microbial activity of a marine terrace environment in maritime Antarctica
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Do we speak one language on the way to sustainable soil management in Europe? A terminology check via an EU-wide survey
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Growth response of dune-building grasses to precipitation
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A Pliocene lacustrine system in the Nellis basin, southern Nevada, USA: implications for the Colorado River drainage system
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Is groundwater running out in the Western Cape, South Africa? Evaluating GRACE data to assess groundwater storage during droughts
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In temperate Europe, fire is already here : The case of The Netherlands
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Black Vulture (Coragyps atratus) feathers as bioindicators of exposure to metals and metalloids contamination in urban, semi-urban, and rural areas from Campeche state, Mexico
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Cascading effects from soil to maize functional traits explain maize response to microplastics disturbance in multi-nutrient soil environment