Termine
| wöchentlich | Dienstag | 14:15 - 15:45 | 12.10.2026 - 15.12.2026 | C 13.120 Labor |
| Einzeltermin | Sa, 24.10.2026, 10:00 - Sa, 24.10.2026, 17:00 | extern | Field Excercise & Excursion |
| wöchentlich | Dienstag | 14:15 - 15:45 | 12.01.2027 - 29.01.2027 | C 13.120 Labor |
Studienplankontext
Written assessment on the characteristics and potential of your study site (70%)
Wiederholungstermin: Zu dieser Prüfung wird kein Wiederholungstermin angeboten, da sie didaktisch untrennbar mit einer der zugeordneten Lehrveranstaltungen verbunden ist. Die Wiederholung der Prüfungsleistung ist somit erst bei erneutem Modulangebot möglich.
Organisatorisches
Anmeldung
Die Anmeldung beginnt erst am 02.10.2026 um 08:00 Uhr. Sie endet am 12.10.2026 um 23:59 Uhr.
Sie werden in dieser Veranstaltung automatisch an-/abgemeldet, wenn Sie sich in einer der folgenden Veranstaltungen an-/abmelden:
Site Characteristics & Biogeochemical Processes (Lab exercise A) (David Walmsley),
Site Characteristics & Biogeochemical Processes (Lab exercise B) (David Walmsley)
Die Anmeldung ist eingeschränkt auf folgende Gebiete oder Studiengänge:
- Masterprogramm Sustainability: Sustainability Science: Ecosystems, Biodiversity and Society / alle Semester
Personen
Inhaltliches
Nachhaltigkeitsorientiert
An advanced knowledge of site characteristics and biogeochemical processes is an important prerequisite to meeting the many challenges that can occur when trying to restore or protect natural systems. This course aims to deepen an understanding of (terrestrial) ecosystem processes from a biogeochemical point of view. Due to the central role of soil in biogeochemical cycles, and thus ecosystem restoration, the course will have a strong focus on basic soil science but also consider (interactive) processes between soils, plants and other components of terrestrial ecosystems. Lab and field exercises will complement lectures and seminars and will impart knowledge on soil analyses and understanding the biogeochemical processes that are a main driver of ecosystem function both locally and at larger scales. During the course we will also discuss human impacts on processes and biogeochemical cycles in terrestrial ecosystems and how to consider this aspect when devising nature-based solutions towards a more sustainable future.
Students will have acquired knowledge of the principle components of biogeochemical cycling in terrestrial ecosystems, specifically energy, carbon, water and nutrient cycling.
Students will gain an understanding of the basic state factors (i.e. climate, parent material, topography, potential biota) that are the main drivers determining the site characteristics of terrestrial ecosystems and how they interact over time.
Students will have learnt how to consider impacts of specific human activities on ecosystem processes and biogeochemical cycles, especially how these impact soil processes.
The students will have learnt how to characterise a field site in terms of abiotic conditions, with a special focus on soil properties and properties directly related to the soil (e.g. hydrological processes).
In lab and field exercises students will have learnt how to characterise and measure soil properties including organic matter, carbon, nitrogen and phosphorous content, pH, cation exchange capacity, soil colour and texture.
Participation in the lab exercises is mandatory as these are directly linked to your assessments.
Evaluation
Weitere Informationen zur Lehrevaluation: https://www.leuphana.de/lehre/qualitaetsmanagement/evaluation/lehrveranstaltungsevaluation.html