BACI - Detecting changes in essential ecosystem and biodiversity properties – towards a Biosphere Atmosphere Change Index
- Boden und Landökosysteme
- Wasser - Atmosphäre - Umwelt
- Lebensraum und Landschaft
- Nachwachsende Rohstoffe und neue Technologien
- Lebensmittel, Ernährung, Gesundheit
- Nanowissenschaften und -technologie
Abstract
The alarming rate of biodiversity loss and ecosystem transitions make it clear that new strategies are required to sustain functioning of the coupled ecological-societal system. Existing space data archives and data streams from the ESA Sentinels, offer unprecedented opportunities to provide rapid, high quality indicators necessary for informed management of key ecosystem services. Yet, it remains largely unclear how space and ground-based observations can be optimallyintegrated to generate products required by end user communities (Secretariat of the Convention on Biological Diversity, 2014). By fusing extensive expertise on optical and radar remote sensing, ground data on ecosystem state and function, “big data" scientists, and active participation of user groups, BACI will advance this integration. BACI will translate space data to new variables (not directly observable from space) that encode ecosystem functional properties and status metrics. This will empower concepts of “essential biodiversity variables". Advanced machine learning methods will be employed to reveal new and fundamental relationships between space observations and ecosystem status. BACI will incorporate a wide range of original data and downstream data products specifically targeting needs for early-warning systems, including a novel“Biosphere-Atmosphere Change Index". We will prioritize selected key European and African regions now undergoing massive societal-ecological transformations, offering perspective towards operational assessments. A formal attribution framework will disentangle climate-induced ecosystem changes and socioeconomic/ecological transformation processes.Overall, BACI will advance usage of European space data to monitor relevant vegetation traits, status, and ecosystem functioning. By capitalizing on existing datasets, we will prototype new algorithms to rapidly implement these metrics and thus space-to-ground integration of the new ESA Sentinels.
Publications
Advancing the Understanding of Adaptive Capacity of Social-Ecological Systems to Absorb Climate Extremes
Autoren: Thonicke, K; Bahn, M; Lavorel, S; Bardgett, RD; Erb, K; Giamberini, M; Reichstein, M; Vollan, B; Rammig, A Jahr: 2020
Journal articles
Project staff
Karlheinz Erb
Assoc. Prof. Dr. Karlheinz Erb
karlheinz.erb@boku.ac.at
Tel: +43 1 47654-73715
BOKU Project Leader
01.04.2015 - 31.03.2019
Sarah Matej
Mag. Sarah Matej
sarah.matej@boku.ac.at
Tel: +43 1 47654-73747
Project Staff
01.04.2015 - 31.03.2019
Maria Niedertscheider
Mag.rer.nat. Dr.rer.nat. Maria Niedertscheider
Project Staff
01.04.2015 - 31.03.2019