Beta This website is in development — content and design are still changing
IAMC

Project

LAMASUS – Land Management for Sustainability

LAMASUS builds on i) decades of experience in direct policy support, ii) unique modeling tools, such as GLOBIOM, the only model that integrates agricultural and land use sectors, and CAPRI, MAGNET and CLUE, which underlie JRC’s land use policy assessments, and iii) novel approaches mobilizing machine learning and citizen science.

LAMASUS builds on i) decades of experience in direct policy support, ii) unique modeling tools, such as GLOBIOM, the only model that integrates agricultural and land use sectors, and CAPRI, MAGNET and CLUE, which underlie JRC’s land use policy assessments, and iii) novel approaches mobilizing machine learning and citizen science.

The project is driven by four key elements

  • EVIDENCE – dynamic monitoring of land use, management and related policies for evaluation and model calibration;

  • UNDERSTANDING – state-of-the-art econometric and biophysical models to assess the role of past policies on changes in land use and management, and their economic and environmental impacts;

  • TOOLS – a highly-integrated policy modeling framework with full sectorial coverage from agriculture and forestry to the whole economy, accounting for carbon, biodiversity and all relevant sustainability dimensions, at multiple scales (land use actors, country, EU level, global);

  • GUIDANCE – a multi-level stakeholder dialogue for co-design of agriculture, forestry and climate policies by the EC, national and local governments and citizens, made accessible to stakeholders across multiple spatial scales through the novel webbased LAMASUS Portal.

In this way, LAMUSUS will create a new level of societal engagement in which local actors contribute to the design of effective and efficient EU policies for climate neutrality and will serve as an exemplar for other policy processes within the European Green Deal.

More projects

POLIZERO project final report

POLIZERO was funded by the Energy-Economy-Society research programme of the Swiss Federal Office of Energy. Led by the Energy Economics Group of the Laboraotry for Energy Systems Analysis at the Paul Scherrer Institute PSI and the Technoeconomics of energy systems laboratory of the University of Piraeus Research Center, it combined stakeholder input, energy modelling

Multiple pathways towards sustainable development goals and climate targets

The study presents three different sustainable development pathways, all of which avoid dangerous climate change and enable substantial progress towards the UN Sustainable Development Goals (SDGs). The scenarios were quantified by four different modelling teams participating in the SHAPE project, comprising two “full-system” integrated assessment models (REMIND-MAgPIE and IMAGE) and