Spacegraph

Integrating Remote Sensing and in-situ observations of Biodiversity, towards a fully interoperable observation and data framework

Upcoming
Annual
Grant
Tier A
HORIZON-CL6-2027-01-BIODIV-01

Integrates satellite remote sensing with in-situ biodiversity observations into an interoperable data framework for ecosystem assessment and restoration planning.

Biodiversity
Environment
Digital

Description

Expected outcome

Project results are expected to contribute to all of the following expected outcomes: advancing robust, policy-relevant ecosystem assessment, nature protection and restoration planning activities, and biodiversity trend prediction based on fit for purpose data, thus supporting EU biodiversity and climate objectives; strengthened capacity of researchers, practitioners and decision-makers to improve biodiversity monitoring practices and address knowledge gaps via the integration of data and observations across sensors and platforms, ranging from omics-based data (genomic, transcriptomic, metabolomic), various in-situ to satellite-based Earth observation data; enhanced usability of in-situ datasets as training and validation resources for statistical, machine learning and advanced AI-based approaches, in support of applications such as habitat classification, ecosystem mapping and biodiversity trend prediction.

Scope

Achieving the goals of the EU biodiversity strategy for 2030 , the Kunming-Montreal Global Biodiversity Framework, and assessing progress towards their defined targets, requires coherent, integrated and long-term monitoring approaches, underpinned by FAIR (Findable, Accessible, Interoperable and Re-usable) data systems. Many existing in-situ data collections (i.e. genomic assessments, ground sampling, drone and airborne observations) were not designed with Satellite Remote Sensing integration in mind (i.e. for validation and calibration, integrated data products, or statistical scaling of information) and lack the structure, interface and metadata required to support advanced analytics, including AI. FAIR data on species and ecosystems will also help to ensure that biodiversity preservation is a mainstream feature of other sectors, such as agriculture, transport, energy or the bioeconomy. There is a need for systemic, harmonised or standardised biodiversity data at Earth’s surface in order to support AI applications ranging from genome to space and to build up our knowledge on the status and trends of habitats, species, ecosystems, and on the drivers of decline. To address these challenges, proposals should: develop and validate fit-for-purpose multisensory biodiversity data integration systems, to enable omics-based and in-situ data harmonization and integration with remote sensing data from space or sub-orbital platforms, as well as socio-ecological and climatic data for enhancing assessment of ecosystem condition and degradation, and the predictive modelling of biodiversity trends at international, regional and European scales; develop concrete technical capabilities able to answer to diverse use cases, across terrestrial, freshwater and marine ecosystems in Member States and Associated Countries. To this end, proposals should identify and prioritise critical biodiversity knowledge gaps and their data needs, with a focus on predictive analytics and the use of AI, and address them by designing data integration approaches that support scientific and policy needs, including biodiversity protection, restoration, and sustainable use goals and targets, as well as other related policy objectives; develop demonstration and verification cases focusing on specific ecosystems under the EU ecosystem typology and habitats, including ecotones , identified as those under pressure or as restoration priorities. Proposals should take into account socio-economic pressures and activities impacting ecosystems, including land and sea use and emissions of pollutants (e.g. agriculture, aquaculture, urbanization, resource exploitation and management practices).

What this means for cities and regions

Regional and local nature-conservation authorities and protected-area managers as users of the monitoring framework, alongside researchers. Topic budget €10 million; 2 grants expected; around €5 million per project. Opens 20 April 2027; closes 22 September 2027. Explicitly a space call: the topic exists to connect Satellite Remote Sensing with ground data, serving the Nature Restoration Regulation's monitoring duties.

Key facts

Submission deadline

September 22nd, 2027

22 September 2027, 17:00 (Brussels time)

Published

December 12th, 2025

Opens

April 20th, 2027

Programme

Horizon Europe

Total envelope

€10,000,000

Per project

€5,000,000

Expected grants

2

Co-funding rate

100%

Eligibility

Eligible countries

AT
BE
BG
HR
CY
CZ
DK
EE
FI
FR
DE
EL
HU
IE
IT
LV
LT
LU
MT
NL
PL
PT
RO
SK
SI
ES
SE
IS
LI
NO
AL
ME
MK
RS
BA
TR
UA
MD
GE
AM
IL

Eligible NUTS regions

—

Eligible organisation types

Municipality
Intermunicipal authority
Region (NUTS2)
Province (NUTS3)
Public utility
Public transport operator
Regional development agency
National authority

Min. consortium size

—

Min. partner countries

—

Eligibility notes

Type of action for this topic

HORIZON Research and Innovation Actions (HORIZON Lump Sum Grant).

Who can apply

  • Any legal entity (public body, private body, NGO, university, research organisation, SME, large company) established in an EU Member State (including Overseas Countries and Territories), or in a Horizon Europe Associated Country.
  • The list of Horizon Europe Associated Countries is maintained on the EU Funding & Tenders Portal.

Consortium rule for this topic

Proposals must be submitted by a consortium of at least 3 independent legal entities, each established in a different EU Member State or Horizon Europe Associated Country, of which at least one must be established in an EU Member State.

Co-financing rate

  • Research and Innovation Actions (RIA): 100% of eligible direct costs + 25% flat-rate indirect costs.
  • Innovation Actions (IA): 70% of eligible direct costs (100% for non-profit legal entities) + 25% flat-rate indirect costs.
  • Coordination and Support Actions (CSA): 100%.

The applicable Type of Action is indicated on the topic record in the Funding & Tenders Portal.

Restrictions and special cases

  • Natural persons not eligible except sole traders.
  • International organisations and the JRC are eligible.
  • Other EU bodies cannot participate.
  • Financial support to third parties is allowed where the topic explicitly provides for it.

EU restrictive measures (TEU Article 29 / TFEU Article 215) and EU conditionality measures (Regulation 2020/2092) apply. Currently this excludes Hungarian public-interest trusts established under Hungarian Act IX of 2021 (Council Implementing Decision (EU) 2022/2506).

Space data condition

If the project uses satellite-based Earth observation, positioning, navigation or related timing data and services, beneficiaries must make use of Copernicus and/or Galileo/EGNOS. Other data and services may be used in addition.

Classification

Thematic domains

Biodiversity
Environment
Digital

Activity types

monitoring
capacity_building

Space relevance

Tier A — space tools are an explicit requirement of the call.

Space services

Copernicus Sentinel
CLMS

Sources

EU Funding & Tenders Portal

HORIZON-CL6-2027-01-BIODIV-01

Ingested September 20th, 2026

Sibling topics under this call

Develops multi-scale air-quality models, from regional to street level, so public authorities can plan effective clean-air measures and targeted alerts.

Sep 22, 2027
Environment
Spatial & urban planning

Related opportunities

Closing soon
grant
Horizon Europe Cluster 5 — Climate, Energy and Mobility: transport and mobility call (2026)

Supporting sustainable and smart urban mobility in Europe (CIVITAS)

Funds the coordination of the CIVITAS initiative: sharing and scaling sustainable urban mobility solutions across European cities.

Oct 8, 2026
Urban mobility
Climate mitigation / energy
Closing soon
grant
Horizon Europe Mission — Climate-Neutral and Smart Cities (2026)

Energy-efficient urban and sub-urban public transport, complemented by shared mobility

Demonstrates energy-efficient urban and sub-urban public-transport solutions complemented by shared mobility for climate-neutral cities.

Oct 8, 2026
Urban mobility
Climate mitigation / energy
Closing soon
grant
Horizon Europe Mission — Climate-Neutral and Smart Cities (2026)

Transition to low-temperature heating solutions in multi-apartment buildings

Demonstrates the transition to low-temperature heating in multi-apartment buildings supporting climate-neutral city goals.

Oct 8, 2026
Climate mitigation / energy
Urban regeneration