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Written by Anja Radjenovic.
CONTEXTAccording to Directive 2008/115/EC, third-country nationals staying illegally on the territory of a European Union (EU) Member State should, as a general rule, be issued a return decision obliging them to leave the EU. However, available data suggest that, among those who receive such a decision, only about a quarter actually leave the EU. The limited effectiveness of the return policy is due to several challenges that the EU and Member States face when carrying out return procedures, including difficulties related to implementation at national level. To increase the effectiveness of the EU return policy, the European Commission announced in its 2025 work programme that it would develop a new common approach to returns, including a new legislative proposal on the subject.
Legislative proposal2025/0059(COD) – Proposal for a Regulation of the European Parliament and of the Council establishing a common system for the return of third-country nationals staying illegally in the Union, and repealing Directive 2008/115/EC of the European Parliament and the Council, Council Directive 2001/40/EC and Council Decision 2004/191/EC – COM(2025) 101, 11.3.2025.
NEXT STEPS IN THE EUROPEAN PARLIAMENTFor the latest developments in this legislative procedure, see the Legislative Train Schedule: 2025/0059(COD)
Read the complete briefing on ‘A common system for the return of third-country nationals staying illegally in the European Union‘ in the Think Tank pages of the European Parliament.
Introduction: Warfare, Complexity, and the Expanding Environmental Dimension
Over the past four decades, security policy has undergone a profound transformation. What once centered primarily on kinetic military capabilities and traditional geopolitical rivalries has evolved into a multidimensional field shaped by technological innovation, global interdependence, and increasingly complex threat environments. Modern conflicts no longer unfold solely on conventional battlefields; they extend into cyberspace, critical infrastructure, supply chains, and the natural environment itself. As security challenges have diversified, so too has the need to understand the broader systemic consequences of military activity.
Within this expanding landscape, the environmental dimension of warfare has emerged as one of the most overlooked yet consequential aspects of contemporary security. While the immediate destruction caused by kinetic operations remains visible and devastating, the ecological footprint of modern warfare now extends far beyond explosions, troop movements, and territorial occupation. Advanced weapons systems rely on resource-intensive production processes, cyber operations can trigger cascading environmental failures, and post-conflict regions often face long-term ecological instability that undermines recovery and resilience.
Recognizing these dynamics is essential for any comprehensive analysis of modern security. Environmental degradation is not merely a byproduct of war; it is a strategic factor that shapes human security, economic stability, and geopolitical outcomes. As conflicts become more technologically sophisticated and globally interconnected, their environmental consequences grow more complex, more persistent, and more deeply embedded in the fabric of affected societies.
This publication examines the full spectrum of warfare’s environmental impacts—from immediate kinetic destruction to the hidden ecological costs of technological warfare and the long-term instability that follows in the wake of conflict. By integrating these dimensions, it seeks to highlight why environmental resilience must become a central pillar of contemporary security policy and military planning.
Transition to the Main Analysis
As the scope of security policy continues to expand, understanding the environmental implications of modern warfare becomes not only relevant but indispensable. The intersection between military activity and ecological stability is no longer a peripheral concern—it is a central component of contemporary security dynamics. The environmental footprint of conflict influences human health, economic recovery, resource availability, and long-term regional resilience. Yet despite its strategic significance, this dimension often remains underexamined in both academic discourse and policy planning.
To address this gap, the following analysis explores the environmental consequences of warfare across three interconnected layers. First, it examines the direct and immediate impacts of kinetic operations, where physical destruction and contamination shape the ecological landscape of conflict zones. Second, it investigates the hidden environmental costs embedded in technologically advanced forms of warfare, from resource-intensive production processes to the cascading ecological effects of cyber and electromagnetic operations. Finally, it considers the long-term instability that persists after hostilities end, revealing how environmental degradation can hinder reconstruction, exacerbate human insecurity, and perpetuate regional fragility.
By integrating these perspectives, the analysis provides a comprehensive understanding of how modern warfare reshapes the environment—and why environmental resilience must become a core element of future security strategies. What follows is an in depth exploration of these dynamics, tracing the full spectrum of ecological pressures generated by contemporary conflict.
Main Analysis: The Environmental Footprint of Modern Warfare
1. Direct Environmental Impacts of Kinetic Warfare
Conventional military operations remain a major source of acute environmental degradation. Explosive munitions contaminate soil with heavy metals and chemical residues, while the destruction of industrial facilities, fuel depots, and critical infrastructure releases hazardous substances into air and water systems. Forests and agricultural lands are often devastated, leading to habitat loss, reduced biodiversity, and long-term soil erosion. These effects are not confined to the duration of hostilities; unexploded ordnance and landmines can render large areas unusable for decades, preventing ecological recovery and safe human resettlement.
2. Hidden Ecological Costs of Technological Warfare
The shift toward high-tech military capabilities introduces new, often overlooked environmental pressures. The production of drones, precision-guided munitions, and advanced sensors depends heavily on rare earth elements, whose extraction is associated with severe ecological damage, including toxic waste and water contamination. Cyber operations, though seemingly intangible, can trigger physical consequences: attacks on power grids, water treatment facilities, or industrial control systems may lead to uncontrolled pollution events or prolonged service disruptions. Electromagnetic warfare can interfere with communication networks and energy systems, indirectly affecting environmental monitoring and emergency response mechanisms.
3. Long-Term Ecological Instability in Post-Conflict Regions
Beyond the immediate and technological impacts, modern warfare generates structural environmental instability that persists long after ceasefires. Displacement of populations places immense pressure on urban ecosystems, often overwhelming waste management, water supply, and energy systems. In conflict zones, environmental governance collapses, allowing illegal logging, unregulated mining, and uncontrolled waste dumping to flourish. Military bases and supply chains leave behind significant ecological footprints, including soil contamination, disrupted water flows, and long-term land degradation. These cumulative effects hinder sustainable reconstruction and increase vulnerability to future environmental crises.
Case Studies: Environmental Impacts Across Contemporary Conflict Zones
Case Study 1: The Russo‑Ukrainian War (2014–2024)
The conflict in Ukraine illustrates how modern warfare generates both immediate and systemic environmental damage. Kinetic strikes on industrial facilities, fuel depots, and chemical plants have released hazardous substances into soil and waterways. The destruction of the Kakhovka Dam in 2023 triggered widespread flooding, soil erosion, and long-term ecological disruption across the Dnipro basin. Drone warfare and electronic attacks have increased demand for rare earth elements, intensifying global extraction pressures far beyond the battlefield.
One of the most alarming ecological consequences has been the mass mortality of Black Sea dolphins. Marine biologists documented thousands of dead dolphins washing ashore in Ukraine, Romania, Bulgaria, and Turkey. The primary causes include acoustic trauma from naval sonar systems, underwater explosions, and the disruption of migratory and feeding patterns due to intensified military activity. The collapse of fish stocks in the northern Black Sea—driven by pollution, noise, and naval operations—further contributed to starvation and ecological stress. This phenomenon highlights how modern warfare affects not only terrestrial ecosystems but also marine biodiversity, with cascading consequences for regional ecological stability.
Case Study 2: The Syrian Civil War (2011–present)
Syria demonstrates how prolonged conflict erodes environmental governance. Years of fighting have devastated agricultural regions, accelerated deforestation, and contaminated water systems. The collapse of regulatory institutions enabled uncontrolled waste dumping, informal oil refining, and unregulated resource extraction. These activities have produced toxic emissions and soil degradation that will hinder recovery for decades.
Case Study 3: The Nagorno‑Karabakh Conflicts (1991–2023)
The recurring conflicts in Nagorno‑Karabakh highlight the long-term ecological consequences of militarized landscapes. Landmines and unexploded ordnance have rendered large areas inaccessible, preventing agricultural use and ecological restoration. Forest fires triggered by shelling have destroyed biodiversity-rich habitats. Soil contamination and disrupted water flows demonstrate how even short, high-intensity conflicts can produce enduring environmental instability.
Case Study 4: The Gulf War (1990–1991)
The Gulf War remains one of the most striking examples of deliberate environmental destruction. Retreating Iraqi forces set fire to more than 600 Kuwaiti oil wells, releasing millions of barrels of crude oil into the desert and the Persian Gulf. The resulting smoke plumes darkened regional skies for months, causing severe air pollution, acid rain, and long-term soil sterilization. Marine ecosystems suffered extensive contamination, and respiratory illnesses increased sharply among local populations. The Gulf War demonstrated how environmental devastation can be weaponized as part of military strategy.
Case Study 5: The Vietnam War (1955–1975)
The Vietnam War introduced the world to the concept of “ecocide.” The widespread use of herbicides such as Agent Orange destroyed millions of hectares of forest and farmland, causing irreversible biodiversity loss and long-term soil toxicity. Chemical contamination continues to affect human health and ecosystems decades later, with elevated cancer rates and birth defects documented in affected regions. This case exemplifies how environmental manipulation became a tactical instrument of warfare, with consequences that persist across generations.
Case Study 6: The Balkan Wars (1991–1999)
The wars accompanying the breakup of Yugoslavia revealed the deep interconnection between ethnic conflict, infrastructure destruction, and environmental collapse. Bombing campaigns targeted industrial zones, oil refineries, and chemical plants, releasing toxic substances into the Danube and other regional waterways. NATO air strikes on Serbia in 1999—including attacks on petrochemical facilities near Pančevo—caused severe air and soil contamination, with long-term health effects documented in surrounding communities. Deforestation and land degradation followed mass displacement, as refugees relied on wood for heating and temporary shelter. In Bosnia and Herzegovina, unexploded ordnance and landmines continue to threaten both human safety and ecological restoration efforts. The Balkan conflicts thus stand as a stark reminder that environmental damage can persist long after political borders are redrawn, shaping regional stability and public health for generations.
Policy Recommendations: Integrating Environmental Resilience into Security Strategy
Armed forces should incorporate environmental impact assessments into operational planning, including real-time monitoring of air, water, and soil quality in conflict zones.
Existing conventions require modernization to address cyber operations, critical infrastructure sabotage, and resource-intensive weapons production.
Defense industries must adopt cleaner production methods, reduce reliance on rare earth elements, and invest in recyclable materials.
Reconstruction programs should prioritize decontamination, reforestation, and restoration of water systems.
Regional organizations should establish joint monitoring mechanisms and coordinated ecological recovery initiatives.
Conclusion
Modern warfare has evolved into a complex, multidimensional phenomenon whose environmental consequences extend far beyond the battlefield. Kinetic operations inflict immediate ecological damage, technological warfare introduces hidden pressures, and long-term instability persists in post-conflict regions. Environmental resilience must become a central pillar of military planning, defense procurement, and post-conflict recovery. Only by addressing the full spectrum of warfare’s ecological footprint can states build sustainable security architectures capable of withstanding twenty-first-century challenges.
References (APA Style)
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A The Environmental Footprint of Modern Warfare: A Comprehensive Analysis bejegyzés először Biztonságpolitika-én jelent meg.
Environmental change can affect social contracts, which are the relationships between societal groups and between such groups and the state. Droughts, river pollution and rising sea levels often change the distribution of resources within countries or harm some societal groups more than others, raising questions about compensation. Social contracts can also trigger environmental change, mainly because the environment and future generations cannot themselves participate in social contract negotiations. Many social contracts allow influential elites to overuse or pollute natural resources, harming the environment, other societal groups and future generations. Drawing on existing social contract and environmental governance research, this introductory article develops a conceptual approach for analyzing the bidirectional effects between the environment and the relations between different parts of society and the state. It presents different types of interaction using multiple examples. This approach helps to identify starting points for the negotiation of more sustainable and inclusive social contracts.
Environmental change can affect social contracts, which are the relationships between societal groups and between such groups and the state. Droughts, river pollution and rising sea levels often change the distribution of resources within countries or harm some societal groups more than others, raising questions about compensation. Social contracts can also trigger environmental change, mainly because the environment and future generations cannot themselves participate in social contract negotiations. Many social contracts allow influential elites to overuse or pollute natural resources, harming the environment, other societal groups and future generations. Drawing on existing social contract and environmental governance research, this introductory article develops a conceptual approach for analyzing the bidirectional effects between the environment and the relations between different parts of society and the state. It presents different types of interaction using multiple examples. This approach helps to identify starting points for the negotiation of more sustainable and inclusive social contracts.
Environmental change can affect social contracts, which are the relationships between societal groups and between such groups and the state. Droughts, river pollution and rising sea levels often change the distribution of resources within countries or harm some societal groups more than others, raising questions about compensation. Social contracts can also trigger environmental change, mainly because the environment and future generations cannot themselves participate in social contract negotiations. Many social contracts allow influential elites to overuse or pollute natural resources, harming the environment, other societal groups and future generations. Drawing on existing social contract and environmental governance research, this introductory article develops a conceptual approach for analyzing the bidirectional effects between the environment and the relations between different parts of society and the state. It presents different types of interaction using multiple examples. This approach helps to identify starting points for the negotiation of more sustainable and inclusive social contracts.