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Great River Landscapes of Western Asia and Eastern Europe: Volga, Dnieper, Danube, and Rhine (A Conversation with Kenneth R. Olson)

Pollution and Diseases 2026
Editorial board

Summary

This interview-style paper looks at four major European rivers—the Volga, Dnieper, Danube, and Rhine—and how decades of dam-building, industrialization, and pollution (including microplastics) have reshaped them, sometimes with serious consequences like the Chernobyl disaster and the 2023 Kakhovka Dam collapse. The big takeaway for everyday people: the water we drink, the food grown on floodplains, and the safety of communities near these rivers all depend on smarter, more collaborative river management—not just engineering fixes—especially as pollution and climate pressures increase.

Study Type Environmental

This interview discusses the seventh volume in Kenneth R. Olson's book series, which examines the Volga, Dnieper, Danube, and Rhine River landscapes as interconnected natural, historical, political, and engineered systems. The discussion emphasizes long-term changes in river morphology, floodplain use, navigation, hydropower, soil and water resources, and the social consequences of river regulation. Particular attention is given to the Dnieper River watershed, including the environmental implications of the Chernobyl nuclear power plant accident and the 2023 destruction of the Kakhovka Dam; the Danube as a transboundary river shaped by settlement, trade, and governance; the Volga as a central water-supply and navigation system for Russia; and the Rhine as a highly industrialized river affected by stream capture, urbanization, and microplastic pollution. The interview presents large river management as a complex socio-ecological problem that cannot be addressed by engineering expertise alone. It argues for resilience-based river and floodplain management, improved interdisciplinary research, and governance frameworks that integrate environmental protection, food and water security, navigation, energy development, and community impacts.

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