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Beyond Removal: Strategies for Sustainable Control of Water Hyacinth in Tropical Freshwater Ecosystems

Author

Listed:
  • Desalegn Chala

    (University of Oslo, Natural History Museum
    Aarhus University, Center for Biodiversity Dynamics in a Changing World (BIOCHANGE), Department of Biology
    Aarhus University, Section for Ecoinformatics and Biodiversity, Department of Biology)

  • Diress Tsegaye

    (Survey and Statistics Division, Norwegian Institute of Bioeconomy Research (NIBIO), Department of Landscape Monitoring)

  • Habtamu Alem

    (Norwegian Institute of Bioeconomy Research, Department of Economics and Society)

  • Belachew Asalf

    (Norwegian Institute of Bioeconomy Research (NIBIO), Division of Biotechnology and Plant Health)

  • Melesse Eshetu Moges

    (Norwegian University of Life Sciences (NMBU), Faculty of Science and Technology)

  • Nega Tassie Abate

    (Bahir Dar University, Department of Biology)

  • Ayalew Wondie

    (Lake Tana and Other Waterbodies Protection and Development Agency)

  • Aklilu Tilahun Tadesse

    (Research Aquatic Biosecurity, Norwegian Veterinary Institute
    University of Bergen, Department of Geography, System Dynamics Group)

  • Abebayehu Aticho

    (Jimma University, Department of Natural Resource Management, College of Agriculture and Veterinary Medicine
    Threatened Species Conservation (TSC))

  • Alemu Gonsamo

    (McMaster University, School of Earth, Environment & Society)

  • Lanhui Wang

    (Aarhus University, Center for Biodiversity Dynamics in a Changing World (BIOCHANGE), Department of Biology
    Aarhus University, Section for Ecoinformatics and Biodiversity, Department of Biology
    Lund University, Department of Physical Geography and Ecosystem Science)

  • Erick Lundgren

    (Aarhus University, Center for Biodiversity Dynamics in a Changing World (BIOCHANGE), Department of Biology
    Aarhus University, Section for Ecoinformatics and Biodiversity, Department of Biology)

  • Jeffrey Kerby

    (Aarhus University, Section for Ecoinformatics and Biodiversity, Department of Biology
    Aarhus University, Aarhus Institute for Advanced Studies)

  • Jens Christian Svenning

    (Aarhus University, Center for Biodiversity Dynamics in a Changing World (BIOCHANGE), Department of Biology
    Aarhus University, Section for Ecoinformatics and Biodiversity, Department of Biology
    Aarhus University, Center for Ecological Dynamics in a Novel Biosphere (ECONOVO), Department of Biology)

Abstract

Water hyacinth is among the world’s most damaging aquatic invasive plants, forming dense mats that disrupt ecosystem functioning, fisheries, navigation, and livelihoods across tropical and subtropical freshwater systems. Its rapid spread is driven by clonal propagation, short life cycles, and prolific seed production, particularly under nutrient-enriched conditions. Although mechanical, chemical, and biological control methods are widely applied, their long-term effectiveness remains uncertain when underlying eutrophication persists. Here, we present a large-scale, one-time water hyacinth removal campaign in Lake Tana, Ethiopia’s largest lake and a UNESCO Biosphere Reserve, as a representative nutrient-rich tropical freshwater system. Using high-resolution satellite imagery, we quantified coverage one month before removal, one month after removal, and one year later. We integrated SWOT (Strengths, Weaknesses, Opportunities, Threats) analysis with a socio-ecological system map to assess mitigation mechanisms and identify sustainable management pathways capable of providing long-term solutions to halt water hyacinth proliferation in freshwater bodies. The campaign removed over 75% (~1271 ha) of water hyacinth, yet within one year the plant resurged to levels ~18% higher than pre-removal. This rebound highlights the ecological resilience of water hyacinth and the limitations of short term, noncontinuous control strategies. Our analysis identifies unmanaged catchment nutrient inputs as the primary driver of proliferation. Lake Tana serves as a model system demonstrating that water hyacinth functions less as a traditional invader and more as a bioindicator of eutrophication. We propose a transferable conceptual and methodological framework combining continuous removal, catchment-based nutrient management, and circular bioeconomy approaches, offering globally relevant lessons for sustainable management of nutrient-enriched tropical freshwater systems.

Suggested Citation

  • Desalegn Chala & Diress Tsegaye & Habtamu Alem & Belachew Asalf & Melesse Eshetu Moges & Nega Tassie Abate & Ayalew Wondie & Aklilu Tilahun Tadesse & Abebayehu Aticho & Alemu Gonsamo & Lanhui Wang & E, 2026. "Beyond Removal: Strategies for Sustainable Control of Water Hyacinth in Tropical Freshwater Ecosystems," Environmental Management, Springer, vol. 76(6), pages 1-15, June.
  • Handle: RePEc:spr:envman:v:76:y:2026:i:6:d:10.1007_s00267-026-02494-1
    DOI: 10.1007/s00267-026-02494-1
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