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Uncovering global risk to human and ecosystem health from pesticides in agricultural surface water using a machine learning approach. | LitMetric

Uncovering global risk to human and ecosystem health from pesticides in agricultural surface water using a machine learning approach.

Environ Int

State Key Joint Laboratory of Environmental Simulation and Pollution Control, Beijing Key Laboratory for Emerging Organic Contaminants Control, Beijing Laboratory for Environmental Frontier Technologies, School of Environment, Tsinghua University, Beijing 100084, China; Advanced Interdisciplinary Institute of Environment and Ecology, Guangdong Provincial Key Laboratory of Wastewater Information Analysis and Early Warning, Beijing Normal University, Zhuhai 519087, China. Electronic address:

Published: December 2024

AI Article Synopsis

  • Pesticides in agricultural waterways pose a significant risk to human and ecosystem health, but there's a lack of comprehensive data on their global impact.
  • This study creates the first global risk maps using extensive pesticide measurements and geospatial data, highlighting hotspots primarily in Southern Asia and Africa, where pesticide use is high and wastewater management is inadequate.
  • An estimated 305 million people face potential health risks from pesticide exposure, with over 170 million situated in the Ganges River basin in India, underscoring the urgent need for awareness and targeted testing efforts.

Article Abstract

Pesticides typically co-occur in agricultural surface waters and pose a potential threat to human and ecosystem health. As pesticide screening in global agricultural surface waters is an immense analytical challenge, a detailed risk picture of pesticides in global agricultural surface waters is largely missing. Here, we create the first global maps of human health and ecological risk from pesticides in agricultural surface waters using random forest models based on 27,411 measurements of 309 pesticides and 30 geospatial parameters. Our global risk maps identify the hotspots, mainly in Southern Asia and Africa, with extensive pesticide use and poor wastewater management infrastructure. We identify 4 and 5 priority pesticides for protecting the human and ecosystem health, respectively. Importantly, we estimate that 305 million people worldwide are at potential health risk associated with the surface-water pesticide mixture exposure, with the vast majority (86%) being in Asia. We further identify the hotspots in the Ganges River basin in India, where more than 170 million people are at potential health risk. As pesticides are increasingly used to ensure the food production due to future population growth and climate change, our findings have implications for raising awareness of pesticide pollution, identifying the hotspots and helping to prioritize testing.

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Source
http://dx.doi.org/10.1016/j.envint.2024.109154DOI Listing

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