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Plastic-Pollution Mapping Criteria and Examples

Sustainability 2026
Brian G. Hoover, Cesar H. Ornelas-Rascon, Lena M. Hoover

Summary

This paper reviews different ways scientists track plastic pollution and proposes better standards for mapping it—including using satellite and infrared imaging to spot plastic waste from above. Better tracking matters because it helps identify pollution hotspots and their sources, which is a key step toward reducing the plastic (and eventually microplastics) that ends up in our water, food, and bodies.

Plastic pollution is a problem for many municipalities, water authorities, and industries, including transportation, energy, agriculture, fisheries, real estate, tourism, hospitality, insurance, and healthcare. Efforts to understand and mitigate plastic pollution would benefit from a dedicated map satisfying basic criteria including traceability, scalability, spatio-temporal resolution, and data flexibility. This article details and demonstrates how several existing pollution maps satisfy these criteria and makes recommendations on their use for specific activities, including temporal monitoring, root-cause analysis (RCA), cleanups, and tourism guides. Advantages of using plastic density rather than piecewise logs as the primary data format are highlighted, in particular feasible memory requirements and access to cloud data. Environmental plastic mapping by passive optical sensors, which offer the potential of comprehensive qualified data, is also surveyed, including demonstration of an original shortwave infrared (SWIR) polarization imager, and dynamic plastic pollution monitoring is demonstrated through the application-programming interface (API) of the Google Maps platform utilizing both sensor and published survey data.

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