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Using geophysical subsurface data for the reconstruction of valley-scale spatio-temporal floodplain evolution: implications for upland river restoration (2024)
Journal Article
Schwendel, A. C., Milan, D. J., Pope, R. J., Williams, R., & Thompson, W. (2024). Using geophysical subsurface data for the reconstruction of valley-scale spatio-temporal floodplain evolution: implications for upland river restoration. Geomorphology, 466, Article 109459. https://doi.org/10.1016/j.geomorph.2024.109459

The use of analogues of previous river styles is highly significant for successful river restoration, yet some existing techniques available to assist practitioners are still not widely applied. We explore the use of Ground Penetrating Radar (GPR), t... Read More about Using geophysical subsurface data for the reconstruction of valley-scale spatio-temporal floodplain evolution: implications for upland river restoration.

PFAS River Export Analysis Highlights the Urgent Need for Catchment-Scale Mass Loading Data (2024)
Journal Article
Byrne, P., Mayes, W. M., James, A. L., Comber, S., Biles, E., Riley, A. L., & Runkel, R. L. (2024). PFAS River Export Analysis Highlights the Urgent Need for Catchment-Scale Mass Loading Data. Environmental Science and Technology Letters, 11(3), 266–272. https://doi.org/10.1021/acs.estlett.4c00017

Source apportionment of per- and polyfluoroalkyl substances (PFAS) requires an understanding of the mass loading of these compounds in river basins. However, there is a lack of temporally variable and catchment-scale mass loading data, meaning identi... Read More about PFAS River Export Analysis Highlights the Urgent Need for Catchment-Scale Mass Loading Data.