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Denudation rates and Holocene sediment storage dynamics inferred from in situ 14 C concentrations in the Feshie basin, Scotland (2025)
Journal Article
Towers, A. H., Mudd, S. M., Attal, M., Clubb, F. J., Binnie, S. A., Dunai, T. J., & Haghipour, N. (2025). Denudation rates and Holocene sediment storage dynamics inferred from in situ 14 C concentrations in the Feshie basin, Scotland. Earth Surface Processes and Landforms, 50(4), Article e70043. https://doi.org/10.1002/esp.70043

Summary: Scotland's Highlands are tectonically quiescent but have experienced high rates of isostatic uplift in response to deglaciation. To understand the effects of both deglaciation and regional uplift on landscape evolution, we measured the conce... Read More about Denudation rates and Holocene sediment storage dynamics inferred from in situ 14 C concentrations in the Feshie basin, Scotland.

Hotels, refuge, and the rise of carceral hospitality (2025)
Journal Article
Darling, J., & Burridge, A. (online). Hotels, refuge, and the rise of carceral hospitality. Transactions of the Institute of British Geographers, Article e70001. https://doi.org/10.1111/tran.70001

Geographical work on hotels has foregrounded their role as spaces of commercial hospitality, leisure, and increasingly as sites of emergency accommodation for a range of displaced groups. Developing such work, this paper critically examines the centr... Read More about Hotels, refuge, and the rise of carceral hospitality.

Geographies of Bodies (2025)
Book Chapter
Nieuwenhuis, M., & Colls, R. (2025). Geographies of Bodies. In B. Warf (Ed.), The Encyclopedia of Human Geography (1-6). Springer Nature. https://doi.org/10.1007/978-3-031-25900-5

This is a chapter about the specific geographies of human bodies. It contains the stories and experiences of two different human bodies. The first is that of Zhang Haichao, a young male migrant miner in China, whose body we get to learn about from th... Read More about Geographies of Bodies.

Earthquake-Driven Subsidence and Sea-Level Rise: Compound Flooding Hazards Along the Cascadia Subduction Zone, USA (2025)
Journal Article
Dura, T., Chilton, W., Small, D., Garner, A. J., Hawkes, A., Melgar, D., Engelhart, S. E., Staisch, L., Witter, R. C., Nelson, A. R., Kelsey, H. M., Allan, J. C., Bruce, D., Depaolis, J., Priddy, M., Briggs, R. W., Weiss, R., Selle, S. L., Willis, M., & Horton, B. P. (in press). Earthquake-Driven Subsidence and Sea-Level Rise: Compound Flooding Hazards Along the Cascadia Subduction Zone, USA. Proceedings of the National Academy of Sciences,

Flow Resistance and Hydraulic Geometry in Gravel‐And Boulder‐Bed Rivers (2025)
Journal Article
Ferguson, R., & Recking, A. (2025). Flow Resistance and Hydraulic Geometry in Gravel‐And Boulder‐Bed Rivers. Water Resources Research, 61(3), Article e2024WR038852. https://doi.org/10.1029/2024wr038852

The frictional resistance of river beds affects how water discharge is partitioned between depth and velocity, which is important in many aspects of hydrology, geomorphology, and aquatic ecology. Many of the most widely‐used resistance equations pred... Read More about Flow Resistance and Hydraulic Geometry in Gravel‐And Boulder‐Bed Rivers.

Network‐Scale Dynamics of Alluvial Cover in a Mixed Bedrock‐Alluvial River (2025)
Journal Article
Oliveira Guirro, M., Hodge, R., Clubb, F., & Turnbull, L. (2025). Network‐Scale Dynamics of Alluvial Cover in a Mixed Bedrock‐Alluvial River. Journal of Geophysical Research: Earth Surface, 130(3), Article e2024JF007968. https://doi.org/10.1029/2024jf007968

Limited understanding of how sediment cover varies spatially in mixed bedrock‐alluvial river networks inhibits our comprehension of erosion processes in these systems. This study investigates the complex interactions between channel and sediment prop... Read More about Network‐Scale Dynamics of Alluvial Cover in a Mixed Bedrock‐Alluvial River.

Poleward displacement of the Southern Hemisphere Westerlies in response to Early Holocene warming (2025)
Journal Article
Perren, B. B., Kaiser, J., Arz, H. W., Dellwig, O., Hodgson, D. A., & Lamy, F. (2025). Poleward displacement of the Southern Hemisphere Westerlies in response to Early Holocene warming. Communications Earth & Environment, 6(1), Article 164. https://doi.org/10.1038/s43247-025-02129-z

Recent intensification of the Southern Hemisphere Westerlies has resulted in important changes to ocean circulation, Antarctic ice shelf stability and precipitation regimes in the continents abutting the Southern Ocean. Efforts to resolve the natural... Read More about Poleward displacement of the Southern Hemisphere Westerlies in response to Early Holocene warming.

Ice flow dynamics of the northwestern Laurentide Ice Sheet during the last deglaciation (2025)
Journal Article
Stoker, B. J., Dulfer, H. E., Stokes, C. R., Brown, V. H., Clark, C. D., O'Cofaigh, C., Evans, D. J., Froese, D., Norris, S. L., & Margold, M. (2025). Ice flow dynamics of the northwestern Laurentide Ice Sheet during the last deglaciation. The Cryosphere, 19(2), 869–910. https://doi.org/10.5194/tc-19-869-2025

Reconstructions of palaeo-ice stream activity provide an insight into the processes governing ice stream evolution over millennial timescales. The northwestern sector of the Laurentide Ice Sheet experienced a period of rapid retreat driven by warming... Read More about Ice flow dynamics of the northwestern Laurentide Ice Sheet during the last deglaciation.

Local-and Global-Scale Hydrological and Sediment Connectivity over Grassland and Shrubland Hillslopes (2025)
Journal Article
Tiwari, S., Turnbull, L., & Wainwright, J. (2025). Local-and Global-Scale Hydrological and Sediment Connectivity over Grassland and Shrubland Hillslopes. Journal of Hydrology, 655, Article 132896. https://doi.org/10.1016/j.jhydrol.2025.132896

Quantifying connectivity patterns in dryland ecosystems enables us to understand how changes in the vegetation structure influence the runoff and erosion processes. This knowledge is crucial for mitigating the impacts of climate change and land use m... Read More about Local-and Global-Scale Hydrological and Sediment Connectivity over Grassland and Shrubland Hillslopes.