Publications

This list was last updated on 2024-10-10. A full and up-to-date set of my articles can be found on my Google Scholar profile. I endeavour to make all of my work open access, but if you can't access a paper you're interested in, please don't hesitate to get in touch and I'll be happy to send you a copy.

* = PhD student (co-)supervision; † = Masters student (co-)supervision

🟢 = Open-access; 🔒 = Not open-access [email me for a copy!]

Published
2025

  • Tipper, E.T., Bouchez, J., Lipp, A. G. and Lupker, M. (2025) ‘The geochemistry of fluvial sediments from large rivers: Old problems and new developments.’ In: Weis, D and Anbar, A. (eds.) Treatise on Geochemistry, 3e. vol. 2, pp. 315-351. DOI:10.1016/B978-0-323-99762-1.00067-X 🔒

2024

  • Chrapkiewicz, K., Lipp, A. G., Barron, L., Barnes, R., and Roberts, G. ‘Apportioning sources of chemicals of emerging concern along an urban river with inverse modelling’ Science of the Total Environment DOI:10.1016/j.scitotenv.2024.172827 🟢
  • Barnes, R. and Lipp, A. G. ‘Apportioning tracer and pollutant sources in drainage networks from nested concentration observations using an efficient convex unmixing scheme’ Water Resources Research Preprint DOI:10.1029/2023WR036159 🟢
  • Walton, C., Rigley, J., Lipp, A. G., Law, R., Suttle, M., Schönbächler, M., Wyatt, M., and Shorttle, O. ‘Cosmic dust fertilization of prebiotic chemistry on early Earth’ Nature Astronomy DOI: 10.1038/s41550-024-02212-z 🟢

2023

  • (*) Morris, M. J., Lipp, A. G., and Roberts, G. G. ‘Towards inverse modeling of landscapes using the Wasserstein distance’. Geophysical Research Letters 50.14 DOI: 10.1029/2023GL103880 🟢
  • Lipp, A. G. and Vermeesch, P. ‘Short Communication: The Wasserstein distance as a dissimilarity metric for comparing detrital age spectra, and other geological distributions’. Geochronology 5.1 DOI: 10.5194/gchron-5-263-2023 🟢
  • Walton, C., Hao, J., Fang, H., Jenner, F., Williams, H., Zerkle, A., Lipp, A. G., Hazen, R., Peters, S., and Shorttle, O. S. ‘Evolution of the crustal phosphorus reservoir’. Science Advances 9.18 DOI: 10.1126/sciadv.ade6923 🟢
  • Vermeesch, P., Lipp, A. G., Hatzenbuhler, D., Caracciolo, L., and Chew, D. ‘Multidimensional scaling of varietal data in sedimentary provenance analysis’. Journal of Geophysical Research: Earth Surface DOI: 10.1029/2022JF006992 🟢
  • (†) Eschenfelder, J. A., Lipp, A. G., Roberts G. G. ‘Quantifying excess heavy metal concentrations in drainage basins using conservative mixing modelling’. Journal of Geochemical Exploration DOI: 10.1016/j.gexplo.2023.107178 🟢
  • Lipp, A. G., de Caritat, P., and Roberts, G. G. ‘Geochemical mapping by unmixing alluvial sediments’. Journal of Geochemical Exploration DOI: 10.1016/j.gexplo.2023.107174 🟢

2021

  • Lipp, A. G., Roberts G. G., Gowing, C. J. B., Whittaker, A. C., and Fernandes, V. M. ‘Source region geochemistry from unmixing downstream sedimentary elemental compositions’. Geochemistry, Geophysics, Geosystems 22.10 DOI: 10.1029/2021GC009838 🟢
  • Farrell, U., …, Lipp, A. G., …, Planavsky, N. J., Lau, K. V., Johnston, D. J., Sperling, E. A. ‘The Sedimentary Geochemistry and Paleoenvironments Project’. Geobiology 19.6 DOI: 10.1111/gbi.12462 🟢
  • Lipp, A. G. and Roberts, G. G. ‘Scale-dependent flow directions of rivers and the importance of sub-plate support’. Geophysical Research Letters 48.1 DOI: 10.1029/2020GL091107 🟢
  • Lipp, A. G., Shorttle, O., Sperling, E., and Sedimentary Geochemistry Paleoenvironments Project Team Members. ‘The composition and weathering of the continents over geologic time’. Geochemical Perspective Letters 17. DOI: 10.7185/geochemlet.2109 🟢

2020

  • Lipp, A. G., Roberts, G. G., Gowing, C. J. B., Whittaker, A. C., and Fernandes, V. M. ‘River sediment geochemistry as a conservative mixture of source regions: Observations and predictions from the Cairngorms, UK’. Journal of Geophysical Research: Earth Surface 125.12. DOI: 10.1029/2020JF005700 🟢
  • Lipp, A. G., Shorttle, O., Syvret, F. and Roberts, G. G. ‘Major Element Composition of Sediments in Terms of Weathering and Provenance: Implications for Crustal Recycling’. Geochemistry, Geophysics, Geosystems 21.6. DOI: 10.1029/2019GC008758 🟢