Publications (Google Scholar | ResearchGate)

29 Authigenic carbonate burial within the Late Devonian Western Canada Sedimentary Basin and its impact on the global carbon cycle. Geochemistry, Geophysics, Geosystems. 25: e2023GC011376
Gazdewich, S., Hauck, T. and Husson, J. M.. 2024. doi:10.1029/2023GC011376
28 Morphological trends across the Norian/Rhaetian boundary within Late Triassic conodonts in western Canada: implications for protracted paleoenvironmental disturbance preceding the end-Triassic mass extinction. Paleobiology. 1-11
Lei, J. Z. X., Golding, M. L. and Husson, J. M.. 2023. doi:10.1017/pab.2023.30
27 River chemistry reveals a large decrease in dolomite abundance across the Phanerozoic. Geochemical Perspectives Letters. 26: 1-6
Husson, J. M. and Coogan, L. A. 2023. doi:10.7185/geochemlet.2316
26 Paleoenvironmental interpretation of the Late Triassic Norian – Rhaetian boundary interval in the Whitehorse Trough (Stikine Terrane, northern Canadian Cordillera). Palaeogeography, Palaeoclimatology, Palaeoecology. 608: 111306
Lei, J. Z. X., Golding, M. L. and Husson, J. M.. 2022. doi:10.1016/j.palaeo.2022.111306
25 Global and local drivers of the Ediacaran Shuram carbon isotope excursion. Earth and Planetary Science Letters. 579: 117368
Busch, J., Hodgin, E. B., Ahm, A-S. C., Husson, J. M., Macdonald, F. A., Bergmann, K. D., Higgins, J. A. and Strauss, J. V. 2022. doi:10.1016/j.epsl.2022.117368
24 Local and global controls on carbon isotope chemostratigraphy. Elements in Geochemical Tracers in Earth System Science: Cambridge University Press (invited review).
Ahm, A-S. C. and Husson, J. M.. 2022. doi:10.1017/9781009028882
23 Macrostratigraphy: Insights into Cyclic and Secular Evolution of the Earth-Life System. Annual Review of Earth and Planetary Sciences (invited review). 50:419-449
Peters, S. E., Quinn, D., Husson, J. M. and Gaines, R. 2022. doi:10.1146/annurev-earth-032320-081427
22 Igneous rock area and age in continental crust. Geology. 49(10):1235-1239
Peters, S. E., Walton, C., Husson, J. M., Quinn, D., Shorttle, O., Keller, C. B. and Gaines, R. 2021. doi:10.1130/G49037.1
21 The Sedimentary Geochemistry and Paleoenvironments Project. Geobiology. 19:545-556
Farrell, Ù. C., Samawi, R. [... and 39 co-authors ...], Husson, J. M. [... and 67 co-authors]. 2021. doi:10.1111/gbi.12462
20 Stable carbon isotope record of carbonate across the Carnian - Norian boundary at the prospective GSSP section at Black Bear Ridge, British Columbia, Canada. Albertiana. 46: 1-10
Lei, J. Z. X., Husson, J. M., Golding, M. L., Orchard, M. J. and Zonneveld, J-P. 2021. [pdf]
19 Large isotopic variability at the micron-scale in 'Shuram' excursion carbonates from South Australia. Earth and Planetary Science Letters. 538: 116211
Husson, J. M., Linzmeier, B. J., Kitajima, K., Ishida, A., Maloof, A. C., Schoene, B., Peters, S. E. and Valley, J. V. 2020. doi:10.1016/j.epsl.2020.116211
18 Authigenic Carbonate Burial in the Late Devonian–Early Mississippian Bakken Formation (Williston Basin, USA). Sedimentology. 67: 2065-2094
Barnes, B. D., Husson, J. M. and Peters, S. E. 2020. doi:10.1111/sed.12695
17 Neoproterozoic glacial origin of the Great Unconformity. Proceedings of the National Academy of Sciences. 116(4): 1136-1145
Keller, C. B., Husson, J. M. , Mitchell, R. N., Bottke, W. F., Gernon, T. M., Boehnke, P., Bell, E. A., Swanson-Hysell, N. L. and Peters, S. E. 2019. doi:10.1073/pnas.1804350116
16 Nature of the sedimentary rock record and its implications for Earth system evolution. Emerging Topics in Life Sciences (invited review). 2(2): 125-136
Husson, J. M. and Peters, S. E. 2018. doi:10.1042/ETLS20170152
15 Macrostrat: a platform for geological data integration and deep-time Earth crust research. Geochemistry, Geophysics, Geosystems. 19(4): 1393-1409
Peters, S. E., Husson, J. M. and Czaplewski, J. J. 2018. doi:10.1029/2018GC007467
14 We need a global comprehensive stratigraphic database: here’s a start. The Sedimentary Record. 16(1): 4-9
Peters, S. E. and Husson, J. M. 2018. doi:10.2110/sedred.2018.1
13 A new tool for deep-down data mining. Eos. 98
Peters, S. E., Ross, I., Czaplewski, J., Glassel, A., Husson, J. M., Syverson, V., Zaffos, A., and Livny, M. 2017. doi:10.1029/2017EO082377
12 The rise and fall of stromatolites in shallow marine environments. Geology. 45: 487-490
Peters, S. E., Husson, J. M. and Wilcots, J. W. 2017. doi:10.1130/G38931.1
11 Sediment cycling on continental and oceanic crust. Geology. 45: 323-326
Peters, S. E. and Husson, J. M. 2017. doi:10.1130/G38861.1
10 Atmospheric oxygenation driven by unsteady growth of the continental sedimentary reservoir. Earth and Planetary Science Letters. 460: 69-75
Husson, J. M. and Peters, S. E. 2017. doi:10.1016/j.epsl.2016.12.012
9 Chemostratigraphic and U-Pb geochronologic constraints on carbon cycling across the Silurian-Devonian boundary. Earth and Planetary Science Letters. 436: 108-120
Husson, J. M., Schoene, B., Bluher, S. E., and Maloof, A. C. 2016. doi:10.1016/j.epsl.2015.11.044
8 Volcanic-plutonic parity and the differentiation of the continental crust. Nature. 523: 301-307
Keller, C. B., Schoene, B., Barboni, M., Samperton, K. M., and Husson, J. M. 2015. doi:10.1038/nature14584
7 Ca and Mg isotope constraints on the origin of Earth’s deepest δ13C excursion. Geochimica et Cosmochimica. 160: 243-266
Husson, J. M., Higgins, J. A., Maloof, A. C., and Schoene, B. 2015. doi:10.1016/j.gca.2015.03.012
6 Stratigraphic expression of Earth’s deepest δ13C excursion in the Wonoka Formation of South Australia. American Journal of Science. 315: 1-45
Husson, J. M., Maloof, A. C., Schoene, B., Chen, C. Y., and Higgins, J. A. 2015. doi:10.2475/01.2015.01
5 A syn-depositional age for Earth’s deepest δ13C excursion required by isotope conglomerate tests. Terra Nova. 24: 318-325
Husson, J. M., Maloof, A. C., and Schoene, B. 2012. doi:10.1111/j.1365-3121.2012.01067.x
4 Constraints on the origin and relative timing of the Trezona δ13C anomaly below the end-Cryogenian glaciation. Earth and Planetary Science Letters. 319: 241-250
Rose, C. V., Swanson-Hysell, N. L., Husson, J. M., Poppick, L. N., Cottle, J. M., Schoene, B., and Maloof, A. C. 2012. doi:10.1016/j.epsl.2011.12.027
3 Dominant eukaryotic export production during ocean anoxic events reflects the importance of recycled NH4+. Proceedings of the National Academy of Sciences. 109: 2269-2274
Higgins, M. B., Robinson, R. S., Husson, J. M., Carter, S. J., and Pearson, A. 2012. doi:10.1073/pnas.1104313109
2 An emerging picture of Neoproterozoic ocean chemistry: insights from the Chuar Group, Grand Canyon, USA. Earth and Planetary Science Letters. 290: 64-73
Johnston, D. T., Poulton, S. W., Dehler, C., Porter, S., Husson, J., Canfield, D. E., and Knoll, A. H. 2010. doi:10.1016/j.epsl.2009.11.059
1 Are basal Ediacaran (635 Ma) post-glacial “cap dolostones” diachronous? Earth and Planetary Science Letters. 258: 114-131
Hoffman, P., Halverson, G., Domack, E., Husson, J. M., Higgins, J., and Schrag, D. 2007. doi:10.1016/j.epsl.2007.03.032