Publication Beamlines Strategic Pillar
Hitchcock, Adam P.; Krüger, Peter; Bittencourt, Carla; Swerhone, George D.W.; Lawrence, John R. et al. (2019). Spatially Resolved Soft X-ray Spectroscopy in Scanning X-ray Microscopes. Microscopy and Microanalysis 25(S2) , 254-255. 10.1017/s1431927619002009. SM Environment
Yang, Jianjun; Wang, Jian (2018). Submicron Distribution and Association of Copper and Organic Carbon in A Contaminated Soil Using Scanning Transmission X-ray Microspectroscopy. Microscopy and Microanalysis 24(S2) , 512-513. 10.1017/s1431927618014782. SM Environment
Fraund; Matthew W. (2019). Developing X-ray Spectromicroscopic Techniques to Quantitatively Determine Population Statistics and Individual Particle Composition of Complex Mixed Aerosols. Supervisor: Moffet, Ryan C.. California, USA: University of the Pacific. http://cyber.usask.ca/login?url=https://search.proquest.com/docview/2293976842?accountid=14739. SM Environment
Lambrecht; Nicholas (2019). Insights into Early Earth Ocean Biogeochemistry from Intensive Monitoring of Two Ferruginous Meromictic Lakes. Supervisor: Swanner, Elizabeth D.. Iowa, US: Iowa State University. http://cyber.usask.ca/login?url=https://search.proquest.com/docview/2289587612?accountid=14739. SM Environment
Sowers; Tyler Dale (2019). Organo-Mineral Associations and Sequestration Mechanisms Impacting Carbon Cycling in Diverse Terrestrial and Aquatic Systems. Supervisor: Sparks, Donald L.. DE, USA: University of Delaware. http://cyber.usask.ca/login?url=https://search.proquest.com/docview/2299502936?accountid=14739. SM Environment
Zeitvogel; Fabian (2015). Spatially resolved analysis of the structure and composition of cell-mineral aggregates formed by Fe(II)-oxidizing bacteria and their role in heavy metal sorption processes. Supervisor: Obst, Martin. Baden-Württemberg, Germany: University of Tuebingen. . SM Environment
Chaseé; Mathieu (2017). Supergeneous Ores of Heavy Rare Earth Elements. Paris, France: IMPMC, Paris. . SM Environment
Rouven Metz (2019). Spatial redox heterogeneities in redox-active environmental biofilms: From macro to (sub-) micro-scale. Supervisor: Obst, Martin. Germany: University of Bayreuth. . SM Environment
Harris; Nicola (2017). Hypersaline Potash Mine Tailings and Brine: Microbial Communities and Metal Biosorption Applications. Supervisor: Chang, Won Jae; McBeth, Joyce M. SK, Canada: University of Saskatchewan. http://hdl.handle.net/10388/7863. CMCF-BM, SM Environment
G. Michael Bancroft (2020). The Canadian Light Source: A Story of Scientific Collaboration. In G. Michael Bancroft; Dennis Johnson(Ed.), The Canadian Light Source: A Story of Scientific Collaboration. University of Toronto Press. 9781487537487. FAR-IR, HXMA, MID-IR, REIXS, SGM, SM, VLS-PGM Environment
Tomlin, Jay M.; Jankowski, Kevin A.; Rivera-Adorno, Felipe A.; Fraund, Matthew; China, Swarup et al. (2020). Chemical Imaging of Fine Mode Atmospheric Particles Collected from a Research Aircraft over Agricultural Fields. ACS Earth and Space Chemistry 4(11) , 2171-2184. 10.1021/acsearthspacechem.0c00172. SM Environment
Fraund, Matthew; Bonanno, Daniel J.; China, Swarup; Pham, Don Q.; Veghte, Daniel et al. (2020). Optical properties and composition of viscous organic particles found in the Southern Great Plains. Atmospheric Chemistry and Physics 20(19) , 11593-11606. 10.5194/acp-20-11593-2020. SM Environment
Xia, Xing; Yang, Jianjun; Yan, Yubo; Wang, Jian; Hu, Yongfeng et al. (2020). Molecular Sorption Mechanisms of Cr(III) to Organo-Ferrihydrite Coprecipitates Using Synchrotron-Based EXAFS and STXM Techniques. Environmental Science & Technology 54(20) . 10.1021/acs.est.0c02872. SM, SXRMB Environment
Seyfferth, Angelia L.; Bothfeld, Frances; Vargas, Rodrigo; Stuckey, Jason W.; Wang, Jian et al. (2020). Spatial and temporal heterogeneity of geochemical controls on carbon cycling in a tidal salt marsh. Geochimica et Cosmochimica Acta 282. 10.1016/j.gca.2020.05.013. SM Environment
Hömberg, Annkathrin; Obst, Martin; Knorr, Klaus-Holger; Kalbitz, Karsten; Schaller, Jörg et al. (2020). Increased silicon concentration in fen peat leads to a release of iron and phosphate and changes in the composition of dissolved organic matter. Geoderma 374, 114422. 10.1016/j.geoderma.2020.114422. SM Environment