Publication Beamlines Strategic Pillar
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
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
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
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
Morales, Ana Cristina (2022). Multiphase Atmospheric Chemistry of Selected Secondary Organic Aerosols. Supervisor: Laskin, Alexander; Shepson, Paul B.. Indiana, USA: Purdue University. https://www.proquest.com/docview/2838333524/abstract/BB73ACDCF1DC4324PQ/1?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
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
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
Bonanno, Daniel Joseph (2023). Remote Ambient Aerosols Found in the Southern Great Plains and Eastern North Atlantic: a Comprehensive Analysis of Optical Behavior and Aerosol-Cloud Interaction. Supervisor: Franz, Andreas H.. California, USA: University of the Pacific. https://scholarlycommons.pacific.edu/uop_etds/3846/. 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
Zhang, Peng; Chen, You-Peng; Qiu, Ju-Hui; Dai, You-Zhi; Feng, Bo et al. (2019). Imaging the Microprocesses in Biofilm Matrices. Trends in Biotechnology 37(2) , 214-226. 10.1016/j.tibtech.2018.07.006. SM Environment
Yi, Qing; You, Fang; Li, Zhen; Wu, Songlin; Chan, Ting-Shan et al. (2023). Elemental Sulfur and Organic Matter Amendment Drive Alkaline pH Neutralization and Mineral Weathering in Iron Ore Tailings Through Inducing Sulfur Oxidizing Bacteria. Environmental Science and Technology 57(51) , 21744-21756. 10.1021/acs.est.3c05749. SM Environment
Yang, Jianjun; Xia, Xing; Liu, Jin; Wang, Jian; Hu, Yongfeng et al. (2020). Molecular Mechanisms of Chromium(III) Immobilization by Organo–Ferrihydrite Co-precipitates: The Significant Roles of Ferrihydrite and Carboxyl. Environmental Science and Technology 54(8) , 4820-4828. 10.1021/acs.est.9b06510. SM, SXRMB Environment