Publication Beamlines Strategic Pillar
Jalilehvand, Farideh; Homayonia, Saba; Zhang, Ping; Ling, Chang-Chun (2023). Gadolinium(III) complex formation with a β-cyclodextrin ligand: an XAS study of a potential MRI contrast agent. Journal of Biological Inorganic Chemistry . 10.1007/s00775-023-02027-9. BIOXAS-MAIN, BIOXAS-SPECTROSCOPY Health
Chadirji-Martinez, Kamil (2023). THORIUM SPECIATION IN SYNTHETIC ANHYDRITE, PLACER ILMENITE CONCENTRATE, AND TITANIA SLAG: IMPLICATIONS FOR THORIUM GEOCHEMICAL BEHAVIOR, SEQUESTRATION, AND BENEFICIATION. Supervisor: Pan, Yuanming. Saskatchewan, Canada: University of Saskatchewan. https://hdl.handle.net/10388/15306. BIOXAS-SPECTROSCOPY, VESPERS Environment
Mendoza Rengifo, Mery (2023). Complex Interplay of Mercury and Arsenic with Sulfur and Selenium in Biological Systems. Supervisor: Pickering, Ingrid; George, Graham. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/items/a7bbfbfe-67f7-4b7d-a4f2-c1990e1b1dd7. BIOXAS-MAIN Environment
Uwanyirigira, Janviere (2023). Integrated Synchrotron Approaches to Characterize Organic Matter-Iron Phases Relevant to Passive Mine Waste Remediation Systems. Supervisor: McBeth, Joyce. Saskatchewan, Canada: University of Saskatchewan. https://hdl.handle.net/10388/14832. BIOXAS-IMAGING, BIOXAS-MAIN, BIOXAS-SPECTROSCOPY, BXDS-WHE, CMCF-BM, SGM, SXRMB Environment
Schoepfer, Valerie A.; Jamieson, Heather E.; McBeth, Joyce M.; Hayatifar, Ardalan; Lindsay, Matthew B.J. et al. (2026). Suppression of arsenic trioxide dissolution by antimony substitution. Journal of Hazardous Materials 517, 143718. 10.1016/j.jhazmat.2026.143718. BIOXAS-MAIN, BXDS-WHE, EIML Environment
Baalousha, Mohammed; Desmau, Morgane; Foster, Andrea (2026). Evolution of arsenic speciation during thermal treatment simulating wildfire heating in arsenic-rich sediments. Journal of Hazardous Materials 516, 143271. 10.1016/j.jhazmat.2026.143271. BIOXAS-MAIN Environment
Xu, Xiyang; Joshi, Prachi; Hockmann, Kerstin; Dreher, Carolin L.; Schoepfer, Valerie et al. (2026). Antimony coprecipitation suppresses microbial reduction of goethite and hematite and limits Sb release across particle sizes. Geochimica et Cosmochimica Acta . 10.1016/j.gca.2026.01.034. BIOXAS-MAIN Environment
Deevsalar, Reza; Pan, Yuanming; Cao, Kenan; Zhu, Yuxiang; Tunc, Ayetullah et al. (2025). Cerium Speciation in Durango Fluorapatite from X-Ray Photoelectron and X-Ray Absorption Spectroscopy: Implications for the Ce-in-Apatite Oxybarometer. Canadian Journal of Mineralogy and Petrology 63(4) , 371-383. 10.3749/2400050. BIOXAS-MAIN, HXMA, SXRMB Environment
Desmau, Morgane; Skierszkan, Elliott K.; Oka, Gladys; Kaur, Inderjeet; Schoepfer, Valerie A. et al. (2025). Multi-contaminant removal from synthetic mine-impacted water by permeable reactive barriers under cold conditions. Chemosphere 384, 144499. 10.1016/j.chemosphere.2025.144499. BIOXAS-IMAGING, BIOXAS-MAIN, BIOXAS-SPECTROSCOPY Environment
Zhang, Guoqing; Tang, Yixuan; Lin, Jinru; Xu, Jiaxing; Yuan, Zidan et al. (2024). Magnetic and structural characteristics associated with the transformation of As(v)-coprecipitated ferrihydrite to hematite: implications for magnetic enhancement in soils and sediments. Environmental Science: Nano 11(5) , 1985-1999. 10.1039/d3en00739a. BIOXAS-SPECTROSCOPY Environment
Ma, Xu; Yuan, Zidan; Lin, Jinru; Cui, Yubo; Wang, Shaofeng et al. (2024). Local Structure and Crystallization Transformation of Hydrous Ferric Arsenate in Acidic H2O–Fe(III)–As(V)–SO42– Systems: Implications for Acid Mine Drainage and Arsenic Geochemical Cycling. Environmental Science and Technology 58(16) , 7176-7185. 10.1021/acs.est.4c01235. BIOXAS-SPECTROSCOPY Environment
Ngan, Aldrich; Milan, Emile; Chen, Zi Qi; Chan, Christopher C.; Iman, Azwa et al. (2025). In situ formed Se–TiO2 as a highly reusable photocatalyst for selenium reduction and removal from industrial wastewater. Chemosphere 370, 143959. 10.1016/j.chemosphere.2024.143959. BIOXAS-SPECTROSCOPY Environment
Ngan, Aldrich; Chen, Zi Qi; Bleasdale-Pollowy, Aaron; Chan, Christopher; Gu, Frank et al. (2025). Ambient solar-driven selenate reduction and removal from industrial brine using TiO2-based buoyant photocatalysts. Water Research 268, 122761. 10.1016/j.watres.2024.122761. BIOXAS-SPECTROSCOPY Environment
Yu, Changxun; Johnson, Anders; Karlsson, Andreas; Chernikov, Roman; Sjöberg, Viktor et al. (2024). Uranium Repartitioning during Microbial Driven Reductive Transformation of U(VI)-Sorbed Schwertmannite and Jarosite. Environmental Science and Technology . 10.1021/acs.est.4c03645. BIOXAS-MAIN Environment
Skierszkan, Elliott K.; Schoepfer, Valerie A.; Fellwock, Matthew; Lindsay, Matthew B. J. (2024). Uranium Speciation and Mobilization in Thawing Permafrost. Environmental Science and Technology . 10.1021/acs.est.4c05594. BIOXAS-IMAGING, BIOXAS-MAIN Environment