Publication Beamlines Strategic Pillar
Van Loon, Lisa; Banerjee, Neil; Brinkman, Don (2020). Synchrotron Micro Computed Tomography for Non-destructive 3D Studies of Fossil Fish. Microscopy and Microanalysis 26(S2) , 1252-1254. 10.1017/s1431927620017481. CLS-APS Environment
Van Loon, Lisa L.; McIntyre, N. Stewart; Bauer, Michael; Sherry, Nathaniel S.A.; Banerjee, Neil R. et al. (2019). Peakaboo: Advanced software for the interpretation of X-ray fluorescence spectra from synchrotrons and other intense X-ray sources. Software Impacts 2, 100010. 10.1016/j.simpa.2019.100010. CLS-APS, IDEAS Environment
Wang, Alana O.; Ptacek, Carol J.; Blowes, David W.; Finfrock, Y. Zou; Paktunc, Dogan et al. (2020). Use of hardwood and sulfurized-hardwood biochars as amendments to floodplain soil from South River, VA, USA: Impacts of drying-rewetting on Hg removal. Science of the Total Environment 712, 136018. 10.1016/j.scitotenv.2019.136018. CLS-APS Environment
Wang, Alana O.; Ptacek, Carol J.; Blowes, David W.; Gibson, Blair D.; Landis, Richard C. et al. (2019). Application of hardwood biochar as a reactive capping mat to stabilize mercury derived from contaminated floodplain soil and riverbank sediments. Science of the Total Environment 652, 549-561. 10.1016/j.scitotenv.2018.10.213. CLS-APS, SXRMB Environment
Wang, Alana O.; Ptacek, Carol J.; Mack, E. Erin; Blowes, David W. (2021). Impact of multiple drying and rewetting events on biochar amendments for Hg stabilization in floodplain soil from South River, VA. Chemosphere 262, 127794. 10.1016/j.chemosphere.2020.127794. CLS-APS, SXRMB Environment
Wang, Alana O.; Ptacek, Carol J.; Paktunc, Dogan; Mack, E. Erin; Blowes, David W. et al. (2020). Application of biochar prepared from ethanol refinery by-products for Hg stabilization in floodplain soil: Impacts of drying and rewetting. Environmental Pollution 267, 115396. 10.1016/j.envpol.2020.115396. CLS-APS Environment
Wang, Alana O.; Ptacek, Carol J.; Wilson, David; Blowes, David W. (2025). Geochemical stability of vitrified glass prepared from arsenic trioxide roaster waste from the Giant Gold Mine (Yellowknife, NT). Journal of Hazardous Materials 493, 138098. 10.1016/j.jhazmat.2025.138098. CLS-APS, HXMA Environment
Yang, Xinru; Liu, Peng; Yao, Meng; Sun, He; Liu, Ruxue et al. (2021). Mechanism and enhancement of Cr(VI) contaminated groundwater remediation by molasses. Science of the Total Environment 780, 146580. 10.1016/j.scitotenv.2021.146580. CLS-APS Environment
Ye, Zhihang; Zhou, Jianwei; Liao, Peng; Finfrock, Y. Zou; Liu, YingYing et al. (2022). Metal (Fe, Cu, and As) transformation and association within secondary minerals in neutralized acid mine drainage characterized using X-ray absorption spectroscopy. Applied Geochemistry 139, 105242. 10.1016/j.apgeochem.2022.105242. CLS-APS, SXRMB Environment
Yu, Dawei; Paktunc, Dogan (2018). Calcium Chloride-Assisted Segregation Reduction of Chromite: Influence of Reductant Type and the Mechanism. Minerals 8(2) , 45. 10.3390/min8020045. CLS-APS Environment
Zhang, Xueni; Maciag, Bryan J.; Brenan, James M.; Mungall, James E. (2022). Experimental study of the partitioning of some platinum group elements (Pd and Ir) between orthopyroxene and silicate melt. Geochimica et Cosmochimica Acta 339, 127-138. 10.1016/j.gca.2022.10.038. CLS-APS Environment
James, Ashley K.; Dolgova, Natalia V.; Nehzati, Susan; Korbas, Malgorzata; Cotelesage, Julien J. H. et al. (2022). Molecular Fates of Organometallic Mercury in Human Brain. ACS Chemical Neuroscience 13(12) , 1756-1768. 10.1021/acschemneuro.2c00166. CLS-APS Health
Summers, Kelly L; Dolgova, Natalia V; Gagnon, Kenneth B; Sopasis, George J; James, Ashley K et al. (2020). PBT2 acts through a different mechanism of action than other 8-hydroxyquinolines: an X-ray fluorescence imaging study. Metallomics 12(12) , 1979-1994. 10.1039/d0mt00222d. CLS-APS Health
Abdelhafiz, Ali; Mohammed, Mona H.; Abed, Jehad; Lee, Dong‐Chan; Chen, Mengjie et al. (2024). Tri‐Metallic Catalyst for Oxygen Evolution Reaction Enables Continuous Operation of Anion Exchange Membrane Electrolyzer at 1A cm−2 for Hundreds of Hours. Advanced Energy Materials 14(16) . 10.1002/aenm.202303350. CLS-APS Materials
Abed, Jehad; Heras-Domingo, Javier; Sanspeur, Rohan Yuri; Luo, Mingchuan; Alnoush, Wajdi et al. (2024). Pourbaix Machine Learning Framework Identifies Acidic Water Oxidation Catalysts Exhibiting Suppressed Ruthenium Dissolution. Journal of the American Chemical Society 146(23) , 15740-15750. 10.1021/jacs.4c01353. CLS-APS, SM Materials