Profile
Keywords: Advanced Analytical Analysis, Lab management
FES Funded Projects Outputs Show only Author
Title
Category
Date
Authors
Projects
Resilient Reclaimed Land And Water Systems Workshop Annual theme workshop held to share research results to date and discuss theme's future directions. This year we had a number of guests from Alberta Environment and Parks attend. T10-P04, T10-P04B, T10-P04E, T10-P04F, T10-P04H University of Alberta Activity 2018-12-11 Naeth, M. ,
Jennings, D. ,
Gamal El-Din, M. , Pamela Chelme-Ayala,
Wilkinson, S. ,
Adamowicz, V. ,
Boluk, Y. ,
Chang, S. ,
Ullah, A. , Zhanji Zhang, Mingyu Li, Irum Zahara, Stephanie Chute-Ibsen, Laura Bony,
Zhao, Y. ,
Dhar, A. , Selamawit Messele, Rongfu Huang, Abdallatif Abdalrhman, Lei Zhang, Siyuan Wang, Maggie Cascadden, Kylie Heales, Rui Qin, Lingjun Meng, Zhijun Luo, Chelsea Benally, Rosheen Tetzlaff,
Yang, L. ,
" Gary Byrtus
" ,
" Chi Chen
" ,
" Kyle Jones
" ,
" Premee Mohamed
" ,
" Natasha Page
" ,
" Shane Patterson
" , Kenneth Tam
T10-P04, T10-P04B, T10-P04E, T10-P04F, T10-P04H Homogeneous Visible-Light-Driven Photocatalytic System Based On Ferric Citrate For Treatment Of OSPW Poster presentation at the 2019 Future Energy Systems (FES) Student & Post-Doctoral Fellow Colloquium, University of Alberta, May 07, 2019.T10-P04, T10-P04E University of Alberta Activity 2019-05-07 T10-P04, T10-P04E Future Energy Systems (FES) Resilient Reclaimed Land and Water Systems Workshop Future Energy Systems (FES) Resilient Reclaimed Land and Water Systems Workshop, University of Alberta, January 07, 2020. 7-395 Donadeo Innovation Centre for Engineering (ICE). 22 research presentations; 35 participants.T10-P04, T10-P04B, T10-P04E, T10-P04F, T10-P04H, T10-P04I University of Alberta Activity 2020-01-07 Naeth, M. ,
Gamal El-Din, M. ,
Jennings, D. ,
Chang, S. ,
Boluk, Y. ,
Siddique, T. ,
Adamowicz, V. ,
Ullah, A. ,
Serpe, M. ,
Wilkinson, S. , Pamela Chelme-Ayala, Grant K Hauer,
Yang, L. , Christopher Nzediegwu, Soliu Ganiyu, Shailesh Sable, Zuo Tong How, Muhammad Arslan, Vartuhi Tonoyan,
Zhao, Y. , Irum Zahara, Stephanie Chute-Ibsen, Maggie Cascadden, Kylie Heales, Qiuyun Lu, Lingjun Meng, Monsuru Suara, Deborah Crominski da Silva Medeiros, Akeem Olawale Bello, Zhexuan An, Yue Ju, Zhanji Zhang, Huile Gu, Kenneth Tam, Catherine Tays
T10-P04, T10-P04B, T10-P04E, T10-P04F, T10-P04H, T10-P04I Development Of Nanolens-Enhanced Photocatalytic Microreactor For Process Water Treatment Poster presentation at the 2019 Future Energy Systems (FES) Student & Post-Doctoral Fellow Colloquium, University of Alberta, May 07, 2019.T10-P04, T10-P04B University of Alberta Activity 2019-05-07 T10-P04, T10-P04B Characterization of Raw and Ozonated Oil Sand Process Water Utilizing Atmospheric Pressure Gas Chromatography Time-of-Flight Mass Spectrometry Combined with Solid Phase Microextraction T10-P04, T10-P04E University of Alberta Publication 2020-11-21 T10-P04, T10-P04E Enhanced Photocatalytic Degradation Of Organic Contaminants In Water By Highly Tunable Surface Microlenses T10-P04, T10-P04B University of Alberta Publication 2023-03-20 T10-P04, T10-P04B Floating ZnO Nanoparticles-Coated Micro Glass Bubbles For The Efficient Photodegradation Of Micropollutants In Water T10-P04, T10-P04B, T10-P04E University of Alberta Publication 2024-03-05 T10-P04, T10-P04B, T10-P04E A novel approach for immobilizing Ag/ZnO nanorods on a glass substrate: Application in solar light-driven degradation of micropollutants in water T10-P04 University of Alberta Publication 2025-01-01 T10-P04 Fate Of Dissolved Organics In Oil Sands Process Water During Long-Term Storage: Mechanistic Insights Into Toxicity Removal And Microbial Processes T10-P04 University of Alberta Publication 2025-04-01 T10-P04 Simultaneous Degradation Of Multiple Micropollutants In Flowing Water By Mild And Strong Microbubble-Enhanced Cold Plasma Activation T10-P04 University of Alberta Publication 2025-07-15 T10-P04 Determination Of Naphthenic Acids In Oil Sands Tailings: Extraction, Cleanup, And Molecular Characterization T10-P04 University of Alberta Publication 2025-11-04 T10-P04 Innovative hybrid approach for enhanced PFAS degradation and removal: Integrating membrane distillation, cathodic electro-Fenton, and anodic oxidation Per- and polyfluoroalkyl substances (PFAS) are persistent environmental contaminants that pose significant toxicity risks to humans and ecosystems. Traditional advanced oxidation processes using boron-doped diamond (BDD) anodes degrade PFAS in wastewater effectively but suffer from slow kinetics and high energy costs, limiting commercial application. This study introduces a hybrid process combining cathodic electro-Fenton (EF), anodic oxidation via a BDD anode, and membrane distillation (MD) to improve perfluorooctanoate (PFOA) degradation efficiency and reduce energy use. Increasing the current density from 50 to 500 A/m2 significantly raised the concentration of produced H2O2 from 0.25 mM to 2.3 mM, accelerating PFOA degradation and mineralization. At 50 A/m2, no mineralization of PFOA occurred in the EF/BDD process, while the EF/BDD-MD process achieved 45% mineralization due to increased PFOA concentration in the electrolytic cell. At 500 A/m2, the EF/BDD-MD process achieved 95% PFOA mineralization. Findings reveal that while EF-generated •OH radicals assist degradation, the BDD(•OH) anode was the primary driver, driving 80% of the reaction. This degradation was initiated by direct electron transfer at the BDD surface, followed by homogeneous and heterogeneous •OH radicals enhancing the degradation and mineralization process. The hybrid process also lowered energy consumption, making the treatment feasible for large scales.
T10-A02 University of Alberta Publication 2025-04-15 T10-A02