Author Cui, Xuesong

1 to 11 of 11 Items
  • 2018 Journal Article | 
    ​ ​Fe0/H2O Systems for Environmental Remediation: The Scientific History and Future Research Directions​
    Hu, R.; Cui, X.; Gwenzi, W.; Wu, S. & Noubactep, C. ​ (2018) 
    Water10(12) art. 1739​.​ DOI: https://doi.org/10.3390/w10121739 
    Details  DOI 
  • 2019 Journal Article | 
    ​ ​Characterizing the Suitability of Granular Fe$^0$ for the Water Treatment Indu try​
    Hu, R.; Cui, X.; Qiu, P.; Lufingo, M.; Gwenzi, W.; Noubactep, C.   & Xiao, M.​ (2019) 
    Processes7(10) pp. 652​.​ DOI: https://doi.org/10.3390/pr7100652 
    Details  DOI 
  • 2020 Journal Article | 
    ​ ​Understanding the Operating Mode of Fe0/Fe-Sulfide/H2O Systems for Water Treatment​
    Xiao, M.; Hu, R.; Cui, X.; Gwenzi, W. & Noubactep, C. ​ (2020) 
    Processes8(4) pp. 409​.​ DOI: https://doi.org/10.3390/pr8040409 
    Details  DOI 
  • 2020 Journal Article | 
    ​ ​Metallic Iron for Environmental Remediation: Starting an Overdue Progress in Knowledge​
    Hu, R.; Yang, H.; Tao, R.; Cui, X.; Xiao, M.; Amoah, B. K. & Cao, V. et al.​ (2020) 
    Water12(3) pp. 641​.​ DOI: https://doi.org/10.3390/w12030641 
    Details  DOI 
  • 2020 Journal Article | 
    ​ ​Validating the Efficiency of the FeS2 Method for Elucidating the Mechanisms of Contaminant Removal Using Fe0/H2O Systems​
    Xiao, M.; Cui, X.; Hu, R.; Gwenzi, W. & Noubactep, C. ​ (2020) 
    Processes8(9) pp. 1162​.​ DOI: https://doi.org/10.3390/pr8091162 
    Details  DOI 
  • 2021 Journal Article | Research Paper | 
    ​ ​Characterizing the impact of pyrite addition on the efficiency of Fe0/H2O systems​
    Hu, R.; Cui, X.; Xiao, M.; Gwenzi, W. & Noubactep, C.​ (2021) 
    Scientific Reports11(1) art. 2326​.​ DOI: https://doi.org/10.1038/s41598-021-81649-y 
    Details  DOI 
  • 2022 Journal Article | 
    ​ ​The Suitability of Hybrid Fe0/Aggregate Filtration Systems for Water Treatment​
    Tao, R.; Yang, H.; Cui, X.; Xiao, M.; Gatcha-Bandjun, N.; Kenmogne-Tchidjo, J. F. & Lufingo, M. et al.​ (2022) 
    Water14(2).​ DOI: https://doi.org/10.3390/w14020260 
    Details  DOI 
  • 2023 Journal Article
    ​ ​Understanding the process of phosphate removal in Fe0/H2O systems using the methylene blue method​
    Konadu-Amoah, B.; Hu, R.; Cui, X.; Tao, R.; Ndé-Tchoupé, A. I.; Gwenzi, W. & Noubactep, C. ​ (2023) 
    Chemical Engineering Journal465 art. 143042​.​ DOI: https://doi.org/10.1016/j.cej.2023.143042 
    Details  DOI 
  • 2023 Journal Article
    ​ ​Influence of Water Salinity on the Efficiency of Fe0-Based Systems for Water Treatment​
    Tao, R.; Cui, X.; Xiao, M.; Hu, R.; Gwenzi, W.; Ruppert, H. & Noubactep, C.​ (2023) 
    Water15(13) pp. 2466​.​ DOI: https://doi.org/10.3390/w15132466 
    Details  DOI 
  • 2023 Journal Article | 
    ​ ​Developing the Ascorbic Acid Test: A Candidate Standard Tool for Characterizing the Intrinsic Reactivity of Metallic Iron for Water Remediation​
    Cui, X.; Xiao, M.; Tao, R.; Hu, R.; Ruppert, H. ; Gwenzi, W. & Noubactep, C. ​ (2023) 
    Water15(10).​ DOI: https://doi.org/10.3390/w15101930 
    Details  DOI 
  • 2023 Journal Article | 
    ​ ​Metallic iron for environmental remediation: the still overlooked iron chemistry​
    Xiao, M.; Hu, R.; Tao, R.; Cui, X.; Konadu-Amoah, B.; Yang, H. & Ndé-Tchoupé, A. I. et al.​ (2023) 
    Applied Water Science13(11) art. 222​.​ DOI: https://doi.org/10.1007/s13201-023-02028-8 
    Details  DOI 

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