Biography

Dr. Amirhomayoun Saffarzadeh

Faculty of Engineering

Kyushu University, Japan

Associate Professor


Email: [email protected]


Qualifications

2005  D.Eng., Kyushu University, Japan, Earth Resources Engineering

1996  M.Sc., University of Tehran, Iran, Sedimentary Geology

1991  B.Sc., Kharazmi University, Iran, Geology


Publications (Selected)

  1. Zhao, C., Wang, X., Rao, Y. et al. Hydration and Pb Stabilization Mechanisms of Fly Ash–Slag-Based Mine Backfilling Binders. Int J Environ Res 18, 94 (2024). https://doi.org/10.1007/s41742-024-00642-1
  2. Nag, M. , Saffarzadeh, A. and Shimaoka, T. (2022) Feasibility of Natural Zeolite for Heavy Metal Stabilization in Municipal Solid Waste Incineration Fly Ash: A Novel Approach. Journal of Geoscience and Environment Protection, 10, 70-86. doi: 10.4236/gep.2022.107005.
  3. Nag, M., Saffarzadeh, A., Shimaoka, T., Nakayama, H. (2022). Degree of Pb stabilization in MSWI fly ash using size-fractionated natural fishbone hydroxyapatite. Environmental Research and Technology, 5(2), 137-147. https://doi.org/10.35208/ert.998326
  4. Saffarzadeh, A., Nag, M., Nomichi, T., Shimaoka, T., Nakayama, H., Komiya, T. (2021). A Novel Approach for Stabilizing Heavy Metals in Municipal Solid Waste Incineration (MSWI) Fly Ash Using Waste Fishbone Hydroxyapatite (FB-HAP). In: Ksibi, M., et al. Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions (2nd Edition). EMCEI 2019. Environmental Science and Engineering. Springer, Cham. https://doi.org/10.1007/978-3-030-51210-1_124
  5. Saffarzadeh, A., Shimaoka, T., Nakayama, H. et al. (2019). Lessons learned from the Ezgeleh–Sarpol Zahab earthquake of November 2017: status of damage and disposal of disaster waste. Waste Dispos. Sustain. Energy 1, 301–317. https://doi.org/10.1007/s42768-019-00025-9
  6. Miyake, M., Komiya, T., Saffarzadeh, A., and Shimaoka, T. (2019). “Hydrogen Gas Generation from Municipal Solid Waste Incineration Bottom Ash and its Enhancement”, Journal of Japan Society of Civil Engineers, Ser. G (Environmental Research), vol. 75, no. 7, pp. III_217–III_224, 2019. doi:10.2208/jscejer.75.7_III_217.
  7. Mu, Y., Saffarzadeh, A., and T. Shimaoka (2018) Utilization of waste natural fishbone for heavy metal stabilization in municipal solid waste incineration (MSWI) fly ash. Journal of Cleaner Production 172, 3111-3118.
  8. Saffarzadeh, A., Shimaoka, T., Nakayama, H., Hanashima, T., Yamaguchi, K., and K. Manabe (2017) Efforts for the management of disaster waste upon April 2016 Kumamoto Earthquake, Japan. Natural Hazards, 89 (3) 1273-1290.
  9. Saffarzadeh, A., Shimaoka, T., Nakayama, H. et al. Tasks and problems involved in the handling of disaster waste upon April 2016 Kumamoto Earthquake, Japan. Nat Hazards 89, 1273–1290 (2017). https://doi.org/10.1007/s11069-017-3021-1
  10. Nithiya, A., Saffarzadeh, A., and T. Shimaoka (2017) Hydrogen gas generation from metal aluminum-water interaction in municipal solid waste incineration (MSWI) bottom ash. Waste Management (Article in Press).
  11. Inkaew, K., Saffarzadeh, A., and T. Shimaoka (2017) Characterization of residues involved in the ash quenching system: A material recycling perspective. Applied Mechanics and Materials, 866, 112-115.
  12. Mu, Y., Saffarzadeh, A., and T. Shimaoka (2016) Influence of ignition process on mineral phase transformation in municipal solid waste incineration fly ash: Implications for estimating loss-on-ignition (LOI). Waste Management, 59, 222-228.
  13. Yang, S., Saffarzadeh, A., Shimaoka, T., Kawano, T., and Y. Kakuta (2016) The impact of thermal treatment and cooling methods on municipal solid waste incineration bottom ash with an emphasis on Cl. Environmental Technology, 37 (20) 2564-71.
  14. Inkaew, K., Saffarzadeh, A., and T. Shimaoka (2016) Modeling the formation of the quench product in municipal solid waste incineration (MSWI) bottom ash. Waste Management, 52, 159-168.
  15. Mu, Y., Saffarzadeh, A., and T. Shimaoka (2016) Feasibility of using natural fishbone apatite on removal of Pb from municipal solid waste incineration (MSWI) fly ash. Procedia Environmental Sciences, 31, 345-350.
  16. Saffarzadeh, A., Arumugam, N., and T. Shimaoka (2016) Aluminum and aluminum alloys in municipal solid waste incineration (MSWI) bottom ash: A potential source for the production of hydrogen gas. International Journal of Hydrogen Energy, 41, 820-831.
  17. Saffarzadeh, A., Shimaoka, T., Kakuta, Y., and T. Kawano (2014) Cesium distribution and phases in proxy experiments on the incineration of radioactively contaminated waste from the Fukushima area, Journal of Environmental Radioactivity, 136, 76-84.
  18. Inkaew, K., Saffarzadeh, A., and T. Shimaoka (2014) Characterization of grate sifting deposition ash, unquenched bottom ash and water-quenched bottom ash from mass-burn moving grate waste to energy plant, Journal of Japan Society of Civil Engineers, Ser. G (Environmental Research), 70, No. 7, III_469-III_475.
  19. Wei, Y., Saffarzadeh, A., Shimaoka, T., Zhao, C., Peng, X., and J. Gao (2014) Geoenvironmental weathering/deterioration of landfilled MSWI-BA glass, Journal of Hazardous Materials, 278, 610-619.
  20. Yang, S., Saffarzadeh, A., Shimaoka, T., and T. Kawano (2014) Existence of Cl in municipal solid waste incineration bottom ash and dechlorination effect of thermal treatment, Journal of Hazardous Materials, 267, 214-220.


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