سوابق تحصیلی
| مقطع تحصیلی | سال اخذ مدرک | رشته و گرایش تحصیلی | دانشگاه |
|---|---|---|---|
| کارشناسی | ۱۳۸۷ | مهندسی شیمی | دانشگاه صنعتی سهند |
| کارشناسی ارشد | ۱۳۸۹ | مهندسی شیمی | دانشگاه صنعتی شریف |
| دکترای تخصصی | ۱۳۹۴ | مهندسی شیمی | دانشگاه صنعتی شریف |
اطلاعات استخدامی
| محل خدمت | عنوان سمت | نوع استخدام | نوع همکاری | پایه |
|---|---|---|---|---|
| دانشگاه صنعتی سهند تبریز | معاون دانشکده مهندسی شیمی | رسمی قطعی | تمام وقت | ۲۰ |
سوابق اجرایی
My Scopus page:
https://www.scopus.com/authid/detail.uri?authorId=37561271000
MY ORCID:
https://orcid.org/0000-0003-0351-6750
Publication
- Farshbaf, P., Hazrati, H., Fathi, H.R. and Babazadeh, M., 2026. Integration of an iron-based electrochemical process with a membrane bioreactor for fouling control and removal of proteins, carbohydrates, and humic substances from pharmaceutical-containing wastewater. Journal of Environmental Chemical Engineering, 14(6), p.125100.
- Masoumi, S., Jafarzadeh, Y. and Hazrati, H., 2026. Antibacterial PVC/TPU/UiO-66 nanocomposite membranes for pharmaceutical effluent treatment in membrane bioreactors: preparation, characterization, and performance evaluation. Environmental Science and Pollution Research, pp.1-37.
- Zarei, M., Hazrati, H., Akbari, A., Sofla, R.L.M. and Maghsoudi, H., 2026. Fabrication and characterization of PVC/ag-based TPU membranes for MBRs: Antifouling performance and mechanistic fouling analysis via Hermia and Bolton models. Results in Chemistry, p.103322.
- Jalali Qush Qayeh, A., Hazrati, H., Jafarizad, A. and Alinezhadavalzali, H., 2026. Evaluation of Coagulation Using Different Coagulants and UV Irradiation for Organic Matter Removal from Real Hospital Wastewater. Iranian Journal of Chemistry and Chemical Engineering, 45(7), pp.1725-1736.
- Nasiri, F., Hazrati, H. and Gharibian, S., 2026. Investigating the impact of PVC microplastics on membrane fouling behavior in MBR for enhanced wastewater treatment efficiency. Scientific Reports, 15(1), p.42871.
- Zarei, M., Hazrati, H., Akbari, A., Sofla, R.L.M. and Maghsoudi, H., 2026. Fabrication and characterization of PVC/ag-based TPU membranes for MBRs: Antifouling performance and mechanistic fouling analysis via Hermia and Bolton models. Results in Chemistry, p.103322. https://doi.org/10.1016/j.rechem.2026.103322
- Zarei, M., Hazrati, H., Akbari, A. and Sofla, R.L.M., 2026. Synthesis of Ag-based TPU using a silver/3-pyridine methanol chain extender to enhance the surface properties of PVC/Ag-based TPU membranes in MBRs. Reactive and Functional Polymers, p.106644. 10.1016/j.reactfunctpolym.2026.106644
- Gharibian, S. and Hazrati, H., 2022. Towards practical integration of MBR with electrochemical AOP: Improved biodegradability of real pharmaceutical wastewater and fouling mitigation. Water Research, 218, p.118478. https://doi.org/10.1016/j.watres.2022.118478 (Impact Factor=11.7)
- Karimzadeh, H., Hazrati, H., Alizadeh, R. and Pourbakhsh, N., 2025. High-efficiency protein adsorption from aqueous media using copper-LDH functionalized clinoptilolite: a dual-step modification approach. Chemical Papers, pp.1-20. https://doi.org/10.1007/s11696-025-04369-x
(Impact Factor= 3.2)
- Karamouz, F., Hazrati, H. and Khoshfetrat, A.B., 2025. Nano chitosan to sludge ratio modulates fouling mitigation in electric field-assisted membrane bioreactors. Environmental Technology & Innovation, p.104418. https://doi.org/10.1016/j.eti.2025.104418 (Impact Factor= 6.3)
- Farahnaz Karamouz, Hossein Hazrati, Ali Baradar khoshfetrat, 2024. Mitigation of fouling in Membrane Bioreactor Using the Integration of Electrical Field and Nano Chitosan Adsorbent, Environmental Technology & Innovation, 36, p. 103774. https://doi.org/10.1016/j.eti.2024.103774. (Impact Factor= 6.3)
- Onagh, S., Hazrati, H. and Jafarzadeh, Y., 2024. Application of modified PVC membranes with GO-ZnO nanoparticles in MBR: Sludge characteristics, fouling control and removal performance. Journal of the Taiwan Institute of Chemical Engineers, 162, p.105586. https://doi.org/10.1016/j.jtice.2024.105586. (Impact Factor= 5.7)
- Esteki, S., Gharibian, S., Hazrati, H. and Taheri, E., 2024. Application of an electrochemical filter-press flowcell in an electrocoagulation-MBR system: Efficient membrane fouling mitigation. Journal of Environmental Chemical Engineering, 12(1), p.111769.
https://doi.org/10.1016/j.jece.2023.111769 (Impact Factor=7.4)
- Taheri, E., Hazrati, H., Esteki, S., Gharibian, S. and Salami-Kalajahi, M., 2024. Polyamidoamine-based graphene oxide nanoparticles as adsorbent for mitigation of fouling in electrochemical membrane bioreactor. International Journal of Environmental Science and Technology, 21(11), pp.7539-7552. https://doi.org/10.1007/s13762-024-05556-1. (Impact Factor= 3.1)
- Alizadeh, M., Abdi, S., Abdoli, S.M., Hazrati, H. and Salami-Kalajahi, M., 2024. Investigating the adsorption of humic acid from water using CTS/PAM and CTS/PAM/EDTA adsorbents. International Journal of Chemical Engineering, 2024(1), p.6346033. https://doi.org/10.1155/2024/6346033. (Impact Factor= 4.1)
- Omidvar, A., Masoumi, S., Monsefi, M., Jafarzadeh, Y., Nasiri, M. and Hazrati, H., 2023. PVC/PMMA blend ultrafiltration membranes for oil-in-water emulsion separation. Polymer Bulletin, 80(8), pp.9275-9295. https://doi.org/10.1007/s00289-022-04514-6. (Impact Factor= 3.1)
- Ghasemzadeh, F., Kazerouni, H.N., Adelinia, H., Jafarzadeh, Y. and Hazrati, H., 2023. Modified graphene oxide/Polyvinyl chloride membranes for wastewater treatment. Chemical Engineering & Technology, 46(2), pp.373-382. https://doi.org/10.1002/ceat.202200333. (Impact Factor= 3.2)
- Karimi, L., Hazrati, H., Gharibian, S. and Shokrkar, H., 2021. Investigation of various anode and cathode materials in electrochemical membrane bioreactors for mitigation of membrane fouling. Journal of Environmental Chemical Engineering, 9(1), p.104857. https://doi.org/10.1016/j.jece.2020.104857 (Impact Factor=7.4)
- Sabalanvand, S., Hazrati, H., Jafarzadeh, Y., Jafarizad, A. and Gharibian, S., 2021. Investigation of Ag and magnetite nanoparticle effect on the membrane fouling in membrane bioreactor. International Journal of Environmental Science and Technology, 18, pp.3407-3418. https://doi.org/10.1007/s13762-020-03053-9. (Impact Factor= 3.1)
- Ahsani, M., Sabouri, R., Ulbricht, M., Hazrati, H., Jafarizad, A. and Yegani, R., 2021. Preparation and characterization of hydrophilic and antibacterial silver decorated silica‐grafted‐poly (vinylpyrrolidone)(Ag‐SiO2‐PVP) nanoparticles for polymeric nanocomposites. Journal of Applied Polymer Science, 138(38), p.50977. https://doi.org/10.1002/app.50977. (Impact Factor= 3.5)
- Ahsani, M., Hazrati, H., Javadi, M., Ulbricht, M. and Yegani, R., 2020. Preparation of antibiofouling nanocomposite PVDF/Ag-SiO2 membrane and long-term performance evaluation in the MBR system fed by real pharmaceutical wastewater. Separation and Purification Technology, 249, p.116938. https://doi.org/10.1016/j.seppur.2020.116938. (Impact Factor= 8.1)
- Gharibian, S., Hazrati, H. and Rostamizadeh, M., 2020. Continuous electrooxidation of Methylene Blue in filter press electrochemical flowcell: CFD simulation and RTD validation. Chemical Engineering and Processing-Process Intensification, 150, p.107880. https://doi.org/10.1016/j.cep.2020.107880. (Impact Factor= 3.8)
- Hazrati, H., Jahanbakhshi, N. and Rostamizadeh, M., 2018. Fouling reduction in the membrane bioreactor using synthesized zeolite nano-adsorbents. Journal of Membrane Science, 555, pp.455-462. https://doi.org/10.1016/j.memsci.2018.03.076 (Impact Factor=8.4)
- Mohamadi, S., Hazrati, H. and Shayegan, J., 2020. Influence of a new method of applying adsorbents on membrane fouling in MBR systems. Water and Environment Journal, 34, pp.355-366.https://doi.org/10.1111/wej.12532. (Impact Factor=2.2)
- Beygmohammdi, F., Kazerouni, H.N., Jafarzadeh, Y., Hazrati, H. and Yegani, R., 2020. Preparation and characterization of PVDF/PVP-GO membranes to be used in MBR system. Chemical Engineering Research and Design, 154, pp.232-240. https://doi.org/10.1016/j.cherd.2019.12.016. (Impact Factor=3.7)
- Hazrati, H., Karimi, N. and Jafarzadeh, Y., 2020. Performance and antifouling properties of PVDF/PVP and PSf membranes in MBR: A comparative study. Membrane and Water Treatment, 11(2), pp.159-166. https://doi.org/10.12989/mwt.2020.11.2.159. (Impact Factor=1.7)
- Sajadian, Z.S., Hazrati, H. and Rostamizadeh, M., 2020. Investigation of influence of nano H-ZSM-5 and NH 4-ZSM-5 zeolites on membrane fouling in semi batch MBR. Advances in nano research, 8(2), pp.183-190. https://doi.org/10.12989/anr.2020.8.2.183. (Impact Factor=2.5)
- Kahforoushan, D., Tabatabaei-Nejad, S.A., Hazrati, H. and Rastegar, S., 2019. Investigation and Modeling of Ozone Penetration in a Fixed Bed Reactor for Purification of Soil Contaminated with Anthracin. Ozone: Science & Engineering, 41(3), pp.231-241. https://doi.org/10.1080/01919512.2018.1518706. (Impact Factor=1.1)
- Mirzavandi, A., Hazrati, H. and Ebrahimi, S., 2019. Investigation of influence of temperature and solid retention time on membrane fouling in MBR. Membrane and Water Treatment, 10(2), pp.179-189. https://doi.org/10.12989/mwt.2019.10.2.179. (Impact Factor=1.7)
- Mashayekhi, F., Hazrati, H. and Shayegan, J., 2018. Fouling control mechanism by optimum ozone addition in submerged membrane bioreactors treating synthetic wastewater. Journal of Environmental Chemical Engineering, 6(6), pp.7294-7301. https://doi.org/10.1016/j.jece.2018.10.016. (Impact Factor=7.4)
- Rostamizadeh, M., Yaripour, F. and Hazrati, H., 2018. High efficient mesoporous HZSM-5 nanocatalyst development through desilication with mixed alkaline solution for methanol to olefin reaction. Journal of Porous Materials, 25, pp.1287-1299. https://doi.org/10.1007/s10934-017-0539-2. (Impact Factor=2.9)
- Rostamizadeh, M., Yaripour, F. and Hazrati, H., 2018. Ni-doped high silica HZSM-5 zeolite (Si/Al= 200) nanocatalyst for the selective production of olefins from methanol. Journal of Analytical and Applied Pyrolysis, 132, pp.1-10. https://doi.org/10.1016/j.jaap.2018.04.003. (Impact Factor=5.8)
- Hazrati, H., Rostamizadeh, M., Omidkhah, M.R. and Sadeghian, Z., 2018. Influence of synthesis and operating parameters on silicalite-1 membrane properties. Comptes Rendus. Chimie, 21(1), pp.19-26. 10.1016/j.crci.2017.11.008. (Impact Factor=2.3)
- Hedayati Moghaddam, A., Hazrati, H., Sargolzaei, J. and Shayegan, J., 2017. Assessing and simulation of membrane technology for modifying starchy wastewater treatment. Applied Water Science, 7, pp.2753-2765. https://doi.org/10.1007/s13201-016-0503-3. (Impact Factor=5.8)
- Hazrati, H., Moghaddam, A.H. and Rostamizadeh, M., 2017. The influence of hydraulic retention time on cake layer specifications in the membrane bioreactor: Experimental and artificial neural network modeling. Journal of environmental chemical engineering, 5(3), pp.3005-3013. https://doi.org/10.1016/j.jece.2017.05.050. (Impact Factor=7.4)
- Hazrati, H., Shayegan, J. and Mojtaba Seyedi, S., 2016. The effect of HRT and carriers on the sludge specifications in MBR to remove VOCs from petrochemical wastewater. Desalination and Water Treatment, 57(46), pp.21730-21742. https://doi.org/10.1080/19443994.2015.1125800. (Impact Factor=2.4)
- Hazrati, H. and Shayegan, J., 2016. Influence of suspended carrier on membrane fouling and biological removal of styrene and ethylbenzene in MBR. Journal of the Taiwan Institute of Chemical Engineers, 64, pp.59-68. https://doi.org/10.1016/j.jtice.2015.12.002. (Impact Factor=5.7)
- Hazrati, H., Shayegan, J. and Seyedi, S.M., 2015. Biodegradation kinetics and interactions of styrene and ethylbenzene as single and dual substrates for a mixed bacterial culture. Journal of environmental health science and engineering, 13, pp.1-12. https://doi.org/10.1186/s40201-015-0230-y. (Impact Factor=3.0)
- Farajzadehha, S., Shayegan, J., Mirbagheri, S.A., Farajzadehha, S. and Hazrati, H., 2015. The combined UASB and MBR system to COD and TSS removal and excess sludge reduction for the treatment of high strength wastewater in various operational temperatures. Desalination and Water Treatment, 53(2), pp.352-359. https://doi.org/10.1080/19443994.2013.846461. (Impact Factor=2.4)
- Tashaouie, H.R., Gholikandi, G.B. and Hazrati, H., 2012. Artificial neural network modeling for predict performance of pressure filters in a water treatment plant. Desalination and Water Treatment, 39(1-3), pp.192-198. https://doi.org/10.1080/19443994.2012.669175. (Impact Factor=2.4)
- Hazrati, H. and Shayegan, J., 2011. Upgrading activated sludge systems and reduction in excess sludge. Bioresource technology, 102(22), pp.10327-10333. https://doi.org/10.1016/j.biortech.2011.08.112. (Impact Factor=9.8)
- Abdi, S., Hazrati, H. and Abdoli, S.M., 2024. Facile synthesis of chitosan/polyacrylamide hydrogel for the efficient adsorption of bovine serum albumin from water. Journal of Applied Research in Water and Wastewater. https://doi.org/10.22126/arww.2024.10570.1329
- Es,hagi, A., and Hazrati, H., 2023. Reduction of fouling in the membrane bioreactor using the combination of electrochemical and adsorbention processees. Iranian Journal of Chemical Engineering (IJChE), 20(2), pp.90-107. https://doi.org/10.22034/ijche.2023.420308.1503
- Karimi, L., Hazrati, H. and Shokrkar, H., 2022. Investigating of Operational Parameters on the Performance of Membrane Electro bio Reactor System for Synthetic Wastewater Treatment. Iranian Chemical Engineering Journal, 21(120), pp.21-38. https://doi.org 10.22034/IJCHE.2021.277386.1099 (فارسی)
- Hazrati, H., Rostamizadeh, M. and Atashzar, M., 2021. Effect of Solid Retention Time on Membrane Fouling In the Membrane Bioreactor Systems for Treating Synthetic Wastewater. Journal of Civil and Environmental Engineering, 50(101), pp.25-32. 10.22034/JCEE.2020.24656.1598 (فارسی)
- Karimi, N. and Hazrati, H., 2020. Petrochemical wastewater treatment by membrane bioreactor with behavior modify of membrane fouling through granule activated carbon: A case study. Modares Civil Engineering journal, 20(1), pp.91-103. 20.1001.1.24766763.1399.20.1.11.7 (فارسی)
- Jafarizad, A., Hazrati, H. and Jabbari, A.M., 2019. Fe3O4 Magnetic Nanoparticles/Graphene Oxide Nanosheets/Carbon Cloth as an Electrochemical Sensing Platform. Iranian Journal of Chemical Engineering (IJChE), 16(2), pp.95-102. 20.1001.1.17355397.2019.16.2.6.2
- Sabalanvand, S., Hazrati, H., Jafarizad, A. and Jafarzadeh, Y., 2019. Adsorption of organic compounds on the Fe3O4 nanoparticles for forestalling fouling in membrane bioreactor. Journal of Water and Environmental Nanotechnology, 4(2), pp.88-96. https://doi.org/10.22090/jwent.2019.02.001
- Hazrati, H., Sadat Sajadian, Z., Jahanbakhshi, N. and Rostamizadeh, M., 2019. Reduction of membrane fouling in MBR by ZSM-5 nano adsorbent in various sludge retention times for phenol removal. Journal of applied research in water and wastewater, 6(1), pp.62-66. https://doi.org/10.22126/arww.2019.1132
- Rostamizadeh, M., Taghavi, P. and Hazrati, H., 2019. Simulation of increasing of light olefins production yield from methanol using HZSM-5 zeolite catalysis. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC) Year:2019 | Volume:12 | Issue:4 Page(s): 77-87 (فارسی)
- Rostamizadeh M, Gharibian S, Hazrati H. Dye removal from wastewater by heterogeneous electro-Fenton like reaction catalyzed by zeolite catalyst. Modares Civil Engineering journal 2019; 19 (2) :139-151. URL: http://mcej.modares.ac.ir/article-16-23096-en.html (فارسی)
- Hazrati, H., Jahanbakhshi, N. and Rostamizadeh, M., 2018. Hydophilic polypropylene microporous membrane for using in a membrane bioreactor system and optimization of preparation conditions by response surface methodology. Polyolefins Journal, 5(2), pp.97-109. 10.22063/POJ.2017.1945.1104
- Rostamizadeh, M., Yaripour, F. and Hazrati, H., 2018. Selective production of light olefins from methanol over desilicated highly siliceous ZSM-5 nanocatalysts. Polyolefins Journal, 5(1), pp.59-70. 10.22063/POJ.2017.1501
- Seyedi, S.M., Hazrati, H. and Shayegan, J., 2017. Biokinetic coefficients determination of a MBR for styrene and ethylbenzene as substrate base on Andrews model. Advances in Environmental Technology, 2(4), pp.207-214. 10.22104/AET.2017.468
- Shayegan, J. and Hazrati, H., 2015. Application of Treated Wastewater in Agriculture and Importance of Proper Management in Iran. Water Reuse, 2(2), pp.93-102. https://wrj.ut.ac.ir/article_58507_en.html (فارسی)
- Hazrati, H. and Shayegan, J., 2015. Determining apparent first-order Biological Rate constant for Styrene and Ethylbenzene in MBR with Mathematical model. Advances in Bioresearch, 6(2), pp.112-121.
- HAZRATI, HOSSEIN, and JALAL SHYAEGAN. "Study of Membrane Bioreactor System in Biological Separation of Volatile Organic Components from Petrochemical Wastewater." (2015): 33-42. JOURNAL OF SEPARATION SCIENCE AND ENGINEERING 7 (2), 33-42. 10.22103/JSSE.2016.959 (فارسی): https://jsse.uk.ac.ir/article_959_0.html?lang=fa
| عنوان | توضیحات | از تاریخ | تا تاریخ |
|---|---|---|---|
| مدیر پژوهشی دانشگاه | ۱۵ اردیبهشت ۱۴۰۳ | ۲۰ آبان ۱۴۰۴ | |
| معاون دانشکده مهندسی شیمی | ۰۱ آذر ۱۴۰۴ | (تنظیم نشده) |
جوایز و تقدیر نامه ها
تقدیر توسط انجمن مهندسی شیمی ایران به عنوان رتبه برتر در دوره کارشناسی و دوره کارشناسی ارشد
موضوعات تدریس تخصصی
طراحی راکتورهای شیمیایی
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