Majid Peyravi | Irrigation | Innovative Research Award

Innovative Research Award

Majid Peyravi
Babol Noshirvani University of Technology, Iran

Majid Peyravi
Affiliation Babol Noshirvani University of Technology
Country Iran
Scopus ID 34979287800
Documents 152
Citations 4,192
h-index 39
Subject Area Irrigation
Event Agri Scientist Awards
ORCID 0000-0002-1434-3122

Majid Peyravi is a researcher affiliated with Babol Noshirvani University of Technology whose scholarly record includes work on membrane technology, nanoporous materials, environmental treatment processes, and water-related engineering. The supplied profile records 152 documents, 4,192 citations, and an h-index of 39, providing a bibliometric basis for academic recognition.

Abstract

Majid Peyravi is presented for consideration for the Innovative Research Award based on a documented scholarly profile associated with Babol Noshirvani University of Technology, Iran. The supplied record reports 152 documents, 4,192 citations, and an h-index of 39. His publications include research addressing membrane modification, nanoporous membrane fouling, landfill leachate treatment, adsorption, nanofiltration, and related environmental engineering challenges. These studies demonstrate sustained engagement with applied membrane and water-treatment research, including experimental investigation and process modelling. Selected publications report approaches for improving membrane functionality, analysing fouling mechanisms, and integrating biological, adsorption, and membrane processes for complex wastewater treatment. The publication record therefore provides a relevant academic basis for assessing research activity, technical contribution, and potential suitability for an innovation-focused recognition programme. [1] [2] [3]

Keywords

Membrane technology; nanofiltration; nanoporous membranes; membrane fouling; landfill leachate; wastewater treatment; adsorption; membrane bioreactor; zero-valent iron nanoparticles; antibacterial membranes; environmental engineering; water treatment; nanotechnology; process modelling; sustainable treatment systems; applied research; irrigation; scholarly impact; research innovation; academic recognition.

Introduction

Research in membrane science increasingly addresses complex water and wastewater treatment challenges through material modification, fouling analysis, adsorption, biological treatment, and pressure-driven separation. Peyravi’s selected publications examine these themes through experimental and modelling approaches, including nanoporous membranes and integrated treatment processes. Such work connects materials research with practical environmental applications. [1] [2] [3]

Research Profile

The supplied research profile identifies Majid Peyravi with Babol Noshirvani University of Technology and the subject area of irrigation. His publication examples indicate broader activity in membrane-based separation and environmental treatment, particularly landfill leachate, nanoporous membranes, fouling behaviour, and nanocomposite membrane modification. The profile combines materials, process, and environmental perspectives. [1] [2] [3]

Research Contributions

The selected studies illustrate several research contributions: evaluation of zero-valent iron nanoparticle modification for membrane antibacterial behaviour; experimental and theoretical analysis of nanoporous membrane fouling; and development of a multistage treatment strategy combining membrane bioreactor, adsorption, and nanofiltration. Together, these studies address membrane performance, fouling control, and complex wastewater treatment. [1] [2] [3]

Publications

The selected publication record includes studies published in established scientific journals covering chemical engineering, water science, and bioprocess engineering. The articles address antibacterial membrane modification, membrane fouling during landfill leachate treatment, and integrated membrane adsorption bioreactor and nanofiltration treatment. DOI identifiers are available for the three selected works, enabling direct scholarly verification. [1] [2] [3]

Research Impact

The supplied bibliometric information records 4,192 citations and an h-index of 39 across 152 documents, indicating a substantial level of scholarly activity and citation visibility. The selected publications also address practical environmental problems, including membrane fouling and landfill leachate treatment, while investigating material and process improvements relevant to water-treatment engineering. [2] [3]

Award Suitability

For an innovation-focused academic award, the supplied profile offers several relevant indicators: a substantial publication portfolio, reported citation activity, and research addressing membrane materials, fouling mechanisms, and integrated wastewater treatment. The selected studies demonstrate experimental investigation and process-oriented problem solving, providing evidence that can support consideration under research innovation criteria. [1] [2] [3]

Conclusion

The supplied information presents Majid Peyravi as an active researcher with a substantial bibliometric record and selected publications addressing membrane science and environmental treatment. The cited studies demonstrate work spanning membrane modification, fouling analysis, adsorption, biological treatment, and nanofiltration. These documented areas provide a reasonable scholarly basis for consideration for an Innovative Research Award. [1] [2] [3]

References

  1. Khajouei, M., Jahanshahi, M., Peyravi, M., Hoseinpour, H., & Shokuhi Rad, A. (2017). Anti-bacterial assay of doped membrane by zero valent Fe nanoparticle via in-situ and ex-situ aspect. Chemical Engineering Research and Design, 117, 287–300.
    https://doi.org/10.1016/j.cherd.2016.10.042
  2. Jahanshahi, M., Peyravi, M., Shafaei, N., & Mirani, H. (2016). Analysis of nanoporous membrane fouling relying on experimental observation and theoretical model for landfill leachate treatment. Water Science & Technology, 73(1), 1–12.
    https://doi.org/10.2166/wst.2015.452
  3. Peyravi, M., Jahanshahi, M., Alimoradi, M., & Ganjian, E. (2016). Old landfill leachate treatment through multistage process: Membrane adsorption bioreactor and nanofiltration. Bioprocess and Biosystems Engineering, 39(12), 1803–1816.
    https://doi.org/10.1007/s00449-016-1655-0

Md. Hossain Ali | Irrigation | Best Researcher Award

Dr Md. Hossain  Ali | Irrigation |  Best Researcher Award

Chief Scientific Officer at  Bangladesh Institute of Nuclear Agriculture (BINA),  Bangladesh

Dr. Md. Hossain Ali is a distinguished expert in agricultural engineering with extensive experience leading innovative research and development at the Bangladesh Institute of Nuclear Agriculture (BINA). As the Chief Scientific Officer and Head of the Agricultural Engineering Division, he has made significant contributions to advancing sustainable agricultural practices and technologies.

Profile:

Academic Background:

  • Post-Doctorate: University Sains Malaysia, Civil Engineering (Water Management)
  • Ph.D.: Bangladesh Agricultural University, Irrigation & Water Management
  • M. Engg. Sci.: University of Melbourne, Civil & Environmental Engineering
  • M.Sc. (Agril. Engg.): Bangladesh Agricultural University
  • B.Sc. (Agril. Engg.): Bangladesh Agricultural University

Expertise:

Dr. Ali specializes in Irrigation and Water Resources Management, Agro-meteorology, and Agro-economics, with over 31 years of professional experience spanning teaching, research, and administration. His technical expertise includes using advanced models like AquaCrop, DSSAT, and HYDRUS-1D for agricultural applications.

Achievements:

  • Recipient of the Shudhachar Award (2022) and Best Scientist Award (2016) from BINA.
  • Recognized in international directories such as WHO’S WHO IN THE WORLD and 2000 Outstanding Intellectuals of the 21st Century.
  • Developed innovative tools and models like M-RechargeCal, M-EToCal, and CropET0.

Citation Metrics:

  • Total Citations: 2,677
  • Citations Since 2020: 1,267
  • h-index: 18 (13 since 2020)
  • i10-index: 30 (16 since 2020)

Publication Top Notes:

  • Increasing Water Productivity in Crop Production—A Synthesis
    M.H. Ali, M.S.U. Talukder
    Agricultural Water Management, 95(11), 1201-1213, 685 citations, 2008
  • Effects of Deficit Irrigation on Yield, Water Productivity, and Economic Returns of Wheat
    M.H. Ali, M.R. Hoque, A.A. Hassan, M.A. Khair
    Agricultural Water Management, 92, 151-161, 614 citations, 2007
  • Fundamentals of Irrigation & On-farm Water Management
    M.H. Ali
    ISBN: 978-1-4419-6334-5, 560 pages, 219 citations, 2010
  • Practices of Irrigation & On-farm Water Management: Volume 2
    H. Ali
    Springer Science & Business Media, 142 citations, 2011
  • Effective Rainfall Calculation Methods for Field Crops: An Overview, Analysis, and New Formulation
    M.H. Ali, S. Mubarak
    Asian Research Journal of Agriculture, 7(1): 1-12, DOI: 10.9734/ARJA/2017/36812, 93 citations, 2017
  • A New Novel Index for Evaluating Model Performance
    M.H. Ali, I. Abustan
    Journal of Natural Resources and Development, 4, 1-9, 90 citations, 2014
  • Effect of Deficit Irrigation at Different Growth Stages on the Yield of Potato
    A.A. Hassan, A.A. Sarkar, M.H. Ali, N.N. Karim
    Pakistan Journal of Biological Sciences, 5(2), 128-134, 72 citations, 2002
  • Sustainability of Groundwater Resources in the North-Eastern Region of Bangladesh
    M.H. Ali, I. Abustan, M.A. Rahman, A.A.M. Haque
    Water Resources Management, 26, 623-641, 61 citations, 2012
  • Crop Water Requirement and Irrigation Scheduling
    M.H. Ali
    Fundamentals of Irrigation and On-farm Water Management: Volume 1, 399-452, 58 citations, 2010
  • Effects of Deficit Irrigation on Yield, Water Productivity and Economic Return of Sunflower
    A.J. Mila, M.H. Ali, A.R. Akanda, M.H. Rashid, M.A. Rahman
    Cogent Food & Agriculture, 3: 1287619, 37 citations, 2017