ผู้บริหาร อาจารย์ และบุคลากรภาควิชาเคมีอุตสาหกรรม
ผศ.ดร. นงค์นุช เรืองจิตต์
ผศ.ดร. นงค์นุช เรืองจิตต์
Asst. Prof. Dr. Nongnuch Rueangjitt
Room: IMB 3309
Telephone: 053-943405 ext.134
Email: nongnuch.r@cmu.ac.th


Education Background
  • dfjk   f  2004-2008:  Ph.D. (Petrochemical Technology), The Petroleum and Petrochemical College, Chulalongkorn University
  •  2001-2003:  M.Eng. (Chemical Engineering), Faculty of Engineering, Kasetsart University
  •  1995-1999:  B.Eng. (Chemical Engineering), Faculty of Engineering, Srinakharinwirot University


Job Description/Responsibility

Full-Time Lecturer, Department of Industrial Chemistry, Chiang Mai University



Experience & Skill
  •  2008-Present:  Full-Time Lecturer, Department of Industrial Chemistry, Faculty of Science, Chiang Mai University
  • 2014-2018:  Chairperson of Bachelor Science Program in Industrial Chemisty, Faculty of Science, Chiang Mai University
  • 2006-2007:  Research Scholar, Department of Chemical Engineering, Tokyo Institute of Technology (TIT), Japan
  • 2001:  Assistant Researcher, Department of Chemical Engineering, Kasetsart University
  • 2000-2001:  Quality Engineer (in process), Bangkok Industrial Laminate Co., Ltd.
  • 1999-2000:  Production Engineer, Hoya Glass Disk (Thailand) Co., Ltd.


Portfolio and Researching

 FIELDS OF SPECIALLIZATION

  • Low-Temperature Plasma Technology for Petroleum & Petrochemicals Conversion Process
  • Heterogeneous Catalysis for Petrochemical Process
  • Mathematical Modeling and Simulation of Chemical Engineering Process
  • Biodiesel Production from Castor Oil Using Heterogeneous Solid Catalyst
  • Synthesis of CaO from Eggshell Waste Used as Catalyst in Biodiesel Production
  • Synthesis of ZSM-5 Zeolite Reforming Catalyst from Slag Industrial Waste


PUBLICATIONS

  • N. Rueangjitt, C. Akarawitoo, T. Sreethawong, and S. Chavadej, Reforming of CO2-Containing Natural Gas Using an AC Gliding Arc System: Effect of Gas Components in Natural Gas. Plasma Chem Plasma Process, 2007, 27(5), 559-576. 
  • N. Rueangjitt, T. Sreethawong, and S. Chavadej, Reforming of CO2-Containing Natural Gas Using an AC Gliding Arc System: Effects of Operational Parameters and Oxygen Addition in Feed. Plasma Chem Plasma Process, 2008, 28(1), 49-67.
  • N. Rueangjitt, T. Sreethawong, S. Chavadej, and H. Sekiguchi, Plasma-Catalytic Methane Reforming in Microsized Gliding Arc Discharge, Chem Eng J, 2009, 155(3), 874-880.
  • N. Rueangjitt, W. Jittiang, T. Sreethawong, and S. Chavadej, Combined Reforming and Partial Oxidation of CO2-Containing Natural Gas Using AC Gliding Arc System: Effect of Stage Number of Plasma Reactors. Plasma Chem Plasma Process, 2009, 29(6), 433-453.
  • N. Rueangjitt, T. Sreethawong, S. Chavadej, and H. Sekiguchi, Non-Oxidative Reforming of Methane in a Mini-Gliding Arc Discharge Reactor: Effects of Feed Methane Concentration, Feed Flow Rate, Electrode Gap Distance, Residence Time, and Catalyst Distance, Plasma Chem Plasma Process, 2011, 31(4), 517-534.
  • N. Rueangjitt, C. Akarawitoo, S. Chavadej, Production of Hydrogen-Rich Syngas from Biogas Reforming with Partial Oxidation Using a Multi-Stage AC Gliding Arc System, Plasma Chem Plasma Process, 2012, 32(2), 583-596. 
  • K. Pornmai, N. Arthiwat, N. Rueangjitt, H. Sekiguchi, S. Chavadej, Synthesis Gas Production by  Combined Reforming of CO2-Containing Natural Gas with Steam and Partial Oxidation in Multistage Gliding Arc Discharge System, Ind Eng Chem Res, 2014, 53, 11891-11900. 
  • N. Chaiwong and N. Rueangjitt, Scanning Electron Microscopy of ZSM-5 Zeolite from Hydrothermal Syntheis for Use as a Reforming Catalyst, Journal of Microscopy Society of Thailand, 2016, 29(1), 1-2.
  • B. Khanchai, S. Chavadej, H. Sekiguchi, N. Rueangjitt, Hydrogen-Rich Syngas Production from Biogas Reforming by Gliding Arc Plasma-Catalyst Minireactor, KMUTNB: International Journal of Applied Science and Technology, 2017, 10(4), 279-285.

INTERNATIONAL PROCEEDINGS AND PRESENTATIONS

  •  N. Rueangjitt, C. Akarawitoo, and S. Chavadej, “Hydrogen Production from Natural Gas Reforming in Gliding Arc Discharge”, Paper Presented at AIChE 2006 (Annual Meeting), 12-17 November 2006, San Francisco, USA.
  • N. Rueangjitt, C. Akarawitoo, T. Sreethawong, and S. Chavadej, “Reforming of CO2-Containing Natural Gas Using an AC Gliding Arc System: Effects of Feed Component”, Proceedings of the 18th International Symposium on Plasma Chemistry (ISPC 18), 26-31 August 2007, Kyoto, Japan.
  • T. Sreethawong, N. Rueangjitt, and S. Chavadej, “Reforming of CO2-Containing Natural Gas Using an AC Gliding Arc System: Effects of Applied Voltage and Frequency”, Proceedings of the 18th International Symposium on Plasma Chemistry (ISPC 18), 26-31 August 2007, Kyoto, Japan.
  • S. Chavadej, N. Rueangjitt, and T. Sreethawong, “Reforming of CO2-Containing Natural Gas with Partial Oxidation Using an AC Gliding Arc Discharge System”, Proceedings of the 18th International Symposium on Plasma Chemistry (ISPC 18), 26-31 August 2007, Kyoto, Japan.
  • W. Jittiang, N. Rueangjitt, T. Sreethawong, and S. Chavadej, “Effect of Stage Number of Plasma Reactors on Combined Reforming and Partial Oxidation of CO2-Containing Natural Gas under Gliding Arc Discharge”, Proceedings of the International Workshop on Process Intensification 2008 (IWPI 2008), 15-18 October 2008, Tokyo, Japan.
  • P. Hanphaiboon, S. Sakulmittrapab, and N. Rueangjitt, “Upgrading of Simulated Biogas and Production of Synthesis Gas Using a DBD Plasma Technique”, Poster Presentation of the International Workshop on Advanced Plasma Technology for Green Energy and Biomedical Applications (APT 2012), 24-26 August 2012, Faculty of Science, Chiang Mai University, Thailand.
  • C. Harnsinudom, S. Chavadej, and N. Rueangjitt, “Syngas Production from Simulated Biogas Reforming by DBD Plasma-Catalytic Hybrid System”, Proceedings of the 3rd International TiChE Conference 2013, 17-18 October 2013, Faculty of Engineering, Khon Kaen University, Thailand.
  • A. Saythong, M. Chareonpanich, and N. Rueangjitt, “Silica Recovery from Steel Slag-Industrial Waste Residue for Use in Synthesis of ZSM-5 Zeolite Catalyst”, Proceedings of the 4th International TiChE Conference 2014, 18-19 December 2014, Furama Hotel, Chiang Mai, Thailand.
  • U. Sriboonrueang and N. Rueangjitt, “Synthesis of CaO Catalyst from Eggshell Waste for Use in Biodiesel Production from Non-Edible Castor Oil”, Proceedings of the 4th International TiChE Conference 2014, 18-19 December 2014, Furama Hotel, Chiang Mai, Thailand. 
  • Y. Kantawong, S. Chavadej, and N. Rueangjitt, “Simulated Biogas Conversion by Mini-Gliding Arc Discharge Plasma System”, Proceedings of the 5th International TiChE Conference 2015, 8-10 November 2015, Dusit Hotel, Pattaya, Thailand.
  • B. Khanchai, J. Sirisaereephap, S. Chavadej and N. Rueangjitt, “Syngas Production via CO2 Reforming of Methane under Catalytic-Plasma Condition: Catalyst Type and Shape Effect”, Proceedings of the 5th International TiChE Conference 2015, 8-10 November 2015, Dusit Hotel, Pattaya, Thailand.
  • W. Ananrat and N. Rueangjitt, “Biodiesel Production from Castor Oil Using Catalytic Transesterification on Duck Eggshell-Derived CaO Catalyst”, Proceedings of the 31st International Symposium on Chemical Engineering (ISChE 2018), 30 November-2 December 2018, Green Nimman CMU Residence, Chiang Mai, Thailand. pp.4-7.
  • W. Ananrat and N. Rueangjitt, “Biodiesel Production from Castor Oil Using Ultrasonic-assisted Transesterification on Eggshell-derived CaO Nanocatalyst”, Proceedings of the Pure and Applied Chemistry International Conference (PACCON 2020), 13-14 February 2020, Impact Forum, Bangkok, Thailand. pp.RE19-RE24.

 

NATIONAL PROCEEDINGS AND PRESENTATIONS

  •  M. Chareonpanich and N. Rueangjitt, “Hydrocarbon Conversion from Carbon Dioxide over Zeolite Catalyst”, Proceedings of the 11th Thai Chemical Engineering and Applied Chemistry (TIChE 11), 9-10 November 2001, Suranaree University of Technology, Nakornratchasima.
  • P. Srinophakun and N. Rueangjitt, “Simulation of Biomass and Carbon Dioxide Concentration Profiles in Baffled Bubble Photobioreactor”, Proceedings of the 13th Thai Chemical Engineering and Applied Chemistry (TIChE 13), 30-31 October 2003, Royal Hill Resort, Nakhon Nayok.
  • N. Rueangjitt, D. Pattavarakorn, and N. Chaiwong, “Upgrading of Simulated Biogas and Production of Synthesis Gas Using a DBD Plasma Technique”, Poster Presentation of the 7th Academic Conference, 24-25 November 2011, Chiang Mai University Conference Hall, Chiang Mai.
  • P. Wilepana, T. Siri, S. Chavadej and N. Rueangjitt, “CO2 Decomposition under Low-Temperature Condition Using Dielectric Barrier Discharge Plasma Reactor”, Proceedings of the 22th Thai Chemical Engineering and Applied Chemistry (TIChE 22), 25-26 October 2012, The Greenery Resort, Khao Yai, Nakornratchasima.


SCHOLARSHIPS / RESEARCH GRANTS

  • 2001-2007: Scholarship from Commission on Higher Education under Staff Project, Ministry of Education, Thailand
  • 2007: Research Certificate from Department of Chemical Engineering, Faculty of Engineering, Tokyo Institute of Technology (TIT), Japan
  • 2009-2010: Departmental Research Fund (2009), Faculty of Science, Chiang Mai University
  • 2010-2011: CMU Research Fund for Developing New Young Researcher (2009)
  • 2010: Industrial Technology Assistance Program: ITAP, NSTDA
  • 2010-2012: TRF-CHE Research Grant for New Scholar (2010)   
  • 2012-2013: CMU Research Fund for Developing New Young Researcher (2012)
  • 2012-2014: TRF-CHE Research Grant for New Scholar (2012)
  • 2013-2014: CMU Research Fund for Developing New Young Researcher (2013)
  • 2015-2016: CMU Mid-Career Research Fellowship Program (2015) 
  • 2014-2017: 1 subproject under Prof. Dr.Sumaeth Chavadej's TRF Senior Research Scholar Grant 
  • 2017: Japan-Asia Youth Exchange Program in Science (SAKURA Exchange Program in Science) by Japan Science and Technology Agency at Unitversity of Toyama