คณาจารย์ภาควิชา MAE

สุธรรม ปทุมสวัสดิ์ (STT)

Assoc.Prof. Suthum Patumsawad

รหัส STT
suthum.p@eng.kmutnb.ac.th
สุธรรม ปทุมสวัสดิ์ (STT)

รายละเอียด

การศึกษา

Ph.D. (Chemical and Process Engineering), University of Sheffield, UK

ความเชี่ยวชาญ

Thermal Conversion Process

ผลงานวิจัย / ตีพิมพ์(53)

แสดง 53 รายการ — เลื่อนขึ้น–ลงในกล่องเพื่อดูทั้งหมด

  1. Steady-state modelling of recuperator in OpenModelica

    Chayanon Serttikul, Suthum Patumsawad, Nattavat Mitratee, Thanapol Poojitganont

    AIP conference proceedings· 2026
  2. Development of multivariable model for predicting heating value of bio-dried refuse-derived fuel from municipal solid waste

    Abhisit Bhatsada, Suthum Patumsawad, Sirintornthep Towprayoon, Chart Chiemchaisri, Komsilp Wangyao

    Biomass and Bioenergy· 2025· อ้างอิง 5
  3. Optimizing wet-refuse derived fuel 3 for enhanced energy recovery: A biodrying approach

    Eka Wahyanti, Sirintornthep Towprayoon, Noppharit Sutthasil, Suthum Patumsawad, Abhisit Bhatsada, Komsilp Wangyao

    Bioresource Technology Reports· 2025· อ้างอิง 2
  4. AI-powered machine learning models for monitoring and optimization of biodrying process

    Abhisit Bhatsada, Panida Payomthip, Tanik Itsarathorn, Ye Nyi Nyi Lwin, Eka Wahyanti, Sirintornthep Towprayoon, Suthum Patumsawad, Chart Chiemchaisri

    Results in Engineering· 2025· อ้างอิง 1
  5. Impact of aeration adjustments during the declining phase on biodrying efficiency of market waste

    Ye Nyi Nyi Lwin, Abhisit Bhatsada, Sirintornthep Towprayoon, Suthum Patumsawad, Noppharit Sutthasil, Panida Payomthip, Komsilp Wangyao

    Biomass and Bioenergy· 2025
  6. Impact of Feedstock Density on Biodrying for Enhancing Heat Retention and Moisture Reduction

    E Wahyanti A Bhatsada S Towprayoon N Sutthasil S Patumsawad

    Thai Environmental Engineering Journal. Vol.38 No. 2: 35-46· 2024
  7. Investigating the Impact of Aeration and Leachate Recirculation for Biodrying of Food and Vegetable Waste from the Market

    YNN Lwin A. Bhatsada S. Towprayoon S. Patumsawad

    Thai Environmental Engineering Journal. Vol.38 No. 2: 19-33· 2024
  8. Aeration Optimization for the Biodrying of Market Waste Using Negative Ventilation: A Lysimeter Study

    Ye Nyi Nyi Lwin, Abhisit Bhatsada, Sirintornthep Towprayoon, Suthum Patumsawad, Noppharit Sutthasil, Komsilp Wangyao

    Clean Technologies· 2024· อ้างอิง 6
  9. Optimizing aeration rates via bio-methane potential test for enhanced biodrying efficiency of refuse-derived fuel-3

    Eka Wahyanti, Sirintornthep Towprayoon, Noppharit Sutthasil, Suthum Patumsawad, Komsilp Wangyao

    International Journal of Renewable Energy Development· 2024· อ้างอิง 3
  10. Effect of Negative Aeration Rates on Water Balance in Biodrying of Wet-Refuse-Derived Fuel

    Bhatsada A. Patumsawad S. and Wangyao K

    Thai Environmental Engineering Journal. Vol.37 No.1 : 55--63· 2023
  11. Modification of the Aeration-Supplied Configuration in the Biodrying Process for Refuse-Derived Fuel (RDF) Production

    Abhisit Bhatsada, Suthum Patumsawad, Sirintornthep Towprayoon, Chart Chiemchaisri, Awassada Phongphiphat, Komsilp Wangyao

    Energies· 2023· อ้างอิง 18
  12. The effect of aeration rate and feedstock density on biodrying performance for wet refuse-derived fuel quality improvement

    Tanik Itsarathorn, Sirintornthep Towprayoon, Chart Chiemchaisri, Suthum Patumsawad, Awassada Phongphiphat, Abhisit Bhatsada, Komsilp Wangyao

    International Journal of Renewable Energy Development· 2023· อ้างอิง 11
  13. Optimization of Aeration for Accelerating Municipal Solid Waste Biodrying

    Panida Payomthip, Sirintornthep Towprayoon, Chart Chiemchaisri, Suthum Patumsawad, Komsilp Wangyao

    International Journal of Renewable Energy Development· 2022· อ้างอิง 27
  14. Improvement of energy recovery potential of wet-refuse-derived fuel through bio-drying process

    Abhisit Bhatsada, Suthum Patumsawad, Tanik Itsarathorn, Sirintornthep Towprayoon, Chart Chiemchaisri, Awassada Phongphiphat, Komsilp Wangyao

    Journal of Material Cycles and Waste Management· 2022· อ้างอิง 20
  15. The Situation of RDF Utilization in the Cement Industry in Thailand

    Tanik Itsarathorn, Sirintornthep Towprayoon, Chart Chiemchaisri, Suthum Patumsawad, Komsilp Wangyao, Awassada Phongphipat

    · 2022· อ้างอิง 11
  16. Particulate matter characterization of the combustion emissions from agricultural waste products

    Sunthorn Laaongnaun, Suthum Patumsawad

    Heliyon· 2022· อ้างอิง 8
  17. Effect of Aeration rate on Wet- refuse-derived fuel Biodrying process for increasing Heating value and Water content reduction

    Abhisit Bhatsada, Komsilp Wangyao, Suthum Patumsawad

    · 2022· อ้างอิง 2
  18. Quality improvement of mixed MSW drying using a pilot-scale solar greenhouse biodrying system

    Katitep Ngamket, Komsilp Wangyao, Suthum Patumsawad, Pipat Chaiwiwatworakul, Sirintornthep Towprayoon

    Journal of Material Cycles and Waste Management· 2021· อ้างอิง 20
  19. Effects of operating parameters on co-gasification of coconut petioles and refuse-derived fuel

    Natvaree Chommontha, Awassada Phongphiphat, Komsilp Wangyao, Suthum Patumsawad, Sirintornthep Towprayoon

    Waste Management & Research The Journal for a Sustainable Circular Economy· 2021· อ้างอิง 14
  20. Effect of Intermittent Negative Ventilation in Biodrying Process for Treating Pre-Shredded Waste

    P Panida, Sirintornthep Towprayoon, Chart Chiemchaisri, Suthum Patumsawad, Komsilp Wangyao

    IOP Conference Series Earth and Environmental Science· 2020· อ้างอิง 6
  21. The effects of air flow rate simulation on the combustion characteristics of luecaena woodchip in a fixed bed

    Nithitorn Kongkaew, Suthum Patumsawad

    IOP Conference Series Earth and Environmental Science· 2019
  22. Hydrothermal carbonization of rice husk for fuel upgrading

    N. Suteerawattananonda, Nithitorn Kongkaew, Suthum Patumsawad

    IOP Conference Series Materials Science and Engineering· 2018· อ้างอิง 11
  23. Torrefaction Study of Indonesian Crop Residues Subject to Open Burning

    Ade Andini, Sébastien Bonnet, Patrick Rousset, Suthum Patumsawad, Adisak Pattiya

    Agritrop (Cirad)· 2018· อ้างอิง 3
  24. Hydrothermal Carbonization (HTC) of Sugarcane Stranded: Effect of Operation Condition to Hydrochar Production

    Witchaya Pruksakit, Suthum Patumsawad

    Energy Procedia· 2016· อ้างอิง 16
  25. Particulate matter and gaseous emission rate from combustion of Thai lignite and agricultural residues in a fixed-bed combustor

    Nuttasut Mantananont, Suthum Patumsawad

    Energy Sources Part A Recovery Utilization and Environmental Effects· 2016· อ้างอิง 2
  26. Thermogravimetric Kinetic Analysis of the Pyrolysis of Rice Straw

    Nithitorn Kongkaew, Witchaya Pruksakit, Suthum Patumsawad

    Energy Procedia· 2015· อ้างอิง 87
  27. Four Zones Modeling of the Downdraft Biomass Gasification Process: Effects of Moisture Content and Air to Fuel Ratio

    C. Dejtrakulwong, Suthum Patumsawad

    Energy Procedia· 2014· อ้างอิง 48
  28. The Effect of the Combustion of Rice Husk with Thai Lignite in a Fixed Bed Reactor on Combustion Characteristics and Pollutant Emissions

    N. Mantananont, Suthum Patumsawad

    Energy Sources Part A Recovery Utilization and Environmental Effects· 2014· อ้างอิง 3
  29. An Analysis of Wood Pyrolysis Tar from High Temperature Thermal Cracking Process

    Thawatchai Wongchang, Suthum Patumsawad, Bundit Fungtammasan

    Energy Sources Part A Recovery Utilization and Environmental Effects· 2013· อ้างอิง 18
  30. Fuel Characteristics of Agricultural Residues in Thailand

    Savitri Garivait, Ubonwan Chaiyo, Suthum Patumsawad, Jittawadee Deakhuntod

    Energy Sources Part A Recovery Utilization and Environmental Effects· 2013· อ้างอิง 8
  31. Simulation of MSW Pyrolysis/Gasification Processes for Power Production

    Chayanee Chaisanguan, Suthum Patumsawad, Phavanee Narataruksa

    Advanced materials research· 2013
  32. Characterisation of Particulate Matter Emitted from Cofiring of Lignite and Agricultural Residues in a Fixed-Bed Combustor

    N. Mantananont, Savitri Garivait, Suthum Patumsawad

    The Scientific World JOURNAL· 2012· อ้างอิง 3
  33. Temperature Impact on Reforming of Wood Derived Pyrolysis Gas for Hydrogen Production and Tar Reduction

    Thawatchai Wongchang, Suthum Patumsawad, Bundit Fungtammasan

    Journal of Biobased Materials and Bioenergy· 2012· อ้างอิง 1
  34. Emission Inventory of Electricity Generation in Thailand

    P. Krittayakasem, Suthum Patumsawad, Savitri Garivait

    · 2011· อ้างอิง 26
  35. Influencing Of Rice Residue Management Method On Ghg Emission From Rice Cultivation

    Penwadee Cheewaphongphan, Savitri Garivait, A Pongpullponsak, Suthum Patumsawad

    Zenodo (CERN European Organization for Nuclear Research)· 2011· อ้างอิง 4
  36. Real-Time Particulate Emissions from Combustion of a Thai Lignite in a Fixed Bed

    N. Mantananont, Savitri Garivait, Suthum Patumsawad

    Combustion Science and Technology· 2011
  37. Time Series of Combustion Characteristics and Particulate Emission during Combustion of Thai Lignite in a Fixed Bed

    N. Mantananont, S. Garivait, Suthum Patumsawad

    Journal of Environmental Science and Engineering· 2011
  38. Co-firing of Thai lignite and municipal solid waste (MSW) in a fluidised bed: Effect of MSW moisture content

    Kriengkrai Suksankraisorn, Suthum Patumsawad, Bundit Fungtammasan

    Applied Thermal Engineering· 2010· อ้างอิง 38
  39. Experimental Study on Preheated Air and Flue Gas Recirculation in Solid Waste Incineration

    Pitaksa Suvarnakuta, Suthum Patumsawad, Somrat Kerdsuwan

    Energy Sources Part A Recovery Utilization and Environmental Effects· 2010· อ้างอิง 9
  40. Emission Assessment Of Rice Husk Combustion For Power Production

    Thipwimon Chungsangunsit, Shabbir H. Gheewala, Suthum Patumsawad

    · 2009· อ้างอิง 22
  41. In-Depth Experimental Study of Solid-Waste Destruction by High Temperature Air Combustion

    Pitaksa Suvarnakuta, Suthum Patumsawad, Somrat Kerdsuwan

    Energy Sources Part A Recovery Utilization and Environmental Effects· 2009· อ้างอิง 4
  42. Effects of highly preheated combustion air on characteristics of burner operation and fuel consumption in controlled-air incinerator

    Pitaksa Suvarnakuta, Suthum Patumsawad, Somrat Kerdsuwan

    DOAJ (DOAJ: Directory of Open Access Journals)· 2008· อ้างอิง 1
  43. Physical and Chemical Properties of Thai Biomass Fuels from Agricultural Residues

    Savitri Garivait, Ubonwan Chaiyo, Suthum Patumsawad

    · 2006· อ้างอิง 46
  44. Environmental Assessment of Electricity Production from Rice Husk: A Case Study in Thailand

    Thipwimon Chungsangunsit, Shabbir H. Gheewala, Suthum Patumsawad

    International Energy Journal· 2005· อ้างอิง 52
  45. Co-combustion of municipal solid waste and Thai lignite in a fluidized bed

    Kriengkrai Suksankraisorn, Suthum Patumsawad, Pumyos Vallikul, Bundit Fungtammasan, A Accary

    Energy Conversion and Management· 2003· อ้างอิง 83
  46. Combustion studies of high moisture content waste in a fluidised bed

    Kriengkrai Suksankraisorn, Suthum Patumsawad, Bundit Fungtammasan

    Waste Management· 2003· อ้างอิง 34
  47. Experimental study on fluidised bed combustion of high moisture municipal solid waste

    Suthum Patumsawad, Keith R. Cliffe

    Energy Conversion and Management· 2002· อ้างอิง 80
  48. Experimental study on fluidised bed combustion of high moisture municipal solid waste

    Suthum Patumsawad

    Energy Conversion and Management· 2002· อ้างอิง 2
  49. Co-combustion of waste from olive oil production with coal in a fluidised bed

    Keith R. Cliffe, Suthum Patumsawad

    Waste Management· 2001· อ้างอิง 65

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