
| Title | Author | Year | SCOPUS | PUBMED | ISI | TCI | |
|---|---|---|---|---|---|---|---|
| 1. | Atrazine remediation in agricultural infiltrate by bioaugmented polyvinyl alcohol immobilized and free Agrobacterium radiobacter J14a | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2008 | ||||
| 2. | Effect of cell-to-matrix ratio in polyvinyl alcohol immobilized pure and mixed cultures on atrazine degradation | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2008 | ||||
| 3. | A feasibility study of immobilized and free mixed culture bioaugmentation for treating atrazine in infiltrate | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2009 | ||||
| 4. | Atrazine degradation by stable mixed cultures enriched from agricultural soil and their characterization | Siripattanakul-Ratpukdi, S. Wirojanagud, W. Limpiyakorn, T. |
2009 | ||||
| 5. | Atrazine removal in agricultural infiltrate by bioaugmented polyvinyl alcohol immobilized and free Agrobacterium radiobacter J14a: A sand column study | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2009 | ||||
| 6. | Fundamentals and applications of entrapped cell bioaugmentation for contaminant removal | Siripattanakul-Ratpukdi, S. | 2010 | ||||
| 7. | Mineralization and biodegradability enhancement of natural organic matter by ozone-VUV in comparison with ozone, VUV, ozone-UV, and UV: Effects of pH and ozone dose | Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2010 | ||||
| 8. | Nitrate removal from agricultural infiltrate by bioaugmented free and alginate entrapped cells | Siripattanakul-Ratpukdi, S. | 2010 | ||||
| 9. | A new method to determine initial viability of entrapped cells using fluorescent nucleic acid staining | Siripattanakul-Ratpukdi, S. | 2011 | ||||
| 10. | Effects of cell entrapment on nucleic acid content and microbial diversity of mixed cultures in biological wastewater treatment | Pramanik, S. Siripattanakul-Ratpukdi, S. |
2011 | ||||
| 11. | Effects of soil water characteristic curves on simulation of nitrate vertical transport in a Thai agricultural soil | Siriwong, W. Siripattanakul-Ratpukdi, S. |
2011 | ||||
| 12. | Entrapped cell system for decentralized hospital wastewater treatment: Inhibitory effect of disinfectants | Siripattanakul-Ratpukdi, S. | 2012 | ||||
| 13. | Inhibition kinetics of ammonia oxidation influenced by silver nanoparticles | Limpiyakorn, T. Siripattanakul-Ratpukdi, S. |
2012 | ||||
| 14. | Diethyl phthalate degradation by the freeze-dried, entrapped Bacillus subtilis strain 3C3 | Siripattanakul-Ratpukdi, S. Vangnai, A.S. |
2014 | ||||
| 15. | Mitigation of nitrification inhibition by silver nanoparticles using cell entrapment technique | Siripattanakul-Ratpukdi, S. Limpiyakorn, T. Vangnai, A.S. Rongsayamanont, C. |
2014 | ||||
| 16. | Organophosphate pesticide exposure and dialkyl phosphate urinary metabolites among chili farmers in northeastern Thailand | Norkaew, S. Siriwong, W. Siripattanakul-Ratpukdi, S. Robson, M.G. |
2014 | ||||
| 17. | Profenofos insecticide degradation by novel microbial consortium and isolates enriched from contaminated chili farm soil | Siripattanakul-Ratpukdi, S. Vangnai, A.S. Sangthean, P. Singkibut, S. |
2014 | ||||
| 18. | Review: Issues of silver nanoparticles in engineered environmental treatment systems | Siripattanakul-Ratpukdi, S. | 2014 | ||||
| 19. | Profenofos insecticide degradation by novel microbial consortium and isolates enriched from contaminated chili farm soil | Siripattanakul-Ratpukdi, S. Vangnai, A.S. Sangthean, P. Singkibut, S. |
2015 | ||||
| 20. | Characterization of profenofos degradation by Pseudomonas plecoglossicida strain PF1 using surface response methodology | Vangnai, A.S. Wantala, K. |
2017 | ||||
| 21. | Enhancement of Profenofos Remediation Using Stimulated Bioaugmentation Technique | Siripattanakul-Ratpukdi, S. Vangnai, A.S. |
2017 | ||||
| 22. | Influence of silver nanoparticles and liberated silver ions on nitrifying sludge: ammonia oxidation inhibitory kinetics and mechanism | Giao, N.T. Limpiyakorn, T. Siripattanakul-Ratpukdi, S. |
2017 | ||||
| 23. | Mechanical and chemical stabilities of barium alginate gel: Influence of chemical concentrations | Radpukdee, T. | 2017 | ||||
| 24. | Influence of infiltration rates during profenofos pesticide removal by attached and entrapped bacterial cells | Ratpukdi, T. | 2018 | ||||
| 25. | Occurrence of trihalomethanes and haloacetonitriles in water distribution networks of Khon Kaen Municipality, Thailand | Ratpukdi, T. Kiattisaksiri, P. |
2019 | ||||
| 26. | Performance and kinetics of triclocarban removal by entrapped Pseudomonas fluorescens strain MC46 | Ratpukdi, T. | 2019 | ||||
| 27. | Reduction of silver nanoparticle toxicity affecting ammonia oxidation using cell entrapment technique | Limpiyakorn, T. Ratpukdi, T. |
2019 | ||||
| 28. | Simultaneous bioprecipitation of cadmium to cadmium sulfide nanoparticles and nitrogen fixation by Rhodopseudomonas palustris TN110 | Sakpirom, J. Siripattanakul-Ratpukdi, S. Khan, E. |
2019 | ||||
| 29. | Aerobic and anoxic degradation and detoxification of profenofos insecticide by Pseudomonas plecoglossicida strain PF1 | Vangnai, A.S. Siripattanakul-Ratpukdi, S. |
2020 | ||||
| 30. | Manganese-contaminated groundwater treatment by novel bacterial isolates: kinetic study and mechanism analysis using synchrotron-based techniques | Ratpukdi, T. | 2020 | ||||
| 31. | Potential degradation and kinetics of melanoidin by using laccase from white rot fungus | Mungkarndee, P. Boonlue, S. |
2020 | ||||
| 32. | Simultaneous manganese adsorption and biotransformation by Streptomyces violarus strain SBP1 cell-immobilized biochar | Supanchaiyamat, N. Hunt, A.J. Ngernyen, Y. Ratpukdi, T. |
2020 | ||||
| 33. | Biofiltration for treatment of recent emerging contaminants in water: Current and future perspectives | Siripattanakul-Ratpukdi, S. Ratpukdi, T. Youngwilai, A. |
2021 | ||||
| 34. | Manganese removal by biofiltration using activated carbon-barium alginate-entrapped cells: Morphology, durability, settling velocity, and treatment efficiency | Therdkiattikul, N. Giao, N.T. Siripattanakul-Ratpukdi, S. |
2021 | ||||
| 35. | Molecular dissolved organic matter removal by cotton-based adsorbents and characterization using high-resolution mass spectrometry | Phungsai, P. | 2021 | ||||
| 36. | Removal of triclocarban from treated wastewater using cell-immobilized biochar as a sustainable water treatment technology | Supanchaiyamat, N. Ngernyen, Y. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2021 | ||||
| 37. | Characterization of dissolved organic carbon and disinfection by-products in biochar filter leachate using orbitrap mass spectrometry | Youngwilai, A. Phungsai, P. Supanchaiyamat, N. Ngernyen, Y. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2022 | ||||
| 38. | Characterization of molecular dissolved organic matter removed by modified eucalyptus-based biochar and disinfection by-product formation potential using Orbitrap mass spectrometric analysis | Prasert, T. Ngernyen, Y. Siripattanakul-Ratpukdi, S. Phungsai, P. |
2022 | ||||
| 39. | Enhanced triclocarban remediation from groundwater using Pseudomonas fluorescens strain MC46 immobilized on agro-industrial waste-derived biochar: Optimization and kinetic analysis | Toomsan, W. Supanchaiyamat, N. Ngernyen, Y. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2022 | ||||
| 40. | Photodegradation of profenofos in aqueous solution by vacuum ultraviolet | Ratpukdi, T. Siripattanakul-Ratpukdi, S. Thongprowh, P. Soontharo, S. Jenjaiwit, S. Prasertwongchai, A. Anotai, J. |
2022 | ||||
| 41. | Triclocarban-contaminated wastewater treatment by innovative hybrid moving entrapped bead activated sludge reactor (HyMER): Continuous performance and computational dynamic simulation analysis | Taweetanawanit, P. Therdkiattikul, N. Sonsuphab, K. Sucharitpwatskul, S. Suriyawanakul, J. Radpukdee, T. |
2023 | ||||
| 42. | Electro-peroxone process for triclocarban and triclosan removal and reclaimed water disinfection | Jenjaiwit, S. Siripattanakul-Ratpukdi, S. Khan, E. Prasopsuk, J. Ratpukdi, T. |
2024 | ||||
| 43. | Integrated remediation and detoxification of triclocarban-contaminated water using waste-derived biochar-immobilized cells by long-term column experiments | Sonsuphab, K. Toomsan, W. Soontharo, S. Supanchaiyamat, N. Hunt, A.J. Ngernyen, Y. Nasompag, S. Kiattisaksiri, P. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2024 | ||||
| 44. | Triclocarban removal in agricultural runoff using biochar-microbe-augmented bioretention drainage systems: Performance and role of microbial community | Saisuwan, W Sonsuphab, K Jenjaiwit, S Charanaipayuk, N Ngernyen, Y Mhuantong, W Ratpukdi, T Siripattanakul-Ratpukdi, S |
2025 | Count | 44 | 1 | 0 | 0 |
| Title | Authors | Year | Publication name | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | รวม | ||||||
| 1. | Atrazine remediation in agricultural infiltrate by bioaugmented polyvinyl alcohol immobilized and free Agrobacterium radiobacter J14a | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2008 |
Water Science and Technology 11 (58), pp. 2155-2163 |
||||||||
| 2. | Effect of cell-to-matrix ratio in polyvinyl alcohol immobilized pure and mixed cultures on atrazine degradation | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2008 |
Water, Air, and Soil Pollution: Focus 3-4 (8), pp. 257-266 |
||||||||
| 3. | A feasibility study of immobilized and free mixed culture bioaugmentation for treating atrazine in infiltrate | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2009 |
Journal of Hazardous Materials 2-3 (168), pp. 1373-1379 |
||||||||
| 4. | Atrazine degradation by stable mixed cultures enriched from agricultural soil and their characterization | Siripattanakul-Ratpukdi, S. Wirojanagud, W. Limpiyakorn, T. |
2009 |
Journal of Applied Microbiology 3 (106), pp. 986-992 |
||||||||
| 5. | Atrazine removal in agricultural infiltrate by bioaugmented polyvinyl alcohol immobilized and free Agrobacterium radiobacter J14a: A sand column study | Siripattanakul-Ratpukdi, S. Wirojanagud, W. |
2009 |
Chemosphere 2 (74), pp. 308-313 |
||||||||
| 6. | Fundamentals and applications of entrapped cell bioaugmentation for contaminant removal | Siripattanakul-Ratpukdi, S. | 2010 |
Emerging Environmental Technologies (2), pp. 147-169 |
||||||||
| 7. | Mineralization and biodegradability enhancement of natural organic matter by ozone-VUV in comparison with ozone, VUV, ozone-UV, and UV: Effects of pH and ozone dose | Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2010 |
Water Research 11 (44), pp. 3531-3543 |
||||||||
| 8. | Nitrate removal from agricultural infiltrate by bioaugmented free and alginate entrapped cells | Siripattanakul-Ratpukdi, S. | 2010 |
Water Environment Research 7 (82), pp. 617-621 |
||||||||
| 9. | A new method to determine initial viability of entrapped cells using fluorescent nucleic acid staining | Siripattanakul-Ratpukdi, S. | 2011 |
Bioresource Technology 2 (102), pp. 1622-1627 |
||||||||
| 10. | Effects of cell entrapment on nucleic acid content and microbial diversity of mixed cultures in biological wastewater treatment | Pramanik, S. Siripattanakul-Ratpukdi, S. |
2011 |
Bioresource Technology 3 (102), pp. 3176-3183 |
||||||||
| 11. | Effects of soil water characteristic curves on simulation of nitrate vertical transport in a Thai agricultural soil | Siriwong, W. Siripattanakul-Ratpukdi, S. |
2011 |
Sustainable Environment Research 3 (21), pp. 187-193 |
||||||||
| 12. | Entrapped cell system for decentralized hospital wastewater treatment: Inhibitory effect of disinfectants | Siripattanakul-Ratpukdi, S. | 2012 |
Environmental Technology (United Kingdom) 20 (33), pp. 2319-2328 |
||||||||
| 13. | Inhibition kinetics of ammonia oxidation influenced by silver nanoparticles | Limpiyakorn, T. Siripattanakul-Ratpukdi, S. |
2012 |
Water, Air, and Soil Pollution 8 (223), pp. 5197-5203 |
||||||||
| 14. | Diethyl phthalate degradation by the freeze-dried, entrapped Bacillus subtilis strain 3C3 | Siripattanakul-Ratpukdi, S. Vangnai, A.S. |
2014 |
International Biodeterioration and Biodegradation (91), pp. 138-147 |
||||||||
| 15. | Mitigation of nitrification inhibition by silver nanoparticles using cell entrapment technique | Siripattanakul-Ratpukdi, S. Limpiyakorn, T. Vangnai, A.S. Rongsayamanont, C. |
2014 |
Journal of Nanoparticle Research 2 (16), pp. |
||||||||
| 16. | Organophosphate pesticide exposure and dialkyl phosphate urinary metabolites among chili farmers in northeastern Thailand | Norkaew, S. Siriwong, W. Siripattanakul-Ratpukdi, S. Robson, M.G. |
2014 |
Roczniki Państwowego Zakładu Higieny 4 (65), pp. 291-299 |
||||||||
| 17. | Profenofos insecticide degradation by novel microbial consortium and isolates enriched from contaminated chili farm soil | Siripattanakul-Ratpukdi, S. Vangnai, A.S. Sangthean, P. Singkibut, S. |
2014 |
Environmental Science and Pollution Research 1 (22), pp. 320-328 |
||||||||
| 18. | Profenofos insecticide degradation by novel microbial consortium and isolates enriched from contaminated chili farm soil | Siripattanakul-Ratpukdi, S. Vangnai, A.S. Sangthean, P. Singkibut, S. |
2014 |
Environmental Science and Pollution Research (), pp. |
||||||||
| 19. | Review: Issues of silver nanoparticles in engineered environmental treatment systems | Siripattanakul-Ratpukdi, S. | 2014 |
Water, Air, and Soil Pollution 4 (225), pp. 1-18 |
||||||||
| 20. | Profenofos insecticide degradation by novel microbial consortium and isolates enriched from contaminated chili farm soil | Siripattanakul-Ratpukdi, S. Vangnai, A.S. Sangthean, P. Singkibut, S. |
2015 |
Environmental science and pollution research international 1 (22), pp. 320-328 |
||||||||
| 21. | Characterization of profenofos degradation by Pseudomonas plecoglossicida strain PF1 using surface response methodology | Vangnai, A.S. Wantala, K. |
2017 |
Desalination and Water Treatment (89), pp. 142-149 |
||||||||
| 22. | Enhancement of Profenofos Remediation Using Stimulated Bioaugmentation Technique | Siripattanakul-Ratpukdi, S. Vangnai, A.S. |
2017 |
Journal of Advanced Oxidation Technologies 2 (20), pp. |
||||||||
| 23. | Influence of silver nanoparticles and liberated silver ions on nitrifying sludge: ammonia oxidation inhibitory kinetics and mechanism | Giao, N.T. Limpiyakorn, T. Siripattanakul-Ratpukdi, S. |
2017 |
Environmental Science and Pollution Research 10 (24), pp. 9229-9240 |
||||||||
| 24. | Mechanical and chemical stabilities of barium alginate gel: Influence of chemical concentrations | Radpukdee, T. | 2017 |
Key Engineering Materials (718), pp. 62-66 |
||||||||
| 25. | Influence of infiltration rates during profenofos pesticide removal by attached and entrapped bacterial cells | Ratpukdi, T. | 2018 |
Desalination and Water Treatment (120), pp. 311-322 |
||||||||
| 26. | Occurrence of trihalomethanes and haloacetonitriles in water distribution networks of Khon Kaen Municipality, Thailand | Ratpukdi, T. Kiattisaksiri, P. |
2019 |
Water Science and Technology: Water Supply 6 (19), pp. 1748-1757 |
||||||||
| 27. | Performance and kinetics of triclocarban removal by entrapped Pseudomonas fluorescens strain MC46 | Ratpukdi, T. | 2019 |
Bioresource Technology (274), pp. 113-119 |
||||||||
| 28. | Reduction of silver nanoparticle toxicity affecting ammonia oxidation using cell entrapment technique | Limpiyakorn, T. Ratpukdi, T. |
2019 |
Water Science and Technology 5 (79), pp. 1007-1016 |
||||||||
| 29. | Simultaneous bioprecipitation of cadmium to cadmium sulfide nanoparticles and nitrogen fixation by Rhodopseudomonas palustris TN110 | Sakpirom, J. Siripattanakul-Ratpukdi, S. Khan, E. |
2019 |
Chemosphere (223), pp. 455-464 |
||||||||
| 30. | Aerobic and anoxic degradation and detoxification of profenofos insecticide by Pseudomonas plecoglossicida strain PF1 | Vangnai, A.S. Siripattanakul-Ratpukdi, S. |
2020 |
Ecotoxicology and Environmental Safety (190), pp. |
||||||||
| 31. | Manganese-contaminated groundwater treatment by novel bacterial isolates: kinetic study and mechanism analysis using synchrotron-based techniques | Ratpukdi, T. | 2020 |
Scientific Reports 1 (10), pp. |
||||||||
| 32. | Potential degradation and kinetics of melanoidin by using laccase from white rot fungus | Mungkarndee, P. Boonlue, S. |
2020 |
Applied Environmental Research 3 (42), pp. 1-10 |
||||||||
| 33. | Simultaneous manganese adsorption and biotransformation by Streptomyces violarus strain SBP1 cell-immobilized biochar | Supanchaiyamat, N. Hunt, A.J. Ngernyen, Y. Ratpukdi, T. |
2020 |
Science of the Total Environment (713), pp. |
||||||||
| 34. | Biofiltration for treatment of recent emerging contaminants in water: Current and future perspectives | Siripattanakul-Ratpukdi, S. Ratpukdi, T. Youngwilai, A. |
2021 |
Water Environment Research 7 (93), pp. 972-992 |
||||||||
| 35. | Manganese removal by biofiltration using activated carbon-barium alginate-entrapped cells: Morphology, durability, settling velocity, and treatment efficiency | Therdkiattikul, N. Giao, N.T. Siripattanakul-Ratpukdi, S. |
2021 |
Applied Environmental Research 1 (43), pp. 127-139 |
||||||||
| 36. | Molecular dissolved organic matter removal by cotton-based adsorbents and characterization using high-resolution mass spectrometry | Phungsai, P. | 2021 |
Science of the Total Environment (754), pp. |
||||||||
| 37. | Removal of triclocarban from treated wastewater using cell-immobilized biochar as a sustainable water treatment technology | Supanchaiyamat, N. Ngernyen, Y. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2021 |
Journal of Cleaner Production (320), pp. |
||||||||
| 38. | Characterization of dissolved organic carbon and disinfection by-products in biochar filter leachate using orbitrap mass spectrometry | Youngwilai, A. Phungsai, P. Supanchaiyamat, N. Ngernyen, Y. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2022 |
Journal of Hazardous Materials (424), pp. |
||||||||
| 39. | Characterization of molecular dissolved organic matter removed by modified eucalyptus-based biochar and disinfection by-product formation potential using Orbitrap mass spectrometric analysis | Prasert, T. Ngernyen, Y. Siripattanakul-Ratpukdi, S. Phungsai, P. |
2022 |
Science of the Total Environment (820), pp. |
||||||||
| 40. | Enhanced triclocarban remediation from groundwater using Pseudomonas fluorescens strain MC46 immobilized on agro-industrial waste-derived biochar: Optimization and kinetic analysis | Toomsan, W. Supanchaiyamat, N. Ngernyen, Y. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2022 |
Journal of Environmental Chemical Engineering 3 (10), pp. |
||||||||
| 41. | Photodegradation of profenofos in aqueous solution by vacuum ultraviolet | Ratpukdi, T. Siripattanakul-Ratpukdi, S. Thongprowh, P. Soontharo, S. Jenjaiwit, S. Prasertwongchai, A. Anotai, J. |
2022 |
Journal of Photochemistry and Photobiology A: Chemistry (433), pp. |
||||||||
| 42. | Triclocarban-contaminated wastewater treatment by innovative hybrid moving entrapped bead activated sludge reactor (HyMER): Continuous performance and computational dynamic simulation analysis | Taweetanawanit, P. Therdkiattikul, N. Sonsuphab, K. Sucharitpwatskul, S. Suriyawanakul, J. Radpukdee, T. |
2023 |
Science of the Total Environment (879), pp. |
||||||||
| 43. | Electro-peroxone process for triclocarban and triclosan removal and reclaimed water disinfection | Jenjaiwit, S. Siripattanakul-Ratpukdi, S. Khan, E. Prasopsuk, J. Ratpukdi, T. |
2024 |
Journal of Water Process Engineering (67), pp. |
||||||||
| 44. | Integrated remediation and detoxification of triclocarban-contaminated water using waste-derived biochar-immobilized cells by long-term column experiments | Sonsuphab, K. Toomsan, W. Soontharo, S. Supanchaiyamat, N. Hunt, A.J. Ngernyen, Y. Nasompag, S. Kiattisaksiri, P. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2024 |
Environmental Pollution (357), pp. |
||||||||
| 45. | Triclocarban removal in agricultural runoff using biochar-microbe-augmented bioretention drainage systems: Performance and role of microbial community | Saisuwan, W. Sonsuphab, K. Jenjaiwit, S. Charanaipayuk, N. Ngernyen, Y. Mhuantong, W. Ratpukdi, T. Siripattanakul-Ratpukdi, S. |
2025 |
Bioresource Technology (435), pp. |
||||||||
| Title | Authors | Year | Journal title | ||
|---|---|---|---|---|---|
| 1. | Triclocarban removal in agricultural runoff using biochar-microbe-augmented bioretention drainage systems: Performance and role of microbial community. | Saisuwan, W Sonsuphab, K Jenjaiwit, S Charanaipayuk, N Ngernyen, Y Mhuantong, W Ratpukdi, T Siripattanakul-Ratpukdi, S |
2025 |
Bioresource technology (), pp. 132875 |
| Title | Authors | Year | Journal title | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | รวม | ||||||
| Title | Authors | Year | Journal title |
|---|
| ชื่อโครงการ | Authors | ประเภทโครงการ | ปีงบประมาณ | ทุนวิจับ |
|---|