# | Document title | Authors | Year | Source | Cited by |
1 | Effect of low-temperature hydrothermal treatment of HZSM-5 extrudates on the production of deeply-deoxygenated bio-oil via ex-situ catalytic fast pyrolysis of biomass | Promsampao N., Chollacoop N., Pattiya A. | 2022 | Fuel 324 | 10 |
2 | Effect of condensation-assisted solid media on the production of bio-oil by fast pyrolysis of cassava residues in a free-fall reactor | Rueangsan K., Sonsupap S., Promsampao N., Chollacoop N., Pattiya A. | 2023 | Journal of the Energy Institute 107 | 5 |
3 | Oleaginous yeast, Rhodotorula paludigena CM33, platform for bio-oil and biochar productions via fast pyrolysis | Poopisut P., Boonyanan P., Boontawan P., Sukjit E., Promsampao N., Promsampao N., Chollacoop N., Ketudat-Cairns M., Pattiya A., Boontawan A. | 2023 | Biotechnology for Biofuels and Bioproducts 16(1) | 5 |
4 | Regeneration of pristine HZSM-5 extrudates during the production of deeply deoxygenated bio-oil from: Ex situ catalytic fast pyrolysis of biomass in a bench-scale fluidised-bed reactor | Promsampao N., Chollacoop N., Pattiya A. | 2022 | Reaction Chemistry and Engineering 7(2),pp. 398-415 | 4 |
5 | Yields and characteristics of bio-oil and biochar from fast pyrolysis and co-pyrolysis of oil palm biomass using innovative twin screw reactor for bio-circular-green economy approach | Kongto P., Palamanit A., Pattiya A., Promsampao N., Sonsupap S., Phusunti N., Theapparat Y., Chanakaewsomboon I., Tippayawong N. | 2024 | Biomass Conversion and Biorefinery
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