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賴俊吉 教授兼工學院副院長
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現任職務 |
| ‧國立高雄科技大學工學院 副院長 |
| ‧國立高雄科技大學 能源科技研究中心主任 |
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學歷 |
| ‧日本東北大學土木工學科博士 |
| ‧日本東北大學土木工學科碩士 |
| ‧國立成功大學環境工程系學士 |
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經歷與專業活動 |
| ‧國立高雄科技大學環境與安全衛生工程系 副教授 |
| ‧國立高雄科技大學環境與安全衛生技術系 助理教授 |
| ‧美國愛荷華州立大學厭氧研究中心助理研究員 |
| ‧日本科學技術振興事業團戰略基礎研究推進事業研究員 |
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研究領域 |
| ‧有機毒性廢水厭氧處理程序(UASB,EGSB,FluidizedBed) |
| ‧厭氧處理程序的微生物發展控制 |
| ‧環境污染控制對地球溫暖化的影響 |
| ‧湖泊底泥及垃圾掩埋場中微生物代謝反應 |
| ‧高濃度及高效率污泥處理(卵型汙泥厭氧醱酵程序) |
| ‧生物系統的數值統計分析 |
| ‧生垃圾的厭氧沼氣醱酵程序 |
| ‧生垃圾的厭氧氫醱酵程序 |
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研究成果 |
| 1. Lay, J.J., Lee, Y. J. and Noike, T. (1999) Feasibility of biological hydrogen production from organic fraction of municipal solid waste, Water Res. 33(11), 2579-2586. |
| 2. Lay, J.J., Li, Y.Y. and Noike, T. (1999) Interaction between homoacetogens and methanogens in lake sediments, J. Ferment. Technol. |
| 3. Lay, J.J. and Noike, T. (1999) Hydrogen production and degradation of cellulose by anaerobic digested sludge, J. Environ. Syst. and Eng. JSCE (in press) |
| 4. Shang, Y.Y., Lay, J.J. and Sung, S. (1999) Anaerobic mineralization of cellulose by temperature phase reactor, Water Environ. Res. (in press). |
| 5. Lay, J.J. and Cheng, S.S. (1998) Influence of hydraulic loading rate on UASB reactor treating phenolic wastewater, J. Environ. Eng. ASCE. 124(9), 829-837. |
| 6. Lay, J.J., Li, Y.Y. and Noike, T. (1998) Mathematical model for methane production from landfill bioreactor, J. Environ. Eng. ASCE 124(8), 730-736. |
| 7. Lay, J.J., Li, Y.Y. and Noike, T. (1998) The influences of pH and ammonia concentration on the methane production in high-solids digestion, Water Environ. Res. 70(5), 1075-1082. |
| 8. Lay, J.J., Li, Y.Y. and Noike, T. (1998) Developments of bacterial population and methanogenic activity in a landfill bioreactor, Water Res. 32(12), 3673-3679. |
| 9. Lay, J.J., Li, Y.Y. and Noike, T. (1998) Dynamics of methanogenic activities in a landfill bioreactor treating organic fraction of municipal solid wastes, Water Sci. Technol. 38(2), 177-184. |
| 10. Lay, J.J., Li, Y.Y. and Noike, T. (1997) The influences of pH and moisture content on the methane production in high-solids sludge digestion, Water Res. 31(6), 1518-1524. |
| 11. Lay, J.J., Li, Y.Y., Noike, T., Endo, J. and Ishimoto, S. (1997) Analysis of environmental factors affecting methane production from high-solids organic waste, Water Sci. Technol. 36(6-7), 493-500. |
| 12. Lay, J.J., Miyahara, T. and Noike, T. (1996) Methane release rate and methanogenic bacterial population in lake sediments, Water Res. 30(4), 901-908. |
| 13. Lay, J.J., Li, Y.Y. and Noike, T. (1996) Effect of moisture content and chemical nature on methane fermentation characteristics of municipal solid wastes, J. Environ. Syst. and Eng. JSCE, 552/VII-1, 101-108. |
| 14. Wen, T.C., Cheng, S.S. and Lay, J.J. (1994) A kinetic model of a recirculated upflow anaerobic sludge blanket treating phenolic wastewater, Water Environ. Res. 66(6), 794-799. |
| 15. Cheng, S.S., Huang S.Y., Lay, J.J. and Tsai, P.S. (1992) Population dynamics of attached biofilm in anaerobic fluidized bed pilot plant, Water Sci. Technol. 26(3-4), 794-799 |
| 16. Cheng, S.S. Lay, J.J., Wei, Y.T., Wu, M.H., Roam, G.D. and Chang, T.C. (1990) A modified UASB process UASB process treatment winery wastewater, Water Sci. Technol. 22, 167-174. |
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