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°­ÁÂÀϽà 2012³â 6¿ù 18ÀÏ  16:00 ~ 17:00
°­Á Á¦¸ñ Dirty energy smart by investigation of reaction mechanism and design
÷ºÎÆÄÀÏ Session10_06-18.pdf (146.18KB)  

 
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1.Á¦  ¸ñ : Ditry energy smart by investigation of reaction mechanism and design
2.¿¬  »ç : ¹èÁß¸é ±³¼ö (Ä«À̽ºÆ® ±â°è°øÇаú)
3.ÀÏ  ½Ã : 2012³â  6¿ù 18ÀÏ (¿ù)  16:00 ~ 17:00
4.Àå  ¼Ò : ¼­¿ï´ëÇб³ Á¤¹Ð±â°è¼³°è°øµ¿¿¬±¸¼Ò (313µ¿) 201È£
5.³»  ¿ë :

Abstract :

“Dirty energy smart” technology is widely investigated recently, which is converting dirty energy (biomass, coal and tar etc.) to renewable energy by using chemical reaction processes. Biomass and coal gasification are famous examples of dirty energy smart technology. The fossil fuel is very limited resources though modern civilization is highly dependent on petroleum industries. This explains the current sharp increasing trends of oil prices and other political reasons even stimulated the trend. Therefore, it is very important to find the way using fossil fuel smartly. As one of dirty energy smart technology, KAIST has been studying diesel reforming technology for 10 years. Carbon deposition on the reactor was found to be the main barrier from KAIST research and we found that ethylene has critical role in carbon deposition process. We also found the ethylene suppression and cleaning methods and the research has been successful though the carbon deposition mechanism was not understood. Therefore, the mechanism needs to be investigated in near future. The presentation will deliver the current state of diesel reforming technology of KAIST and describe the academic results related to understand the carbon deposition mechanism and derive the major barrier in dirty fuel smart technology.

6. ¾à  ·Â :

1989  B.Sc. Seoul National University, South Korea
1991  M.Sc. Seoul National University, South Korea
1996  Ph.D. Imperial College London, UK
1996-1999  NEDO Researcher, Electrochemical Laboratory, Japan
1999-2002  Staff Scientist, Argonne National Laboratory, USA
2002-Present  Professor, KAIST, South Korea

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