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dc.contributor.author蔡王翔en_US
dc.contributor.authorW.S. Tsaien_US
dc.contributor.author王念夏en_US
dc.contributor.authorDr. Niann S. Wangen_US
dc.date.accessioned2014-12-12T02:21:32Z-
dc.date.available2014-12-12T02:21:32Z-
dc.date.issued1998en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#NT870500011en_US
dc.identifier.urihttp://hdl.handle.net/11536/64790-
dc.description.abstract本研究利用雷射光解-共振螢光法測量氯原子與CH3CFCl2 (HCFC-141b)於室溫下(298K)之反應速率係數值。 Cl + CH3CFCl2 → HCl + CH2CFCl2 吾人嘗試使用下列兩種方法來產生氯原子: (1)CCl4 + hν(l93 nm) → Cl(2P) + CCl3 (1-19) CCl4 + hν(l93 nm) → 2Cl(2P) + CCl2 (1-20) (2)Cl2 + hν(355 nm) → 2Cl(2P3/2) (1-21) 結果顯示以光解Cl2製造Cl較適用於此動力學之研究。在反應壓力為45torr時得到反應(1-19)之kⅡ= (5.12─6.07) ╳lO-14 cm3 molecule-1 s-1。我們發現光解雷射能量 (1.1─18.6 mJ/cm2)對實驗結果並不會影響。 當[Cl]增至1╳1013 molecule cm-3, Cl則有再生現象。zh_TW
dc.description.abstractThe absolute rate coefficient for the reaction of Cl atoms with CH3CFCl2 (HCFC-l41b) has been determined using laser photolysis-resonance fluorescence technique at 298 K and 45 torr. Cl + CH3CFCl2 → HCl + CH2CFCl2 (1-19) Two Cl radicals source reactions were tested, (1)CCl4 + hν(l93 nm) → Cl(2P) + CCl3 CCl4 + hν(l93 nm) → 2Cl(2P) + CCl2 (1-20) (2)Cl2 + hν(355 nm) → 2Cl(2P3/2) (1-21) Cl2 was found to be a better precursor for the rate coefficient measurements. We obtained a second-order rate coefficient : kⅡ=(5.12─6.07) ╳lO-14 cm3 molecule-1 s-1.The energy of photolysis laser (1.1─18.6 mJ/cm2) did not affect the measured rate coefficient. When [Cl] was higher than 1 ╳1013 molecule cm-3, Cl regenerations were observed .en_US
dc.language.isozh_TWen_US
dc.subject反應速率係數zh_TW
dc.subject1.1-二氯-1-氟乙烷zh_TW
dc.subject氯原子zh_TW
dc.subject雷射光解-共振螢光法zh_TW
dc.subject氟氯烷141zh_TW
dc.subjectRate Coefficienten_US
dc.subject1,1-Dichloro-1-fluoroethane,HCFC-141b(CH3CFCl2)en_US
dc.subjectCl Atomsen_US
dc.subjectLaser Photolysis-Resonance Fluorescenceen_US
dc.subjectFreon 141en_US
dc.title利用雷射光解-共振螢光法測量氯原子與 HCFC-141b(CH3CFCl2)於室溫下(298K)之反應速率係數值zh_TW
dc.titleMeasurement of the Rate Coefficient for the Reaction of Cl Atoms with CH3CFCl2 (HCFC-141b) at 298 K using Laser Photolysis-Resonance Fluorescence Methoden_US
dc.typeThesisen_US
dc.contributor.department應用化學系碩博士班zh_TW
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