Photochemistry of Carbon Dioxide at 62-120 nm Incident Light Radiation

Anggraeni, Dewi (2011) Photochemistry of Carbon Dioxide at 62-120 nm Incident Light Radiation. Magister thesis, Universitas Brawijaya.

Abstract

CO 2 memainkan peran penting dalam radiasi dan photochemia atmosfer dari banyak tata surya. Penelitian planet memotivasi kepentingan untuk memahami berbagai proses atmosfer yang melibatkan CO 2. Karbon dioksida, CO 2, memiliki enam belas elektron ikatan dalam cangkang valensi. Konfigurasi elektronik CO 2 dapat ditulis sebagai berikut: [1σ g 2 1σ g 2] 3σ g 2 2σ U 2 4σ g 2 3σ σ 2 1 π G 4 x 1 π G +. Dalam tesis ini, serapan dan spektrum emisi fluoresensi karbon dioksida telah dipelajari menggunakan sumber cahaya radiasi synchrotron dari fluks beamline 6m-tinggi di SRRC, Taiwan. Bagian lintas photoabsorpsi karbon dioksida pada panjang gelombang 62-120 Nm telah diturunkan menggunakan persamaan hukum Lamberter. Pengukuran penyerapan dan fluoresensi juga telah digunakan untuk menetapkan Negara Rydberg, menggunakan persamaan Rydberg, konvergen ke CO 2 + (x 2 π G), TANAKA-OGAWA Series Konvergen ke CO 2 + (A 2 π U), Seri Sharp 2 π), Henning Konvergen ke CO 2 + (B 2 σ u +), dan seri TJL konvergen ke CO 2 + (C 2 σ g +). Potensi ionisasi (IP) untuk CO 2 + Negara ionik telah berasal dari penugasan ini, seperti IP untuk CO2 + (A 2 π U) adalah 17,36 EV, IP untuk CO 2 + (B 2 σ u +) adalah 18,07 EV, dan IP untuk CO 2 + (C 2 σ g +) adalah 19,39 ev. O (1 s) Produksi dari co 2 fotodisociation dalam kisaran panjang gelombang 105-120 nm juga telah diamati menggunakan tekanan tinggi Xenon untuk meningkatkan transisi O (1 s) ke o (1 d). Dari hasil ini kami mengamati CO 2 1

English Abstract

CO 2 plays important roles in the radiation and photochemistry of atmospheres of many solar systems. The planetary research motivates interests to understand various atmospheric processes involving CO 2 . Carbon dioxide, CO 2 , has sixteen bonding electrons in its valence shell. The electronic configuration of CO 2 can be written as follows: [1σ g 2 1σ u 2 2σ g 2 ] 3σ g 2 2σ u 2 4σ g 2 3σ u 2 1 π u 4 1 π g 4 X 1 Σ g + . In this thesis, absorption and fluorescence emission spectra of carbon dioxide have been studied using synchrotron radiation light source from 6m-high flux beamline at SRRC, Taiwan. Photoabsorption cross section of carbon dioxide at wavelength 62-120 nm has been derived using Beer Lambert Law equation. Absorption and fluorescence measurement also have been used to assign Rydberg states, using Rydberg equation, converging to CO 2 + (X 2 Π g ), Tanaka-Ogawa series converging to CO 2 + (A 2 Π u ), Henning Diffuse and Sharp series converging to CO 2 + (B 2 Σ u + ), and TJL series converging to CO 2 + ( C 2 Σ g + ). Ionization potential (IP) for CO 2 + ionic state has been derived from this assignment, such as IP for CO2 + (A 2 Π u ) is 17.36 eV, IP for CO 2 + (B 2 Σ u + ) is 18.07 eV, and IP for CO 2 + ( C 2 Σ g + ) is 19.39 eV. O( 1 S) production from CO 2 photodissociation in the wavelength range 105–120 nm has also been observed using high pressure xenon to enhance O( 1 S) to O( 1 D) transition. From this result we observed that CO 2 1

Item Type: Thesis (Magister)
Identification Number: TES/541.353 3/ANG/p/041105098
Subjects: 500 Natural sciences and mathematics > 541 Physical chemistry > 541.3 Miscellaneous topics in physical chemistry
Divisions: S2/S3 > Magister Matematika, Fakultas MIPA
Depositing User: Endro Setyobudi
Date Deposited: 07 Dec 2011 12:08
Last Modified: 07 Dec 2011 12:08
URI: http://repository.ub.ac.id/id/eprint/157524
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