Full Description

Cataloguing Source LibUI ind rda
Content Type text (rdacontent)
Media Type unmediated (rdamedia); computer (rdamedia)
Carrier Type volume (rdacarrier); online resources (rdacarrier)
Physical Description xiii, 65 pages : illustration ; 30 cm + appendix
Concise Text
Holding Institution Universitas Indonesia
Location Perpustakaan UI, Lantai 3
 
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Call Number Barcode Number Availability
S895 14-22-97714031 TERSEDIA
No review available for this collection: 20289542
 Abstract
Telah diteliti pengaruh modifikasi fotokatalis TiO2 Degussa P-25 dalam memproduksi hidrogen dari gliserol dan air. Modifikasi yang dilakukan berupa perubahan morfologi menjadi nanotubes, pemberian dopan Pt, dopan N, dan penumbuhan fasa kristalin masing-masing melalui perlakuan hidrothermal (130oC, 12 jam), photo-assisted deposition, impregnasi dan kalsinasi 500oC selama 1 jam. Analisa SEM-EDS dan XRD menunjukkan bahwa katalis Pt-N-TiO2 nanotubes dengan tingkat kristalinitas dengan fasa anatase menyerupai TiO2 Degussa P-25. Berdasarkan uji kinerja fotokatalis di bawah sinar tampak, konsentrasi gliserol yang paling optimal adalah 50%. Morfologi nanotubes, dopan N, dopan Pt, dan dopan Pt dan N masing-masing memberikan kenaikan total produksi hidrogen sebanyak 2; 3; 11; dan 13,5 kali secara berurutan dibandingkan TiO2 Degussa P25. ......The effects of modified TiO2 Degussa P-25 in hydrogen generation from water and glycerol have been observed. The photocatalyst was formed to nanotubes, doped with Pt, doped with N and crystallized each by hydrothermal treatment (130oC, 12 hours), photo-assisted deposition, impregnation, and calcination (500oC) respectively. Result of SEM-EDS and XRD show that Pt-N-TiO2 nanotubes composite crystallinity with anatase phase similar to TiO2 Degussa P-25 was successfully obtained. The effects of glycerol and water composition have also been observed under visible light resulting 50% of glycerol as the optimum concentration. Nanotubes morfology, N doped, Pt doped, and Pt-N doped catalyst increase the hydrogen production each by 2, 3, 11, and 13.5 times respectively compare to TiO2 Degussa P-25.