SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL
Mount Agung in Karangasem, Bali which erupted in September 2017 produced abundant volcanic ash. This ash can be used as a raw material for making silica gel. The stages of the research carried out included analysis of the content of silicon (Si), synthesis of silica gel using sol-gel technique, char...
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doaj-3897eec2bfd649ac9ef9ac8e4823d9c32020-11-25T02:19:29ZindUniversitas UdayanaJurnal Kimia (Journal of Chemistry)1907-98502599-27402020-02-01303610.24843/JCHEM.2020.v14.i01.p0657160SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GELN. P. S. N. Utari0I W. Sudiarta1P. Suarya2Program Studi Kimia Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas UdayanaProgram Studi Kimia FMIPA Universitas Udayana, Jimbaran, Bali, IndonesiaProgram Studi Kimia FMIPA Universitas Udayana, Jimbaran, Bali, IndonesiaMount Agung in Karangasem, Bali which erupted in September 2017 produced abundant volcanic ash. This ash can be used as a raw material for making silica gel. The stages of the research carried out included analysis of the content of silicon (Si), synthesis of silica gel using sol-gel technique, characterization using FTIR, X-RD instruments as well as surface acidity. The results of the analysis using the X-RD instrument showed the presence of silicon from SiO2 found at 2? = 28,07530. The silica gel yield obtained in this study was 15.05% w/w. The results of the characterization with the FTIR instrument showed that silica gel from volcanic ash of Mount Agung had the main Si-OH and Si-O-Si groups. The hydroxyl bond from Si-OH grup were found at ±3649.32 cm-1 for stretching vibrations and ±1687,71 cm-1 for bending vibrations. Si-O bond from Si-O-Si group were found at ±1207.44 cm-1 for asymmetric stretching vibrations and ±482.20 cm-1 for bending vibrations. Diffractogram showed that the silica gel had an amorphous structure with surface acidity of 18.0222 mmol/g and a surface area of 36.5514 m2/g. Keywords: Agung mountain, silica gel, sol-gel, vulcano ashhttps://ojs.unud.ac.id/index.php/jchem/article/view/57160 |
collection |
DOAJ |
language |
Indonesian |
format |
Article |
sources |
DOAJ |
author |
N. P. S. N. Utari I W. Sudiarta P. Suarya |
spellingShingle |
N. P. S. N. Utari I W. Sudiarta P. Suarya SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL Jurnal Kimia (Journal of Chemistry) |
author_facet |
N. P. S. N. Utari I W. Sudiarta P. Suarya |
author_sort |
N. P. S. N. Utari |
title |
SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL |
title_short |
SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL |
title_full |
SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL |
title_fullStr |
SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL |
title_full_unstemmed |
SINTESIS DAN KARAKTERISASI SILIKA GEL DARI ABU VULKANIK GUNUNG AGUNG MELALUI TEKNIK SOL-GEL |
title_sort |
sintesis dan karakterisasi silika gel dari abu vulkanik gunung agung melalui teknik sol-gel |
publisher |
Universitas Udayana |
series |
Jurnal Kimia (Journal of Chemistry) |
issn |
1907-9850 2599-2740 |
publishDate |
2020-02-01 |
description |
Mount Agung in Karangasem, Bali which erupted in September 2017 produced abundant volcanic ash. This ash can be used as a raw material for making silica gel. The stages of the research carried out included analysis of the content of silicon (Si), synthesis of silica gel using sol-gel technique, characterization using FTIR, X-RD instruments as well as surface acidity. The results of the analysis using the X-RD instrument showed the presence of silicon from SiO2 found at 2? = 28,07530. The silica gel yield obtained in this study was 15.05% w/w. The results of the characterization with the FTIR instrument showed that silica gel from volcanic ash of Mount Agung had the main Si-OH and Si-O-Si groups. The hydroxyl bond from Si-OH grup were found at ±3649.32 cm-1 for stretching vibrations and ±1687,71 cm-1 for bending vibrations. Si-O bond from Si-O-Si group were found at ±1207.44 cm-1 for asymmetric stretching vibrations and ±482.20 cm-1 for bending vibrations. Diffractogram showed that the silica gel had an amorphous structure with surface acidity of 18.0222 mmol/g and a surface area of 36.5514 m2/g.
Keywords: Agung mountain, silica gel, sol-gel, vulcano ash |
url |
https://ojs.unud.ac.id/index.php/jchem/article/view/57160 |
work_keys_str_mv |
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