Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application
This paper describes a method to synthesize a graphene oxide sand composites (GSC) as filter media (absorbent) for water purification. Graphene oxides is synthesized from graphite using modification of Hummer's method. The graphene oxide sand composites is prepared through solution method at 10...
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2018-01-01
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Online Access: | https://doi.org/10.1051/matecconf/201815605019 |
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doaj-4d0146e609244d8e87b1ad9fc747ca712021-02-02T00:44:10ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011560501910.1051/matecconf/201815605019matecconf_rsce2018_05019Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification ApplicationAndrijanto EkoSubiyanto GatotMarlina NinaCitra HanifaLintang CahyaThis paper describes a method to synthesize a graphene oxide sand composites (GSC) as filter media (absorbent) for water purification. Graphene oxides is synthesized from graphite using modification of Hummer's method. The graphene oxide sand composites is prepared through solution method at 100 °C. The graphene oxide is analyzed using XRD, FTIR to confirm its formation. The FTIR spectrum and XRD diffraction pattern confirmed that the graphene oxide synthesized by this method is able to convert graphite into graphene oxide. Performance tests were conducted using a column to purify contaminated water which was mimicked using dyes such as rhodamine B, methylene blue and methyl orange.The initial concentration for all dyes were set for 5, 10, 25, 50 and 100 ppm. The color removal for methylene blue was 100% at all concentrations. However, for the rhodamine B and methyl orange, the color removal achieved 100% for the first three concentration 5, 10 and 25 ppm. The higher concentration of 50 and 100 ppm, the removal were slightly reduced. For the 50 ppm, the color removal of rhodamine B was 98% and for methyl orange 87% respectively. At 100 ppm, the color removal for rhodamine B drops to 92% and for the methyl orange was only 77% respectively. The GSC was very effective to remove methylene blue dyes at any concentration followed by rhodamine B and methyl orange. This GSC composite material is potential to be applied for water purification.https://doi.org/10.1051/matecconf/201815605019 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Andrijanto Eko Subiyanto Gatot Marlina Nina Citra Hanifa Lintang Cahya |
spellingShingle |
Andrijanto Eko Subiyanto Gatot Marlina Nina Citra Hanifa Lintang Cahya Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application MATEC Web of Conferences |
author_facet |
Andrijanto Eko Subiyanto Gatot Marlina Nina Citra Hanifa Lintang Cahya |
author_sort |
Andrijanto Eko |
title |
Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application |
title_short |
Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application |
title_full |
Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application |
title_fullStr |
Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application |
title_full_unstemmed |
Preparation of Graphene Oxide Sand Composites as Super Adsorbent for Water Purification Application |
title_sort |
preparation of graphene oxide sand composites as super adsorbent for water purification application |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2018-01-01 |
description |
This paper describes a method to synthesize a graphene oxide sand composites (GSC) as filter media (absorbent) for water purification. Graphene oxides is synthesized from graphite using modification of Hummer's method. The graphene oxide sand composites is prepared through solution method at 100 °C. The graphene oxide is analyzed using XRD, FTIR to confirm its formation. The FTIR spectrum and XRD diffraction pattern confirmed that the graphene oxide synthesized by this method is able to convert graphite into graphene oxide. Performance tests were conducted using a column to purify contaminated water which was mimicked using dyes such as rhodamine B, methylene blue and methyl orange.The initial concentration for all dyes were set for 5, 10, 25, 50 and 100 ppm. The color removal for methylene blue was 100% at all concentrations. However, for the rhodamine B and methyl orange, the color removal achieved 100% for the first three concentration 5, 10 and 25 ppm. The higher concentration of 50 and 100 ppm, the removal were slightly reduced. For the 50 ppm, the color removal of rhodamine B was 98% and for methyl orange 87% respectively. At 100 ppm, the color removal for rhodamine B drops to 92% and for the methyl orange was only 77% respectively. The GSC was very effective to remove methylene blue dyes at any concentration followed by rhodamine B and methyl orange. This GSC composite material is potential to be applied for water purification. |
url |
https://doi.org/10.1051/matecconf/201815605019 |
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