The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader

This study aims to determine the effect of calcination temperature on Titanium dioxide impregnated Ouw Natural Clay (LAO) on the degradation of Rhodamine B dye. The calcination temperature used was 200, 300, and 400 °C. Their radiation was carried out with 3x8 watt UV lamps and sunlight. The degrad...

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Autores principales: Catherina M. Bijang, M. Nurdin, Jolantje Latupeirissa, Thamrin Aziz, Firda Talapessy
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Publicado: Department of Chemistry, Pattimura University 2021
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Acceso en línea:https://doaj.org/article/c60d3e6124e243d9948628d6dc1ec0ff
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spelling oai:doaj.org-article:c60d3e6124e243d9948628d6dc1ec0ff2021-12-01T08:24:58ZThe Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader2338-53592614-2627https://doaj.org/article/c60d3e6124e243d9948628d6dc1ec0ff2021-12-01T00:00:00Zhttps://ojs3.unpatti.ac.id/index.php/ijcr/article/view/4359https://doaj.org/toc/2338-5359https://doaj.org/toc/2614-2627 This study aims to determine the effect of calcination temperature on Titanium dioxide impregnated Ouw Natural Clay (LAO) on the degradation of Rhodamine B dye. The calcination temperature used was 200, 300, and 400 °C. Their radiation was carried out with 3x8 watt UV lamps and sunlight. The degradation percentage of Rhodamine B dye produced by LAO-TiO2 calcined at a temperature of 200, 300, and 400 °C with sunlight were 98.80%, 98.87%, and 96.07%, respectively. The degradation percentage of Rhodamine B dye produced by LAO-TiO2 calcined at temperatures of 200, 300, and 400 °C with the help of UV light were 96.01%, 97.41 %, and 97.18%, respectively. Catherina M. BijangM. NurdinJolantje LatupeirissaThamrin AzizFirda TalapessyDepartment of Chemistry, Pattimura UniversityarticlePhotodegradation, Impregnation, Ouw natural clay, Rhodamine B, Titanium dioxide, Calcination TemperatureChemical engineeringTP155-156ChemistryQD1-999ENIndonesian Journal of Chemical Research, Vol 9, Iss 3 (2021)
institution DOAJ
collection DOAJ
language EN
topic Photodegradation, Impregnation, Ouw natural clay, Rhodamine B, Titanium dioxide, Calcination Temperature
Chemical engineering
TP155-156
Chemistry
QD1-999
spellingShingle Photodegradation, Impregnation, Ouw natural clay, Rhodamine B, Titanium dioxide, Calcination Temperature
Chemical engineering
TP155-156
Chemistry
QD1-999
Catherina M. Bijang
M. Nurdin
Jolantje Latupeirissa
Thamrin Aziz
Firda Talapessy
The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader
description This study aims to determine the effect of calcination temperature on Titanium dioxide impregnated Ouw Natural Clay (LAO) on the degradation of Rhodamine B dye. The calcination temperature used was 200, 300, and 400 °C. Their radiation was carried out with 3x8 watt UV lamps and sunlight. The degradation percentage of Rhodamine B dye produced by LAO-TiO2 calcined at a temperature of 200, 300, and 400 °C with sunlight were 98.80%, 98.87%, and 96.07%, respectively. The degradation percentage of Rhodamine B dye produced by LAO-TiO2 calcined at temperatures of 200, 300, and 400 °C with the help of UV light were 96.01%, 97.41 %, and 97.18%, respectively.
format article
author Catherina M. Bijang
M. Nurdin
Jolantje Latupeirissa
Thamrin Aziz
Firda Talapessy
author_facet Catherina M. Bijang
M. Nurdin
Jolantje Latupeirissa
Thamrin Aziz
Firda Talapessy
author_sort Catherina M. Bijang
title The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader
title_short The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader
title_full The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader
title_fullStr The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader
title_full_unstemmed The Ouw Natural Clay Impregnation Using Titanium Dioxide as a Rhodamine B Dyestuff Degrader
title_sort ouw natural clay impregnation using titanium dioxide as a rhodamine b dyestuff degrader
publisher Department of Chemistry, Pattimura University
publishDate 2021
url https://doaj.org/article/c60d3e6124e243d9948628d6dc1ec0ff
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