Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52

This study applied ultrasonic irradiation technique to remove acid orange 52 (AO52) and in the meantime utilizing the potential adsorbent, Lapindo volcanic mud (LVM). LVM was collected from the erupted mud in Sidoarjo, Indonesia and calcined prior the adsorption process. Previously in another study,...

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Main Authors: Kamarudin, N. H. N., Setiabudi, H. D., Jalil, A. A., Adam, S. H., Salleh, N. F. M.
Format: Article
Published: Diponegoro University 2019
Subjects:
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author Kamarudin, N. H. N.
Setiabudi, H. D.
Jalil, A. A.
Adam, S. H.
Salleh, N. F. M.
author_facet Kamarudin, N. H. N.
Setiabudi, H. D.
Jalil, A. A.
Adam, S. H.
Salleh, N. F. M.
author_sort Kamarudin, N. H. N.
collection ePrints
description This study applied ultrasonic irradiation technique to remove acid orange 52 (AO52) and in the meantime utilizing the potential adsorbent, Lapindo volcanic mud (LVM). LVM was collected from the erupted mud in Sidoarjo, Indonesia and calcined prior the adsorption process. Previously in another study, Lapindo was proven to be efficient for adsorption of dyes in single adsorption method. In this study, the combination of adsorption with ultrasound, or as known as sono-sorption shows that the adsorptivity increased from 95.54 mg/g to 129.5 mg/g. The isotherm study shows that this process obeyed Langmuir isotherm model with adsorption capacity of 833.33 mg/g. The enhancement of sono-sorption method as compared to conventional method is believed to be resulted from the facilitated mass transfer driven by the ultrasound, along with the adsorption ability of LVM. The kinetic study fit to the pseudo second order equation.
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spelling utm.eprints-889172020-12-29T04:42:56Z http://eprints.utm.my/88917/ Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52 Kamarudin, N. H. N. Setiabudi, H. D. Jalil, A. A. Adam, S. H. Salleh, N. F. M. TP Chemical technology This study applied ultrasonic irradiation technique to remove acid orange 52 (AO52) and in the meantime utilizing the potential adsorbent, Lapindo volcanic mud (LVM). LVM was collected from the erupted mud in Sidoarjo, Indonesia and calcined prior the adsorption process. Previously in another study, Lapindo was proven to be efficient for adsorption of dyes in single adsorption method. In this study, the combination of adsorption with ultrasound, or as known as sono-sorption shows that the adsorptivity increased from 95.54 mg/g to 129.5 mg/g. The isotherm study shows that this process obeyed Langmuir isotherm model with adsorption capacity of 833.33 mg/g. The enhancement of sono-sorption method as compared to conventional method is believed to be resulted from the facilitated mass transfer driven by the ultrasound, along with the adsorption ability of LVM. The kinetic study fit to the pseudo second order equation. Diponegoro University 2019-04 Article PeerReviewed Kamarudin, N. H. N. and Setiabudi, H. D. and Jalil, A. A. and Adam, S. H. and Salleh, N. F. M. (2019) Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52. Bulletin of Chemical Reaction Engineering & Catalysis, 14 (1). pp. 189-195. ISSN 1978-2993 http://www.dx.doi.org/10.9767/bcrec.14.1.3326.189-195 DOI: 10.9767/bcrec.14.1.3326.189-195
spellingShingle TP Chemical technology
Kamarudin, N. H. N.
Setiabudi, H. D.
Jalil, A. A.
Adam, S. H.
Salleh, N. F. M.
Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52
title Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52
title_full Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52
title_fullStr Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52
title_full_unstemmed Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52
title_short Utilization of lapindo volcanic mud for enhanced sono-sorption removal of acid orange 52
title_sort utilization of lapindo volcanic mud for enhanced sono sorption removal of acid orange 52
topic TP Chemical technology
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