KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM MENGGUNAKAN AMBERLITE IR-120 H
Liquid waste which containing Cr(III) and Na simultaneously is often found on output of industry activity, especially tannery industry. Cr(III) which is harmful metal must be able to be removed from this liquid waste. One of the methods which is effective is used to handle the poll...
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[Yogyakarta] : Universitas Gadjah Mada
2014
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id-ugm-repo.1341862016-03-04T07:57:39Z https://repository.ugm.ac.id/134186/ KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM MENGGUNAKAN AMBERLITE IR-120 H , Iqbal Haitami , Prof. Ir. Panut Mulyono, M.Eng., D.Eng. ETD Liquid waste which containing Cr(III) and Na simultaneously is often found on output of industry activity, especially tannery industry. Cr(III) which is harmful metal must be able to be removed from this liquid waste. One of the methods which is effective is used to handle the pollution of Cr(III) in liquid waste that is ion exchange using ion-exchange resin. The principle of this method that is exchange of ions which are available on ion-exchange resin with ions on surrounding areas. The presence of Na in solution which is the place of Cr(III) is adsorbed using Amberlite IR-120 H, making this phenomenon as multicomponent adsorption. In this case, the adsorption of Cr(III) and Na by AmberliteIR-120 H occurs simultaneously. This research aims to study the capability of adsorption of Cr(III) in system, and also studied the rate of adsorption that occurs simultaneously at various temperatures. In addition, wants to develop a mathematical model to approximate the existing kinetics of simultaneous adsorption. The results showed that the capability of adsorption of Cr(III) in system is represented by the maximum adsorption capacity that could be achieved, its value was 3.496 meq/g. This parameter was obtained from the Langmuir equilibrium model that provided a match to the experimental data of adsorption equilibrium. The higher the temperature, the greater the rate of simultaneous adsorption of Cr(III) and Na. The same trend was shown by value of constant of kinetics that it increased with increasing temperature. The mathematical model which was arranged based on rate equation of reaction was quite suitable to approached the kinetics of simultaneous adsorption. Based on activation energy for the adsorption of Cr(III) that its value was 56.735 kJ/mol, thus it was said that the rate of process was reaction-rate-limited. [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , Iqbal Haitami and , Prof. Ir. Panut Mulyono, M.Eng., D.Eng. (2014) KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM MENGGUNAKAN AMBERLITE IR-120 H. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=75223 |
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ETD , Iqbal Haitami , Prof. Ir. Panut Mulyono, M.Eng., D.Eng. KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM MENGGUNAKAN AMBERLITE IR-120 H |
description |
Liquid waste which containing Cr(III) and Na simultaneously is often found on
output of industry activity, especially tannery industry. Cr(III) which is harmful metal
must be able to be removed from this liquid waste. One of the methods which is
effective is used to handle the pollution of Cr(III) in liquid waste that is ion exchange
using ion-exchange resin. The principle of this method that is exchange of ions which
are available on ion-exchange resin with ions on surrounding areas.
The presence of Na in solution which is the place of Cr(III) is adsorbed using
Amberlite IR-120 H, making this phenomenon as multicomponent adsorption. In this
case, the adsorption of Cr(III) and Na by AmberliteIR-120 H occurs simultaneously.
This research aims to study the capability of adsorption of Cr(III) in system, and also
studied the rate of adsorption that occurs simultaneously at various temperatures. In
addition, wants to develop a mathematical model to approximate the existing kinetics
of simultaneous adsorption.
The results showed that the capability of adsorption of Cr(III) in system is
represented by the maximum adsorption capacity that could be achieved, its value
was 3.496 meq/g. This parameter was obtained from the Langmuir equilibrium model
that provided a match to the experimental data of adsorption equilibrium. The higher
the temperature, the greater the rate of simultaneous adsorption of Cr(III) and Na.
The same trend was shown by value of constant of kinetics that it increased with
increasing temperature. The mathematical model which was arranged based on rate
equation of reaction was quite suitable to approached the kinetics of simultaneous
adsorption. Based on activation energy for the adsorption of Cr(III) that its value was
56.735 kJ/mol, thus it was said that the rate of process was reaction-rate-limited. |
format |
Theses and Dissertations NonPeerReviewed |
author |
, Iqbal Haitami , Prof. Ir. Panut Mulyono, M.Eng., D.Eng. |
author_facet |
, Iqbal Haitami , Prof. Ir. Panut Mulyono, M.Eng., D.Eng. |
author_sort |
, Iqbal Haitami |
title |
KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM
MENGGUNAKAN AMBERLITE IR-120 H |
title_short |
KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM
MENGGUNAKAN AMBERLITE IR-120 H |
title_full |
KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM
MENGGUNAKAN AMBERLITE IR-120 H |
title_fullStr |
KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM
MENGGUNAKAN AMBERLITE IR-120 H |
title_full_unstemmed |
KINETIKA PENJERAPAN SIMULTAN KROMIUM(III) DAN NATRIUM
MENGGUNAKAN AMBERLITE IR-120 H |
title_sort |
kinetika penjerapan simultan kromium(iii) dan natrium
menggunakan amberlite ir-120 h |
publisher |
[Yogyakarta] : Universitas Gadjah Mada |
publishDate |
2014 |
url |
https://repository.ugm.ac.id/134186/ http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=75223 |
_version_ |
1681233818214727680 |