Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR)
Alkaline processing of Bangka monazite is carried out through stages like decomposition; partial dissolution pH 3.7; partial precipitation pH 6.3; and total precipitation pH 9.8. These procesess produce sodium phosphate, Rare Earth (RE) Hydroxide, uranium (U), and thorium (Th). On decomposition proc...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Center for Nuclear Minerals Technology
2019-11-01
|
Series: | Eksplorium: Buletin Pusat Pengembangan Bahan Galian Nuklir |
Subjects: | |
Online Access: | http://jurnal.batan.go.id/index.php/eksplorium/article/view/5648 |
id |
doaj-d9145c276a2d4b9cad746efdcf4e1a09 |
---|---|
record_format |
Article |
spelling |
doaj-d9145c276a2d4b9cad746efdcf4e1a092020-12-16T07:11:07ZengCenter for Nuclear Minerals TechnologyEksplorium: Buletin Pusat Pengembangan Bahan Galian Nuklir0854-14182503-426X2019-11-01402127134http://dx.doi.org/10.17146/eksplorium.2019.40.2.5648Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR)Riesna Prassanti0Budi Yuli Ani1Sumiarti2Erlan Dewita3Pusat Teknologi Bahan Galian Nuklir - BATANPusat Teknologi Bahan Galian Nuklir - BATANPusat Teknologi Bahan Galian Nuklir - BATANPusat Teknologi Bahan Galian Nuklir - BATANAlkaline processing of Bangka monazite is carried out through stages like decomposition; partial dissolution pH 3.7; partial precipitation pH 6.3; and total precipitation pH 9.8. These procesess produce sodium phosphate, Rare Earth (RE) Hydroxide, uranium (U), and thorium (Th). On decomposition procsess, 99 % of sodium phosphate had been recovered and RE Hydroxide was separated from U and Th with 85% recovery. Meanwhile, the U and Th products were still mixed so that needs to separate. Purification of Th from U in monazite had been carried out by using Solvent Impregnated Resin (SIR) method and continued by elution after SIR. The result is that Th is still in the liquid phase as thorium nitrate [Th(NO3)2] solution so it needs to be precipitated as thorium hydroxide [Th(OH)2] to facilitate the next process. Precipitation of Th after SIR process is conducted with the aim to obtain optimum precipitation condition. The supporting resin used is amberlite XAD-16 with impregnated tributyl phosphate (TBP) extractant, dilute nitric acid (HNO3) as elution reagent, and ammonium hydroxide (NH4OH) as precipitation reagent. The observed parameters are the effect of pH and precipitation time on Th recovery. The results show that the optimum precipitation conditions of Th from monazite after SIR process is on pH 1.2 and 60 minutes time, resulting recovery of 84.74 % Th, 3.26 % U, 34,74 % RE, and 8.52 % PO4.http://jurnal.batan.go.id/index.php/eksplorium/article/view/5648precipitationthoriummonazitesir |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Riesna Prassanti Budi Yuli Ani Sumiarti Erlan Dewita |
spellingShingle |
Riesna Prassanti Budi Yuli Ani Sumiarti Erlan Dewita Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR) Eksplorium: Buletin Pusat Pengembangan Bahan Galian Nuklir precipitation thorium monazite sir |
author_facet |
Riesna Prassanti Budi Yuli Ani Sumiarti Erlan Dewita |
author_sort |
Riesna Prassanti |
title |
Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR) |
title_short |
Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR) |
title_full |
Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR) |
title_fullStr |
Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR) |
title_full_unstemmed |
Pengendapan Torium (Th) dari Monasit Bangka Setelah Proses Solvent Impregnated Resin (SIR) |
title_sort |
pengendapan torium (th) dari monasit bangka setelah proses solvent impregnated resin (sir) |
publisher |
Center for Nuclear Minerals Technology |
series |
Eksplorium: Buletin Pusat Pengembangan Bahan Galian Nuklir |
issn |
0854-1418 2503-426X |
publishDate |
2019-11-01 |
description |
Alkaline processing of Bangka monazite is carried out through stages like decomposition; partial dissolution pH 3.7; partial precipitation pH 6.3; and total precipitation pH 9.8. These procesess produce sodium phosphate, Rare Earth (RE) Hydroxide, uranium (U), and thorium (Th). On decomposition procsess, 99 % of sodium phosphate had been recovered and RE Hydroxide was separated from U and Th with 85% recovery. Meanwhile, the U and Th products were still mixed so that needs to separate. Purification of Th from U in monazite had been carried out by using Solvent Impregnated Resin (SIR) method and continued by elution after SIR. The result is that Th is still in the liquid phase as thorium nitrate [Th(NO3)2] solution so it needs to be precipitated as thorium hydroxide [Th(OH)2] to facilitate the next process. Precipitation of Th after SIR process is conducted with the aim to obtain optimum precipitation condition. The supporting resin used is amberlite XAD-16 with impregnated tributyl phosphate (TBP) extractant, dilute nitric acid (HNO3) as elution reagent, and ammonium hydroxide (NH4OH) as precipitation reagent. The observed parameters are the effect of pH and precipitation time on Th recovery. The results show that the optimum precipitation conditions of Th from monazite after SIR process is on pH 1.2 and 60 minutes time, resulting recovery of 84.74 % Th, 3.26 % U, 34,74 % RE, and 8.52 % PO4. |
topic |
precipitation thorium monazite sir |
url |
http://jurnal.batan.go.id/index.php/eksplorium/article/view/5648 |
work_keys_str_mv |
AT riesnaprassanti pengendapantoriumthdarimonasitbangkasetelahprosessolventimpregnatedresinsir AT budiyuliani pengendapantoriumthdarimonasitbangkasetelahprosessolventimpregnatedresinsir AT sumiarti pengendapantoriumthdarimonasitbangkasetelahprosessolventimpregnatedresinsir AT erlandewita pengendapantoriumthdarimonasitbangkasetelahprosessolventimpregnatedresinsir |
_version_ |
1724381684321746944 |