STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN
Research of study copresipitation Zn2+ using Al(OH)3 as coprecipitant has been done. This study aims to determine the optimum conditions for coprecipitation of Zn2+ by Al(OH)3, and influence of foreign ions. This study uses variation pH about 5,0 – 10,0 and 6,0 – 10,0 for Co2+; variation of eluent...
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Institut Agama Islam Negeri (IAIN) Batusangkar
2016-09-01
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Online Access: | http://ecampus.iainbatusangkar.ac.id/ojs/index.php/sainstek/article/view/79 |
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doaj-9af9b32e4acd493a9083dac4583421a02020-11-25T00:16:01ZindInstitut Agama Islam Negeri (IAIN) BatusangkarSainstek: Jurnal Sains dan Teknologi2085-80192580-278X2016-09-0151243778STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITANIndang Dewata0Jurusan Kimia Universitas Negeri Padang Jln. Prof. Dr. Hamka Air Tawar Padang - Sumatera Barat – Indonesia.Research of study copresipitation Zn2+ using Al(OH)3 as coprecipitant has been done. This study aims to determine the optimum conditions for coprecipitation of Zn2+ by Al(OH)3, and influence of foreign ions. This study uses variation pH about 5,0 – 10,0 and 6,0 – 10,0 for Co2+; variation of eluent volume about 8,0 – 14,0; variation of concentrated HNO3 volume about 1,0 – 5,0; and variation of concentration Cu2+ and Ni2+ about 0,8; 1,2; 1,6; 2,0 and 2,4, respectively. Measurement concentration of Zn2+ using Atomic Absorption Spectroscopy (AAS) with wavelength of 213,9 nm Zn2+for 240,7 nm for Co2+. The result showed the optimum conditions occur at pH about 8, 12 mL of eluent and 1 mL of concentrated HNO3 with the absorption capacity of 0,074 mg/g for Zn2+ and pH about 8, 12 mL of eluent and 1 mL of concentrated HNO3 with the absorption capacity of 0,0905 mg/g for Co2+. Meanwhile, the presence of foreign ions such as Cu2+ has influenced the coprecipitated Zn where concentration of the coprecipitated Zn decreased with increasing the concentration of foreign ions. Keywords: coprecipitation, coprecipitant Al(OH)3, trace metal, Zn, Co, AAShttp://ecampus.iainbatusangkar.ac.id/ojs/index.php/sainstek/article/view/79 |
collection |
DOAJ |
language |
Indonesian |
format |
Article |
sources |
DOAJ |
author |
Indang Dewata |
spellingShingle |
Indang Dewata STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN Sainstek: Jurnal Sains dan Teknologi |
author_facet |
Indang Dewata |
author_sort |
Indang Dewata |
title |
STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN |
title_short |
STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN |
title_full |
STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN |
title_fullStr |
STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN |
title_full_unstemmed |
STUDI KOPRESIPITASI Zn2+ DAN Co2+ MENGGUNAKAN Al(OH)3 SEBAGAI KOPRESIPITAN |
title_sort |
studi kopresipitasi zn2+ dan co2+ menggunakan al(oh)3 sebagai kopresipitan |
publisher |
Institut Agama Islam Negeri (IAIN) Batusangkar |
series |
Sainstek: Jurnal Sains dan Teknologi |
issn |
2085-8019 2580-278X |
publishDate |
2016-09-01 |
description |
Research of study copresipitation Zn2+ using Al(OH)3 as coprecipitant has been done. This study aims to determine the optimum conditions for coprecipitation of Zn2+ by Al(OH)3, and influence of foreign ions. This study uses variation pH about 5,0 – 10,0 and 6,0 – 10,0 for Co2+; variation of eluent volume about 8,0 – 14,0; variation of concentrated HNO3 volume about 1,0 – 5,0; and variation of concentration Cu2+ and Ni2+ about 0,8; 1,2; 1,6; 2,0 and 2,4, respectively. Measurement concentration of Zn2+ using Atomic Absorption Spectroscopy (AAS) with wavelength of 213,9 nm Zn2+for 240,7 nm for Co2+. The result showed the optimum conditions occur at pH about 8, 12 mL of eluent and 1 mL of concentrated HNO3 with the absorption capacity of 0,074 mg/g for Zn2+ and pH about 8, 12 mL of eluent and 1 mL of concentrated HNO3 with the absorption capacity of 0,0905 mg/g for Co2+. Meanwhile, the presence of foreign ions such as Cu2+ has influenced the coprecipitated Zn where concentration of the coprecipitated Zn decreased with increasing the concentration of foreign ions.
Keywords: coprecipitation, coprecipitant Al(OH)3, trace metal, Zn, Co, AAS |
url |
http://ecampus.iainbatusangkar.ac.id/ojs/index.php/sainstek/article/view/79 |
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