Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal
A method for trace elements determination in chalcopyrite, CuFeS2, by k0-instrumental neutron activation analysis (k0-INAA) was proposed. To avoid the interference of iron and copper as matrix elements, methods for their separation were applied. The copper interferences were eliminated by applying a...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Society of Chemists and Technologists of Macedonia
2008-12-01
|
Series: | Macedonian Journal of Chemistry and Chemical Engineering |
Subjects: | |
Online Access: | https://mjcce.org.mk/index.php/MJCCE/article/view/234 |
id |
doaj-540d3980281d47379f69992441ed1b0a |
---|---|
record_format |
Article |
spelling |
doaj-540d3980281d47379f69992441ed1b0a2021-02-25T08:41:06ZengSociety of Chemists and Technologists of MacedoniaMacedonian Journal of Chemistry and Chemical Engineering1857-55521857-56252008-12-0127214114710.20450/mjcce.2008.234116Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removalMilena Taseska0Petre Makreski1Vekoslava Stibilj2Radojko Jaćimović3Trajče Stafilov4Gligor Jovanovski5Institute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril & Methodius University, SkopjeInstitute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril & Methodius University, SkopjeJožef Stefan Institute, P.O. Box 3000, SI-1001 LjubljanaJožef Stefan Institute, P.O. Box 3000, SI-1001 LjubljanaInstitute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril & Methodius University, SkopjeInstitute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril & Methodius University, Skopje and Macedonian Academy of Sciences and Arts, SkopjeA method for trace elements determination in chalcopyrite, CuFeS2, by k0-instrumental neutron activation analysis (k0-INAA) was proposed. To avoid the interference of iron and copper as matrix elements, methods for their separation were applied. The copper interferences were eliminated by applying an electrolytic separation method. To eliminate iron interferences, a liquid-liquid extraction procedure by diisopropyl ether (DIPE) in hydrochloric acid solution and determination of trace elements in the aqueous phase were undertaken. The k0-INAA method was applied to determine the content of the investigated elements, making it possible to follow the distribution of even fifty elements (with intermediate/medium and long half-lived radionuclides) in the studied mineral. The important advantage of the proposed method is the possibility to determine the content of several trace elements after Fe and Cu separation. Additionally, the elimination of the matrix elements lowered the limit of detection for some trace elements in the water phase compared to their corresponding values determined by k0-INAA in the powder sample.https://mjcce.org.mk/index.php/MJCCE/article/view/234chalcopyritetrace elementsneutron activation analysisk0-inaa |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Milena Taseska Petre Makreski Vekoslava Stibilj Radojko Jaćimović Trajče Stafilov Gligor Jovanovski |
spellingShingle |
Milena Taseska Petre Makreski Vekoslava Stibilj Radojko Jaćimović Trajče Stafilov Gligor Jovanovski Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal Macedonian Journal of Chemistry and Chemical Engineering chalcopyrite trace elements neutron activation analysis k0-inaa |
author_facet |
Milena Taseska Petre Makreski Vekoslava Stibilj Radojko Jaćimović Trajče Stafilov Gligor Jovanovski |
author_sort |
Milena Taseska |
title |
Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal |
title_short |
Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal |
title_full |
Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal |
title_fullStr |
Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal |
title_full_unstemmed |
Determination of trace elements in chalcopyrite (CuFeS<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal |
title_sort |
determination of trace elements in chalcopyrite (cufes<sub>2</sub>) by k<sub>0</sub>-instrumental neutron activation analysis after matrix elements removal |
publisher |
Society of Chemists and Technologists of Macedonia |
series |
Macedonian Journal of Chemistry and Chemical Engineering |
issn |
1857-5552 1857-5625 |
publishDate |
2008-12-01 |
description |
A method for trace elements determination in chalcopyrite, CuFeS2, by k0-instrumental neutron activation analysis (k0-INAA) was proposed. To avoid the interference of iron and copper as matrix elements, methods for their separation were applied. The copper interferences were eliminated by applying an electrolytic separation method. To eliminate iron interferences, a liquid-liquid extraction procedure by diisopropyl ether (DIPE) in hydrochloric acid solution and determination of trace elements in the aqueous phase were undertaken. The k0-INAA method was applied to determine the content of the investigated elements, making it possible to follow the distribution of even fifty elements (with intermediate/medium and long half-lived radionuclides) in the studied mineral. The important advantage of the proposed method is the possibility to determine the content of several trace elements after Fe and Cu separation. Additionally, the elimination of the matrix elements lowered the limit of detection for some trace elements in the water phase compared to their corresponding values determined by k0-INAA in the powder sample. |
topic |
chalcopyrite trace elements neutron activation analysis k0-inaa |
url |
https://mjcce.org.mk/index.php/MJCCE/article/view/234 |
work_keys_str_mv |
AT milenataseska determinationoftraceelementsinchalcopyritecufessub2subbyksub0subinstrumentalneutronactivationanalysisaftermatrixelementsremoval AT petremakreski determinationoftraceelementsinchalcopyritecufessub2subbyksub0subinstrumentalneutronactivationanalysisaftermatrixelementsremoval AT vekoslavastibilj determinationoftraceelementsinchalcopyritecufessub2subbyksub0subinstrumentalneutronactivationanalysisaftermatrixelementsremoval AT radojkojacimovic determinationoftraceelementsinchalcopyritecufessub2subbyksub0subinstrumentalneutronactivationanalysisaftermatrixelementsremoval AT trajcestafilov determinationoftraceelementsinchalcopyritecufessub2subbyksub0subinstrumentalneutronactivationanalysisaftermatrixelementsremoval AT gligorjovanovski determinationoftraceelementsinchalcopyritecufessub2subbyksub0subinstrumentalneutronactivationanalysisaftermatrixelementsremoval |
_version_ |
1724251846538690560 |