Parameters of adsorption of methylene blue on the magnetite-flask composite surface
Magnetite and magnetite-flask composites were synthesized by the Elmore method. The inclusion of magnetite particles into the structure of the flask is justified by methods of IR spectroscopy and X-ray phase analysis. On the IR spectrum of the composite the peaks characteristic of Fe-O of the magnet...
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al-Farabi Kazakh National University
2018-03-01
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doaj-d144dcbe4ae14b79a3ec3d46d4201d282020-11-25T02:44:52Zengal-Farabi Kazakh National UniversityChemical Bulletin of Kazakh National University1563-03312312-75542018-03-011101510.15328/cb1002Parameters of adsorption of methylene blue on the magnetite-flask composite surfaceGul'narkhan Kurmangazhi0Sagdat M. Tazhibayeva1Kuanyshbek B. Musabekov2B. E. Zhakipbayev3al-Farabi Kazakh National University, Almaty, Kazakhstanal-Farabi Kazakh National University, Almaty, Kazakhstanal-Farabi Kazakh National University, Almaty, KazakhstanM. Auezov South-Kazakhstan State University, Shymkent, KazakhstanMagnetite and magnetite-flask composites were synthesized by the Elmore method. The inclusion of magnetite particles into the structure of the flask is justified by methods of IR spectroscopy and X-ray phase analysis. On the IR spectrum of the composite the peaks characteristic of Fe-O of the magnetite were found at the oscillation frequency of 1402 cm-1. Comparison of diffraction patterns of the flask, magnetite and composite showed the appearance on the diffraction pattern of the system magnetite-silica maxima at values of 2θ and the 37.15, 43.37 characteristic of Fe3O4. In addition, the decrease of peak intensity was found at the values of 2θ 21,48 and 26.56 assigned to the silicate groups. Adsorption of methylene blue on the surface of the flask, magnetite and their composite was studied. Adsorption results were processed according to Langmuir and Freindlich. It is shown that the maximum adsorption values of the dye on the surface of the flask, magnetite, and their composite are 133.3 mg/g, 85.0 mg/g, and 166.6 mg/g, respectively. The adsorption constant is also maximal in the case of a magnetite-flask composite. The adsorption parameters calculated according to Langmuir and Freindlich are in good agreement and indicate the preferability of using the flask and composite magnetite- flask as a methylene blue adsorbents.https://bulletin.chemistry.kz/index.php/kaznu/article/view/1002magnetiteflaskmagnetic particlesmagnetite-flask compositemethylene blueadsorption |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gul'narkhan Kurmangazhi Sagdat M. Tazhibayeva Kuanyshbek B. Musabekov B. E. Zhakipbayev |
spellingShingle |
Gul'narkhan Kurmangazhi Sagdat M. Tazhibayeva Kuanyshbek B. Musabekov B. E. Zhakipbayev Parameters of adsorption of methylene blue on the magnetite-flask composite surface Chemical Bulletin of Kazakh National University magnetite flask magnetic particles magnetite-flask composite methylene blue adsorption |
author_facet |
Gul'narkhan Kurmangazhi Sagdat M. Tazhibayeva Kuanyshbek B. Musabekov B. E. Zhakipbayev |
author_sort |
Gul'narkhan Kurmangazhi |
title |
Parameters of adsorption of methylene blue on the magnetite-flask composite surface |
title_short |
Parameters of adsorption of methylene blue on the magnetite-flask composite surface |
title_full |
Parameters of adsorption of methylene blue on the magnetite-flask composite surface |
title_fullStr |
Parameters of adsorption of methylene blue on the magnetite-flask composite surface |
title_full_unstemmed |
Parameters of adsorption of methylene blue on the magnetite-flask composite surface |
title_sort |
parameters of adsorption of methylene blue on the magnetite-flask composite surface |
publisher |
al-Farabi Kazakh National University |
series |
Chemical Bulletin of Kazakh National University |
issn |
1563-0331 2312-7554 |
publishDate |
2018-03-01 |
description |
Magnetite and magnetite-flask composites were synthesized by the Elmore method. The inclusion of magnetite particles into the structure of the flask is justified by methods of IR spectroscopy and X-ray phase analysis. On the IR spectrum of the composite the peaks characteristic of Fe-O of the magnetite were found at the oscillation frequency of 1402 cm-1. Comparison of diffraction patterns of the flask, magnetite and composite showed the appearance on the diffraction pattern of the system magnetite-silica maxima at values of 2θ and the 37.15, 43.37 characteristic of Fe3O4. In addition, the decrease of peak intensity was found at the values of 2θ 21,48 and 26.56 assigned to the silicate groups. Adsorption of methylene blue on the surface of the flask, magnetite and their composite was studied. Adsorption results were processed according to Langmuir and Freindlich. It is shown that the maximum adsorption values of the dye on the surface of the flask, magnetite, and their composite are 133.3 mg/g, 85.0 mg/g, and 166.6 mg/g, respectively. The adsorption constant is also maximal in the case of a magnetite-flask composite. The adsorption parameters calculated according to Langmuir and Freindlich are in good agreement and indicate the preferability of using the flask and composite magnetite- flask as a methylene blue adsorbents. |
topic |
magnetite flask magnetic particles magnetite-flask composite methylene blue adsorption |
url |
https://bulletin.chemistry.kz/index.php/kaznu/article/view/1002 |
work_keys_str_mv |
AT gulnarkhankurmangazhi parametersofadsorptionofmethyleneblueonthemagnetiteflaskcompositesurface AT sagdatmtazhibayeva parametersofadsorptionofmethyleneblueonthemagnetiteflaskcompositesurface AT kuanyshbekbmusabekov parametersofadsorptionofmethyleneblueonthemagnetiteflaskcompositesurface AT bezhakipbayev parametersofadsorptionofmethyleneblueonthemagnetiteflaskcompositesurface |
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