The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis
The study aimed to determine the nature of the kinetics of the manganese sorption process on Ukrainian tuff and basalt at different temperatures characteristic of the natural water environment. The scope of the research included manganese sorption kinetic test on natural mineral sorbents at temperat...
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doaj-fb7cfac09ec24807be916c7149d431052020-11-29T00:02:16ZengMDPI AGMinerals2075-163X2020-11-01101065106510.3390/min10121065The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models AnalysisLidia Reczek0Magdalena M. Michel1Yuliia Trach2Tadeusz Siwiec3Marta Tytkowska-Owerko4Institute of Environmental Engineering, Warsaw University of Life Sciences–SGGW, 02-787 Warsaw, PolandInstitute of Environmental Engineering, Warsaw University of Life Sciences–SGGW, 02-787 Warsaw, PolandDepartment of Water Supply, Water Disposal and Drilling Engineering, National University of Water and Environmental Engineering, 33028 Rivne, UkraineDepartment of Environmental Engineering and Geodesy, University of Life Sciences in Lublin, 20-069 Lublin, PolandInstitute of Environmental Engineering, Warsaw University of Life Sciences–SGGW, 02-787 Warsaw, PolandThe study aimed to determine the nature of the kinetics of the manganese sorption process on Ukrainian tuff and basalt at different temperatures characteristic of the natural water environment. The scope of the research included manganese sorption kinetic test on natural mineral sorbents at temperatures of 10, 17.5 and 25 °C in slightly acidic conditions. Sorption (pseudo-first order, pseudo-second order and Elovich models) and diffusion kinetic models (liquid film diffusion and intraparticle diffusion) were used in the analysis of test results. The manganese sorption process on both tuff and basalt proceeded quickly. The dynamic equilibrium state of manganese sorption settled after 35 and 45 min on tuff and basalt respectively. Although the process took place in a slightly acidic environment and below pH<sub>PZC</sub> of the sorbents, possible electrostatic repulsion did not inhibit the removal of Mn. The Mn sorption on both materials followed the PSO kinetics model. Based on the diffusion kinetic models, it was determined that Mn sorption process on both materials was influenced by diffusion through the boundary layer and intraparticle diffusion. The differences in removal efficiency and rate of Mn sorption in the temperature range of 10–25 °C were not found.https://www.mdpi.com/2075-163X/10/12/1065manganese removalsaponitehematiteandesinepseudo-first orderpseudo-second order |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lidia Reczek Magdalena M. Michel Yuliia Trach Tadeusz Siwiec Marta Tytkowska-Owerko |
spellingShingle |
Lidia Reczek Magdalena M. Michel Yuliia Trach Tadeusz Siwiec Marta Tytkowska-Owerko The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis Minerals manganese removal saponite hematite andesine pseudo-first order pseudo-second order |
author_facet |
Lidia Reczek Magdalena M. Michel Yuliia Trach Tadeusz Siwiec Marta Tytkowska-Owerko |
author_sort |
Lidia Reczek |
title |
The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis |
title_short |
The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis |
title_full |
The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis |
title_fullStr |
The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis |
title_full_unstemmed |
The Kinetics of Manganese Sorption on Ukrainian Tuff and Basalt—Order and Diffusion Models Analysis |
title_sort |
kinetics of manganese sorption on ukrainian tuff and basalt—order and diffusion models analysis |
publisher |
MDPI AG |
series |
Minerals |
issn |
2075-163X |
publishDate |
2020-11-01 |
description |
The study aimed to determine the nature of the kinetics of the manganese sorption process on Ukrainian tuff and basalt at different temperatures characteristic of the natural water environment. The scope of the research included manganese sorption kinetic test on natural mineral sorbents at temperatures of 10, 17.5 and 25 °C in slightly acidic conditions. Sorption (pseudo-first order, pseudo-second order and Elovich models) and diffusion kinetic models (liquid film diffusion and intraparticle diffusion) were used in the analysis of test results. The manganese sorption process on both tuff and basalt proceeded quickly. The dynamic equilibrium state of manganese sorption settled after 35 and 45 min on tuff and basalt respectively. Although the process took place in a slightly acidic environment and below pH<sub>PZC</sub> of the sorbents, possible electrostatic repulsion did not inhibit the removal of Mn. The Mn sorption on both materials followed the PSO kinetics model. Based on the diffusion kinetic models, it was determined that Mn sorption process on both materials was influenced by diffusion through the boundary layer and intraparticle diffusion. The differences in removal efficiency and rate of Mn sorption in the temperature range of 10–25 °C were not found. |
topic |
manganese removal saponite hematite andesine pseudo-first order pseudo-second order |
url |
https://www.mdpi.com/2075-163X/10/12/1065 |
work_keys_str_mv |
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