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Biblioteca General Alfonso Borrero Cabal S.J.

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Kinetics of Adsorption in Mercury Removal Using Cassava (Manhiot esculenta) and Lemon (Citrus limonum) Wastes Modified with Citric Acid1

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Date
2015-07-30

Authors

Tejada, Candelaria
Villabona Ortiz, Ángel
Garcés Jaraba, Luz Ercilia

Publisher

Pontificia Universidad Javeriana
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Citación

       
TY - GEN T1 - Kinetics of Adsorption in Mercury Removal Using Cassava (Manhiot esculenta) and Lemon (Citrus limonum) Wastes Modified with Citric Acid1 AU - Tejada, Candelaria AU - Villabona Ortiz, Ángel AU - Garcés Jaraba, Luz Ercilia UR - http://hdl.handle.net/10554/25802 PB - Pontificia Universidad Javeriana AB - ER - @misc{10554_25802, author = {}, title = {Kinetics of Adsorption in Mercury Removal Using Cassava (Manhiot esculenta) and Lemon (Citrus limonum) Wastes Modified with Citric Acid1}, year = {}, abstract = {}, url = {http://hdl.handle.net/10554/25802} }RT Generic T1 Kinetics of Adsorption in Mercury Removal Using Cassava (Manhiot esculenta) and Lemon (Citrus limonum) Wastes Modified with Citric Acid1 A1 Tejada, Candelaria A1 Villabona Ortiz, Ángel A1 Garcés Jaraba, Luz Ercilia LK http://hdl.handle.net/10554/25802 PB Pontificia Universidad Javeriana AB OL Spanish (121) TY - GEN T1 - Kinetics of Adsorption in Mercury Removal Using Cassava (Manhiot esculenta) and Lemon (Citrus limonum) Wastes Modified with Citric Acid1 AU - Tejada, Candelaria AU - Villabona Ortiz, Ángel AU - Garcés Jaraba, Luz Ercilia UR - http://hdl.handle.net/10554/25802 PB - Pontificia Universidad Javeriana AB - ER -
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Resumen

The high toxic concentrations of mercury in water bodies and its negative impact on the environment has resulted in the need for research on effective and low-cost methods for the treatment of industrial effluents, such as adsorption. This research compares the feasibility and viability of the adsorption abilities of cassava and lemon citric acid-modified peels. The results showed that the modified peel of cassava has a better adsorption ability compared to that of lemon. The kinetics models that best fit the experimental data were the Pseudo-second order model and the Elovich model for both modified biomasses. This means that the mechanism that controls the adsorption is a second order reaction, and also shows that the catalytic area of the adsorbent is heterogeneous; whereas the Freundlich isotherm describes better the adsorption process. In conclusion, the use of waste material is possible for Hg (II) removal. The study of chemical modifications is suggested to improve the adsorption percentages. 

Link to the resource

http://revistas.javeriana.edu.co/index.php/iyu/article/view/8671

URI

http://hdl.handle.net/10554/25802

Source

Ingenieria y Universidad; Vol 19 No 2 (2015): July-December; 37 - 52


Ingenieria y Universidad; Vol. 19 Núm. 2 (2015): Julio-Diciembre; 37 - 52


2011-2769


0123-2126
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