Competitive Bioadsorption of Pb+2 and Cu+2 Ions by Caryocar coriaceum WITTM. Barks

Author:

Menezes Jorge Marcell Coelho,de Paula Filho Francisco José,da Costa José Galberto M.,Coutinho Henrique Douglas M.,Teixeira Raimundo Nonato Pereira

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering

Reference65 articles.

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2. Al-Qodah, Z., Yahya, M. A., & Al-Shannag, M. (2017). On the performance of bioadsorption processes for heavy metal ions removal by low-cost agricultural and natural by-products bioadsorbent: A review. Desalination and Water Treatment, 85(August), 339–357. https://doi.org/10.5004/dwt.2017.21256

3. Amorim, D. J., Rezende, H. C., Oliveira, É. L., Almeida, I. L. S., Coelho, N. M. M., Matosa, T. N., & Araújo, C. S. T. (2016). Characterization of Pequi (Caryocar brasiliense) shells and evaluation of their potential for the adsorption of PbII ions in aqueous systems. Journal of the Brazilian Chemical Society, 27(3), 616–623. https://doi.org/10.5935/0103-5053.20150304

4. Azari, A., Nabizadeh, R., Nasseri, S., Mahvi, A. H., & Mesdaghinia, A. R. (2020). Comprehensive systematic review and meta-analysis of dyes adsorption by carbon-based adsorbent materials: Classification and analysis of last decade studies. Chemosphere, 250(5), 126238. https://doi.org/10.1016/j.chemosphere.2020.126238

5. Azoulay, K., Bencheikh, I., Moufti, A., Dahchour, A., Mabrouki, J., & El Hajjaji, S. (2020). Comparative study between static and dynamic adsorption efficiency of dyes by the mixture of palm waste using the central composite design. Chemical Data Collections, 27, 100385. https://doi.org/10.1016/j.cdc.2020.100385

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