Open Access Research Article

Testing of Alginate/Chitosan/Glass Bubbles Adsorbent for Copper Removal from Wastewater

ECATERINA MATEI, ANDRA MIHAELA PREDESCU, MARIA RAPA, ANDREEA TURCANU, CRISTIAN PREDESCU, RUXANDRA VIDU, LIDIA FAVIER, CRISTINA ILEANA COVALIU, DANIELA IGNAT, VLAD GRIGORE
Published 05 Apr 2021
Pages 19–26

Abstract

The present paper reported the obtaining of an environmental friendly adsorbent based on sodium alginate, chitosan and glass bubbles. CaCl2 was used as crosslinking agent for sodium alginate favoring the interactions by physical bonds between the negative groups (-COO) of biopolymer and the Ca ions. The experimental study to determine the Cu(II) uptake using an atomic absorption spectrometer was conducted in the testing stand at the 1:50 and 1:100 ratios between the adsorbent mass and the amount of pollutant in solution. The number of cycles of regeneration of the adsorbent material was also evaluated. The characterization of alginate/chitosan/glass bubbles adsorbent by scanning electron microscopy (SEM) coupled with energy dispersive spectrometer (EDS) and Fourier transform infrared spectroscopy (FTIR) showed that the Cu(II) was found out on the surface of adsorbent.

Keywords: microspheres; adsoption; copper(II); testing stand; regeneration

How to Cite this Article

MATEI, E., PREDESCU, A., RAPA, M., TURCANU, A., PREDESCU, C., VIDU, R., FAVIER, L., COVALIU, C., IGNAT, D., & GRIGORE, V. (2021). Testing of Alginate/Chitosan/Glass Bubbles Adsorbent for Copper Removal from Wastewater. Materiale Plastice, 58(1), 19–26. https://doi.org/10.37358/MP.21.1.5441
MATEI E, PREDESCU A, RAPA M, TURCANU A, PREDESCU C, VIDU R, FAVIER L, COVALIU C, IGNAT D, GRIGORE V. Testing of Alginate/Chitosan/Glass Bubbles Adsorbent for Copper Removal from Wastewater. Materiale Plastice. 2021;58(1):19–26. doi: 10.37358/MP.21.1.5441
E. MATEI, A. PREDESCU, M. RAPA, A. TURCANU, C. PREDESCU, R. VIDU, L. FAVIER, C. COVALIU, D. IGNAT, and V. GRIGORE, "Testing of Alginate/Chitosan/Glass Bubbles Adsorbent for Copper Removal from Wastewater,” Materiale Plastice, vol. 58, no. 1, pp. 19–26, 2021. doi: 10.37358/MP.21.1.5441
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