Colorimetric detection and removal of radioactive Co ions using sodium alginate-based composite beads

J Hazard Mater. 2017 Mar 15:326:69-76. doi: 10.1016/j.jhazmat.2016.12.007. Epub 2016 Dec 5.

Abstract

We demonstrate a simple method for the visual determination and removal of Co ions using a bead-shaped, capturing probe based on hybridized sodium alginate. For Co ions, the designed protocol consisted of three main constituents: an azopyridine-based Co ion-probe for visual detection; sodium alginate as an adsorbent for the Co ion and a bead construct for removal and structure; silica as a linker for the probe and the alginate, leading to a robust structure. When the composite beads were exposed to Co ions, the yellow color of the beads turned to intensive violet and the color intensity was associated with the Co ion concentration. The color variation was quantified using red-green-blue (RGB) color values that were obtained with a scanner and evaluated with Photoshop. The technique achieved both visual recognition with obvious color change of the beads and efficient removal of the radioactive 60Co ion. The sensing and removal of any radioactive isotope could be achieved with an appropriate sensing probe, to provide a simple and universal platform for remediation.

Keywords: Azopyridine dye; Detection and removal; Radioisotopes; Silica linkage; Sodium alginate bead.