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Development of porous calcite structure from industrial waste for efficient adsorbent for proteinopen access

Authors
Khalid, ZubairOh, Jae-Min
Issue Date
Jul-2023
Publisher
대한화학회
Keywords
adsorption; calcite; porosity; protein; silica; slag
Citation
Bulletin of the Korean Chemical Society, v.44, no.7, pp 565 - 571
Pages
7
Indexed
SCIE
SCOPUS
KCI
Journal Title
Bulletin of the Korean Chemical Society
Volume
44
Number
7
Start Page
565
End Page
571
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/25891
DOI
10.1002/bkcs.12697
ISSN
0253-2964
1229-5949
Abstract
Porous adsorbent (PA) with high specific surface area and calcite surface was prepared from an industrial waste, electric arc furnace oxidizing slag (EOS). As the EOS is composed of silica and metal oxide nanoparticle like CaO, MgO, and so on, the metal oxide parts were selectively dissolved by acid treatment. The remained silica part exhibited porous structure due to the assembly of nanoparticles. Then, calcite was developed on the silica surface by simply titrating the silica framework with carbonate under basic condition. According to the x-ray diffraction pattern and scanning electron microscopy, we could hypothesize that the EOS had dense texture of amorphous nanoparticles. On the other hand, the PA had well-crystallized calcite particles with sufficient interparticle pores. The zeta potential of EOS shifted to positive region upon transformation to PA, possibly due to the change in surface-exposed moiety from silica to calcite. The albumin adsorption profiled exhibited that the PA had very high protein adsorption capacity up to 3.33 mg-protein/mg-adsorbent at 5 mg/L of protein concentration, while the EOS itself did not show meaningful adsorption.
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