코발트 기반 프러시안블루 유사체를 이용한 수중 암모늄 이온의 선택적 흡착

Translated title of the contribution: Selective adsorption of ammonium ion via cobalt-based Prussian blue analogue

Research output: Contribution to journalArticlepeer-review

Abstract

This study proposes the use of a cobalt-based Prussian blue analogue (Co-PBA; potassium cobalt hexacyanoferrate), as an adsorbent for the cost-effective recovery of aqueous ammonium ions. The characterization of Co-PBA involved various techniques, including Fourier-transform infrared spectroscopy, X-ray diffraction, scanning electron microscopy, nitrogen adsorption-desorption analysis, and zeta potential. The prepared Co-PBA reached an adsorption equilibrium for ammonium ions within approximately 480 min, which involved both surface adsorption and subsequent diffusion into the interior. The isotherm experiment revealed a maximum adsorption capacity of 37.29 mg/g, with the Langmuir model indicating a predominance of chemical monolayer adsorption. Furthermore, the material consistently demonstrated adsorption efficiency across a range of pH conditions. Notably, adsorption was observed even when competing cations were present. Co-PBA emerges as a readily synthesized adsorbent, underscoring its efficacy in ammonium removal and selectivity toward ammonium.
Translated title of the contributionSelective adsorption of ammonium ion via cobalt-based Prussian blue analogue
Original languageKorean
Pages (from-to)95-107
Number of pages13
Journal상하수도학회지
Volume38
Issue number2
DOIs
StatePublished - 2024

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