4.7 Article

Extraction of chloride from slag flush wastewater using solvent N235

Journal

HYDROMETALLURGY
Volume 213, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.hydromet.2022.105934

Keywords

Chloride; Solvent extraction; Stripping; N235

Funding

  1. National Key research and development Program [2021YFC2901300]
  2. Yunnan Ten Thousand Talents Plan Young & Elite Talents Project [YNWR-QNBJ-2018-323]

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This work proposes a solvent extraction process for removing chloride in slag flush wastewater. The effectiveness of the process was validated through experiments, and the number of stages required was predicted. A suitable stripping agent was used to increase the chloride concentration to facilitate precipitation.
This work proposes a solvent extraction process for removal of chloride in slag flush wastewater using tri-noctylamine (N235) as extractant. The single stage extraction and stripping efficiencies were 78.9% and 99.2% respectively under the optimal conditions. The McCabe-Thiele diagram and Kremser equation were utilized to predict the number of stages required to reduce the Cl- concentration to less than 350 mg/L. The results were authenticated utilizing a three-stage counter-current operation, that closely correspond the estimates of McCabe-Thiele diagram. The FT-IR spectra of organic phases indicate that the extractant N235 combines with H2SO4 first to form quaternary ammonium salt containing N-H+ after acidification by H2SO4, followed by an anionic exchange with Cl-. Further, the raffinate phase was stripped using a suitable stripping agent to increase the Cl- concentration up to 100,000 mg/L so as to facilitate precipitation of NaCl by addition of NaOH as salting-out agent. The XRD analysis was utilized to confirm the crystallinity and the purity of the precipitated NaCl.

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