Froth-flotation separation as an alternative for the treatment of soil enriched with fluorine derived from mica

  • Cho, Jeonghwan
  • Jung, Moon Young
  • Lee, Hwan
  • An, Jinsung
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초록

Fluorine (F) enrichment originating from natural sources is difficult to remove using chemical washing methods due to the large chemical-resistant residual fraction. This study evaluates the feasibility of using a froth-flotation separation method to remediate soil with a high F concentration caused by mica weathering, and it investigates the optimal conditions for this process, including pH of the slurry, collector dosage, and sample mechanical preparation strategy. The established optimum conditions are pH 3.5, 300 mg/kg collector dosage (tallow amine acetate), which can effectively separate quartz and mica, and a sieving-and-milling strategy that involves discarding particles of size < 0.05 mm, milling those in the range of 0.5–2.0 mm (until < approx. 0.3 mm), and mixing particles with sizes in the range of 0.05–0.5 mm. The target contamination level of 400 mg/kg for the test soil was not met after the first flotation separation process. However, after milling the residue of the first process and subjecting it to a second flotation separation process, the required contamination level was achieved. Consequently, the proposed froth-flotation separation process can be used as a successful alternative technique to remediate F-enriched soils from natural origin that have highly chemical-resistant forms. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.

키워드

Fluorine-enriched soilFroth-flotation separationMica mineralNatural originSoil remediationREMEDIATIONGROUNDWATERADSORPTIONCOLLECTORSMUSCOVITE
제목
Froth-flotation separation as an alternative for the treatment of soil enriched with fluorine derived from mica
저자
Cho, JeonghwanJung, Moon YoungLee, HwanAn, Jinsung
DOI
10.3390/ijerph19031775
발행일
2022-02
유형
정기학술지(Article(Perspective Article포함))
저널명
International Journal of Environmental Research and Public Health
19
3
페이지
1 ~ 13