Ex-situ Remediation of a Contaminated Soil of Fe Abandoned Mine using Organic Acid Extractants

유기산 추출에 의한 철 폐광산 오염토양의 복원

  • 정의덕 (기초과학지원연구소 부산분소) ;
  • 강신원 (기초과학지원연구소 부산분소) ;
  • 백우현 (경상대학교 화학과)
  • Published : 2000.02.01

Abstract

A study on the remediation of heavily for ion contaminated soils from abandoned iron mine was carried out, using ex-situ extraction process. Also, oxalic acid as a complex agent was evaluated as a function of concentration, reaction time and mixing ratio of washing agent in order to evaluate Fe removability of the soil contaminated from the abandoned iron mine. Oxalic acid showed a better extraction performance than 0.1N-HCl, i.e., the concentrations of Fe ion extracted from the abandoned mine for the former at uncontrolled pH and the latter were 1,750 ppm and 1,079 ppm, respectively. The optimum washing condition of oxalic acid was in the ratio of 1:5 and 1:10 between soil and acid solution during l hr reaction. The total concentrations of Fe ion by oxalic acid and EDTA at three repeated extraction, were 4,554 ppm and 864 ppm, respectively. The recovery of Fe ions from washing solution was achieved, forming hydroxide precipitation and metal sulfide under excess of calcium hydroxide and sodium sulfide. In addition, the amounted of sodium sulfide and calcium hydroxide for the optimal revovery of Fe were 15g/$\ell$ and 5g/$\ell$ from the oxalic acid complexes, respectively.

Keywords

References

  1. J. Haz. Mat. v.40 Soil washing technology and practice Griffiths, R. A.
  2. Hot air vapor extraction for remediation of petrolium contaminated sites, Proceding of the eighth Fann, D.;D. Pal;E. Lory;L. Karr;A. P. Mathews;P. A. Price
  3. J. Environ. Sci. Health, A v.32 no.2 Supercritical fluid extraction of contaminated soil Montero, G. A.;K. B. Schnells;T. D. Giorgio
  4. Environ. Sci. Technol. v.31 Formation of mercuric sulfide in soil Barnett, M. O.;L. A. Harris;R. R. Turner;R. J. Stevenson;T. J. HEnson;R. C. Melton;D. P. Hoffman
  5. Environ. Sci. Technol v.31 Analysis of hydrocarbon contaminated soil by thermal extraction gas chromatography Banerjee, D. K.;M. R. Gray
  6. Environ. Sci. Technol. v.30 Degradation of metal-nitrilotriacetate complexes by chelatobacter-heintzii Bolton, H.;D. C. Girvin;A. E. Plymale;S. D. Harvey;D. J. Workman
  7. Environ. Sci Technol v.30 Laboratory assessment of BTEX soil flushing Mackay, A. A.;Y. P. Chin;J. K. Macfariane;P. P. Gschwend
  8. Environ. Sci. Technol. v.29 Source attribution of elevated residential soil lead near a battery recycling site Small, M.;A. B. Nunn;B. Forslund;D. Dally
  9. J. Environ. Sci. Health. A v.32 no.5 Removal of Cu(II) and Cr(III) from naturally contaminated loam by electromigration Li, Z.;J. W. Yu;I. Nereitnieks
  10. Environ. Sci. Technol. v.29 Electroremidiation: removal of heavy metals from soils by using cation selective membrane Li, Z.;J. W. Yu;I. Nereitnieks
  11. Colloid Journal v.59 Influence of chelating agents on the electrokinetic potential of the clay fraction of soddy podzolic soils Popov, K. I.;N. A. Shabanova;A. A. Artem'eva;E. M. Urinovich;Y. V. Tulaeva
  12. 휴·폐광산의 환경오염 복구 및 활용방안에 관한 심포지움 v.2 no.27 국제환경노동문화원
  13. J. Envir. Engrg Laboratory studies on remediation of chromium contaminated soils Pagilla, K. R.;L. W. Canter
  14. Biotechnol. Bioeng. v.53 Copper binding and release by immobilized transferrin: a new approach to heavy metal removal and recovery Spears D. R.;J. B. Vincent
  15. J. Envir. Engrg Ex-situ remediation of a metal-contaminated superfund soil using selective extractants Steele, M. C.;J. Pichtel
  16. 오염 토양복원 기술 국제 세미나 한국토양환경학회
  17. 오염토양/지하수 정화기술 개발 환경부
  18. 대한환경공학회 '98 추계학술대회논문초록집 Citric acid 세척법에 의한 중금속 오염 토양의 정화 이동호;최형섭;김균;김영희;허종수;이근선;전상수
  19. 대한환경공학회 '98 추계학술대회논문초록집 Citric acid를 이용한 오염토양내 중금속의 제거에 관한 연구 서승원;이용호;강순기;공성호
  20. 대한환경공학회 '98 추계학술대회논문초록집 In-situ flushing을 위한 오염토양내 중금속의 제거에 관한 연구 이용호;강순기;공성호
  21. 토양측정망운영지침 환경처