Effect of Experimental Factors on Manganese Removal in Manganese Sand Filtration

망간모래여과공정에서 망간제거에 미치는 영향인자

  • 김범수 (한국수자원공사 수자원연구원 상하수도연구소) ;
  • 윤재경 (한국수자원공사 수자원연구원 상하수도연구소) ;
  • 안효원 (한국수자원공사 수자원연구원 상하수도연구소) ;
  • 김충환 (한국수자원공사 수자원연구원 상하수도연구소)
  • Received : 2005.10.17
  • Accepted : 2006.01.27
  • Published : 2006.02.15

Abstract

In the drinking water treatment, the aesthetic and color problem are caused by the manganese which is occurring and present in the surface, lake and ground water. The most common treatment processes for removing manganese are known for oxidation followed by filtration. In this study, the manganese sand process was used for removing manganese with river bank filtrate as a source. In the manganese sand process, the residual chlorine and pH are important factors on the continuous manganese oxidation. In addition, space velocity (SV) and alum dosage are play a role of manganese removal. Even though manganese removal increased with increasing chlorine concentration, the control of residual chlorine is actually difficult in this process As the results of tests, the residual chlorine concentration as well as manganese removal were effectively achieved at pH 7.5. The optimum attached manganese concentration on manganese sand was confirmed to 0.3mg/L by the experimental result of a typical sand converting to manganese sand.

Keywords

References

  1. 건설부 (1981) 상수도 유지관리 지침, 서울, pp. 143-153
  2. 김준환 (1999) 먹는물수질기준, 환경자료집, 국립환경연구원
  3. 정성욱, 이진필, 김학성 (2001) 정수공정에서 산화 및 여과에 의한 망간 제거, 대한환경공학회지, 23(4), pp. 661-669
  4. 淺田日出夫 (1958) 汚染原水のマンガン處理に關する硏究, 水道水質雜誌, 第293號, pp.26-29
  5. 趙奉行, 藤田賢二 (1993) 曝氣ろ過池によるマンガンの除去, 水道協會雜誌, 第703號, pp.31-39
  6. 和田洋六 (1996) 造水の技術, 地人書館, pp. 145-157
  7. Mouchet, P., From Conventional to Biological Removal of Iron and Manganese in France, Jour. AWWA, 84(4), pp. 158-167 (1992) https://doi.org/10.1002/j.1551-8833.1992.tb07342.x
  8. Knocke, W.R., Hamon, J.R. and Thompson, C.P. (1988) Soluble Manganese Removal on Oxide-Coated Filter Media, Jour. AWWA, 80(12), pp. 65-70