KOMUNITAS MIKROBA PENGAKUMULASI GLIKOGEN

Dyah Supriyati, Rita Dwi Rahayu, Hartati Imamuddin
| Abstract views: 563 | PDF views: 1287

Abstract

Activated sludge originated from anaerobic-aerobic process waste water treatment plan was acclimated with glucose and acetate.The experiment was conducted in 1 L working volume of sequential batch reactor (SBR) that was adjusted to 0, 25 kg m day.Glucose was effectively utilized by microbial community in anaerobic condition, and glycogen synthesis was occurred in aerobic condition.Suppression of polyphosphate accumulating organism was caused by the domination of glycogen accumulating organism and the high of nitrate production. In order to accelerate the community polyphosphate accumulating organisms then to the competitor of these communities must be pressured.

Keywords

Mikroba pengakumulasi glikogen, komunitas, proses anaerobik-aerobik, pengolahan limbah.

Full Text:

PDF

References

APHA. 1992. Standard Methods for The Examination of Water and Wastewater, 18th Ed., American Public Health Association, Washington D.C.

Cech JS and P Hartman. 1990. Glucose induced breakdown of enhanced biological phosphorus removal. Environ. Tech. 11, 651-656.

Comeau Y, KJ Hall, REW Hancock and WK Oldham. 1986. Biochemical model for enhanced biological phosphorus removal. Water Research 20 (12), 1511- 1521.

Kato J, T Yamato, K Yamada and H Ohtake. 1993. Cloning sequence and characterization of the polyphospate kinase –encoding gene (PPK) of Klebsilla aerogenes. Gene 137, 237- 242. Elseiver Science Publisher, Japan.

Kortstee GJJ, KJ Appledoorn, CFC Bonting, EWJ v Niel, and HW v Veen. 1994. Biology of polyphosphate– accumulating bacteria involved in enhanced biological phosphorus removal, FEMS. Microbiol. Rev. 15, 137-153.

Marais GVR, RE Leowenthal and IP Siebritz. 1983. Observations supporting phosphate removal by biological excess uptake - a review. Wat. Sci. Tech. 15, 15-41.

Mino T, V Arun, Y Tsuzuki and T. Matsuo. 1987. Effect of phosphorus accumulation on acetate metabolism in biological phosphorus removal process. Wat. Sci. Tech. 23, 567-576.

Mino T. 1994. Biological Phosphorus Removal Technology, Contemporary Studies in Urban Planning and Environmental Management in Japan. Department of Urban Engineering, The University of Tokyo, Kajima Institute Publ., Tokyo.

Mino T, H Satoh and T Matsuo. 1995. Metabolism of different bacterial populations in enhanced biological phosphate removal processes. Wat. Sci. Tech. 29 (7), 67-70.

Ohtake H, K Takahashi, Y Tsusuki and K Toda 1985. Uptake and release of phosphate by a ure culture of Acinetobacter calcoaceticus. Wat. Res. 19, 1587- 1594.

Sudiana IM. 1998. Metaboilc Characteristic and Morphology of Glycogen Accumulating Organism in Enchanced Biological phosphorous Removal Sludge. International Symposium on Agriculture Sciences and Biochemistry VII, 180-184. Hiroshima, 5 – 6 September 1998.

Sudiana IM, Mino T, Satoh H and Matsuo T. 1998. Morphology, In-situ Identification with rRNA targetted Probe and respiratory quinone profile of enhanced biological phosphorous removal sludge. Wat. Sci. Tech. 8 & 9, 69-76.


Refbacks

  • There are currently no refbacks.