Decentralised treatment of concentrated sewage at low temperature in a two-step anaerobic system: two upflow-hybrid septic tanks

T.A. Elmitwally, S. Sayed, L. Groendijk, J.B. van Lier, G. Zeeman, G. Lettinga

Research output: Contribution to journalArticleAcademicpeer-review

31 Citations (Scopus)

Abstract

The decentralised treatment of concentrated sewage (about 3,600 mgCOD/1) at low temperature was investigated in a two-step anaerobic system: two-anaerobic hybrid (AH) septic tanks (each 0.575 m(3)). The two reactors were placed in a temperature controlled-room and the HRT was 2.5 days for each reactor. The system was fed with concentrated domestic sewage, mainly black water from about 40 toilets flushed with only 4 litre of water and a limited amount of grey water. The system showed high removal efficiency for the different COD fractions. Mean removal efficiencies in the two-step AH-septic tank at 5 days HIRT and 13degreesC were 94, 98, 74 and 78% for total COD, suspended COD, colloidal COD and dissolved COD respectively. The results of short run experiments indicated that the presence of reticulated polyurethane foam (RPF) media in the AH-septic tank improved the removal of suspended COD by 22%. The first AH-septic tank was full of sludge after 4 months of operation due to the high removal of particulate COD and the limited hydrolysis at low temperature conditions. Therefore, a simple mathematical model was developed based on ADM1 (the IWA model in 2002). Based on the experimental results and the mathematical model, only a one-step AH septic tank is required. An HRT of 5.5-7.5 days is needed for that one-step AH septic tank to treat concentrated sewage at a low temperature of 13degreesC. Such a system can provide a total COD removal as high as 87% and will be full of sludge after a period of more than a year.
Original languageEnglish
Pages (from-to)219-226
JournalWater Science and Technology
Volume48
Issue number6
DOIs
Publication statusPublished - 2003

Keywords

  • domestic sewage
  • waste-water
  • reactors
  • digestion
  • particles
  • filters
  • design

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