| Literature DB >> 35098375 |
Tsutomu Okubo1, Tadashi Tagawa2, Masanobu Takahashi3, Akinori Iguchi4, Mamoru Oshiki5, Nobuo Araki6, Kengo Kubota7, Ahmed Tawfik8, Shigeki Uemura9, Hideki Harada10.
Abstract
The down-flow hanging sponge (DHS) reactor is advantageous for sewage treatment since it produces an effluent quality that complies with the standards for reuse and there is little excess sludge. A full-scale DHS module was efficiently employed for the treatment of domestic sewage (200 m3 day-1) flowing from a primary sedimentation basin (PSB), which was used to reduce the suspended solids loading rate and enhance the oxidation of organics by heterotrophs. The combined PSB-DHS was successfully operated at a total hydraulic retention time of 3.4 h (2.4 h for PSB and 1.0 h for DHS) for the relatively long period of 600 days at sewage temperatures of 10 °C to 32 °C. The PSB-DHS consistently produced an effluent quality with minimum values of chemical oxygen demand, biochemical oxygen demand, and suspended solids of 59 ± 15, 12 ± 3.0, and 15 ± 7 mg L-1, respectively. The proposed system performed exceptionally well at removing organics and particulate matter over a short hydraulic retention time.Entities:
Keywords: Developing countries; Down-flow hanging sponge reactor; Primary sedimentation basin; Sewage treatment
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Year: 2022 PMID: 35098375 DOI: 10.1007/s00449-022-02689-w
Source DB: PubMed Journal: Bioprocess Biosyst Eng ISSN: 1615-7591 Impact factor: 3.210