Literature DB >> 16289794

Organics removal from landfill leachate and activated sludge production in SBR reactors.

Ewa Klimiuk1, Dorota Kulikowska.   

Abstract

This study is aimed at estimating organic compounds removal and sludge production in SBR during treatment of landfill leachate. Four series were performed. At each series, experiments were carried out at the hydraulic retention time (HRT) of 12, 6, 3 and 2d. The series varied in SBR filling strategies, duration of the mixing and aeration phases, and the sludge age. In series 1 and 2 (a short filling period, mixing and aeration phases in the operating cycle), the relationship between organics concentration (COD) in the leachate treated and HRT was pseudo-first-order kinetics. In series 3 (with mixing and aeration phases) and series 4 (only aeration phase) with leachate supplied by means of a peristaltic pump for 4h of the cycle (filling during reaction period) - this relationship was zero-order kinetics. Activated sludge production expressed as the observed coefficient of biomass production (Y(obs)) decreased correspondingly with increasing HRT. The smallest differences between reactors were observed in series 3 in which Y(obs) was almost stable (0.55-0.6 mg VSS/mg COD). The elimination of the mixing phase in the cycle (series 4) caused the Y(obs) to decrease significantly from 0.32 mg VSS/mg COD at HRT 2d to 0.04 mg VSS/mg COD at HRT 12d. The theoretical yield coefficient Y accounted for 0.534 mg VSS/mg COD (series 1) and 0.583 mg VSS/mg COD (series 2). In series 3 and 4, it was almost stable (0.628 mg VSS/mg COD and 0.616 mg VSS/mg COD, respectively). After the elimination of the mixing phase in the operating cycle, the specific biomass decay rate increased from 0.006 d(-1) (series 3) to 0.032 d(-1) (series 4). The operating conditions employing mixing/aeration or only aeration phases enable regulation of the sludge production. The SBRs operated under aerobic conditions are more favourable at a short hydraulic retention time. At long hydraulic retention time, it can lead to a decrease in biomass concentration in the SBR as a result of cell decay. On the contrary, in the activated sludge at long HRT, a short filling period and operating cycle of the reactor with the mixing and aeration phases seem the most favourable.

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Year:  2005        PMID: 16289794     DOI: 10.1016/j.wasman.2005.09.011

Source DB:  PubMed          Journal:  Waste Manag        ISSN: 0956-053X            Impact factor:   7.145


  4 in total

1.  Nitrifying granules cultivation in a sequencing batch reactor at a low organics-to-total nitrogen ratio in wastewater.

Authors:  A Cydzik-Kwiatkowska; I Wojnowska-Baryła
Journal:  Folia Microbiol (Praha)       Date:  2011-05-27       Impact factor: 2.099

2.  Cycle length and COD/N ratio determine properties of aerobic granules treating high-nitrogen wastewater.

Authors:  Agnieszka Cydzik-Kwiatkowska; Katarzyna Bernat; Magdalena Zielińska; Irena Wojnowska-Baryła
Journal:  Bioprocess Biosyst Eng       Date:  2013-12-10       Impact factor: 3.210

3.  Efficient Utilization of Waste Carbon Source for Advanced Nitrogen Removal of Landfill Leachate.

Authors:  Kai Wang; Wenjun Yin; Fengxun Tan; Daoji Wu
Journal:  Biomed Res Int       Date:  2017-12-24       Impact factor: 3.411

Review 4.  Treatment of Landfill Leachate Using Activated Sludge Technology: A Review.

Authors:  Kai Wang; Lusheng Li; Fengxun Tan; Daoji Wu
Journal:  Archaea       Date:  2018-09-04       Impact factor: 3.273

  4 in total

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