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Effect of Organic Loading Rate on Anaerobic Digestion Performance of Mesophilic (UASB) Reactor Using Cattle Slaughterhouse Wastewater as Substrate. | LitMetric

AI Article Synopsis

  • The study evaluated a laboratory UASB reactor treating cattle slaughterhouse wastewater at 35 °C, focusing on its performance with varying organic loading rates.
  • During batch studies, the reactor achieved over 90% COD removal, maintaining this efficiency even during continuous operation at low OLR, but performance decreased at higher loading rates.
  • High methane production was observed, with significant yields, low volatile fatty acids, and sufficient alkalinity to prevent acidification, indicating the reactor's effectiveness for anaerobic treatment and methane generation.

Article Abstract

In this study, the performance of a laboratory scale upflow anaerobic sludge blanket (UASB) reactor operating at mesophilic temperature (35 °C) was examined. Cattle slaughterhouse wastewater (CSWW) was used as the main substrate. The total and effective volumes of the reactor were 8 L and 6 L, respectively. Twelve different organic loading rates (OLR) were applied and the performance was evaluated. The chemical oxygen demand (COD) removal efficiency was more than 90% during batch study. In the continuous study, COD removal was also approximately 90% at OLR 0.4 g/L d which subsequently dropped to below 50% when the loading rate increased to 15 g/L d. Approximately 5 L/d of biogas was obtained with high methane concentration at stages VI and XI corresponding to OLR of 2 and 10 g/L d, respectively. It was observed that the concentration of volatile fatty acids was low and that the alkalinity of the wastewater was sufficient to avoid acidification. Specific methane yields of 0.36 and 0.38 LCH₄/g COD added were achieved at OLR 7 and 10 g/L d. A hydraulic retention time (HRT) of 1 day was sufficient to remove greater than 70% of COD which correspond to 89% methane concentration. Parameters like soluble COD, NH₃-N, pH, alkalinity, total suspended solid (TSS), fats, oil, and grease were also investigated. The results show that the UASB reactor could serve as a good alternative for anaerobic treatment of CSWW and methane production.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6211058PMC
http://dx.doi.org/10.3390/ijerph15102220DOI Listing

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