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October 17, 2025Journal of the National Science Foundation of Sri Lanka0 citationsOpen Access

Performance evaluation of a lab-scale upflow anaerobic sludgeblanket (UASB) reactor for landfill leachate treatment under ambienttemperature conditions

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HIH.P.D.U. IroshaniPRPG RathnasiriWBWasala M.K.R.T.W. Bandara

Key Points

  • The UASB reactor achieved 64% COD removal efficiency at a 6-hour hydraulic retention time, indicating strong performance.
  • Biogas production reached a methane yield of 86.1%, demonstrating the reactor's effectiveness in anaerobic conditions.
  • Heavy metal removal rates showed maximum efficiencies of 55% for lead and 47% for chromium, highlighting contaminant management capabilities.
  • The study supports the UASB technology's applicability for leachate treatment in tropical climates, but reveals limitations in complete contaminant removal.

Abstract

This study presents a comprehensive performance evaluation of a lab-scale upflow anaerobic sludge blanket (UASB) reactor for treating landfill leachate under ambient temperature conditions (28 - 32 °C), representative of tropical climates. The reactor was operated continuously for 94 days with real landfill leachate, investigating the system’s treatment efficiency across varying hydraulic retention times (HRTs) from 6 to 10 h. Key performance indicators, including organic matter removal, biogas production, and heavy metal reduction, were systematically analyzed. The results demonstrated optimal treatment performance at 6 h HRT, achieving 64 ± 1% COD removal efficiency with a concomitant high methane yield of 86.1 ± 1.1% in the produced biogas. The reactor maintained stable operational conditions, with pH in the range 6.2 - 7.5 and oxidation-reduction potential consistently below -200 mV, confirming effective anaerobic digestion under ambient temperature conditions. Heavy metal removal efficiencies varied significantly, with maximum removal observed for lead (55 ± 1%) and chromium (47 ± 1%), while suspended solids removal reached 66% for total suspended solids (TSS) and and 29% for volatile suspended solids (VSS). The study provides critical insights into the applicability of UASB technology for landfill leachate treatment in tropical regions, highlighting both its strengths in organic load reduction and limitations in comprehensive contaminant removal under ambient temperature operation. The findings contribute to the development of sustainable, climate-appropriate leachate treatment solutions for regions with limited resources.

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Cite This Study

Iroshani et al. (2025) studied this question.

synapsesocial.com/papers/68f19f20de32064e504ddecehttps://doi.org/10.4038/jnsfsr.v53i3.12089
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