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Effect of aeration rate on the hydrolysis and acidification of waste activated sludge in thermophilic aerobic conditions

  • Yanan Hou
  • , Chunxue Yang
  • , Aijuan Zhou
  • , Aijie Wang*
  • *Corresponding author for this work
  • Harbin Institute of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This study investigated the effect of aeration rates on the hydrolysis process of Waste Activated Sludge (WAS) with thermophilic aerobic microbes and explained by the change of solubilization of lipids, carbohydrates and proteins in sludge under different aeration rates (0.03 vvm, 0.05 vvm, 0.07 vvm, 0.09 vvm, 0.11 vvm). The results revealed that with the increase of aeration rate, the accumulation of volatile fatty acids (VFAs) in the treated sludge was decreased. Only 2 142 mg COD/L was accumulated at the ventilation rate of 0.11 vvm, while the highest accumulation which was 4 088 mg/L at the ventilation rate of 0.05 vvm. Further investigation showed that under optimal aeration rate which was 0.05 vvm, theromophilic aerobic microbes facilitated the organism hydrolysis and increased the biodegradability of WAS significantly. The concentration of carbohydrates was improved remarkably from 70 mg COD/L to 560 mg COD/L compared with the control (the process without aeration) at 65°C. Meanwhile, the concentration of protein was increased stably due to the high activity of protease, and reached the peak of 1 320 mg COD/L after 72h, then decline at the later period. The maximal soluble chemical oxygen demand (SCOD) was 5 600 mg/L and VFAs was 4 088 mg COD/L, which would be beneficial to the followed digestion process. Therefore, appropriate aeration is efficient to improve the accumulation of soluble organic matters and VFAs in WAS.

Original languageEnglish
Title of host publicationEnvironmental and Materials Engineering
Pages111-116
Number of pages6
DOIs
StatePublished - 2013
Event2012 International Conference on Environmental and Materials Engineering, EME 2012 - Seoul, Korea, Republic of
Duration: 9 Dec 201210 Dec 2012

Publication series

NameAdvanced Materials Research
Volume664
ISSN (Print)1022-6680

Conference

Conference2012 International Conference on Environmental and Materials Engineering, EME 2012
Country/TerritoryKorea, Republic of
CitySeoul
Period9/12/1210/12/12

Keywords

  • Acidification
  • Aeration rate
  • Hydrolysis
  • Solubilization
  • Waste activated sludge (WAS)

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