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고온 혐기성 소화공정의 start-up seed로서의 호기성 폐 활성슬러지 이용가능성 연구Waste Activated Sludge for Start-up Seed of Thermophilic Anaerobic Digestion

Other Titles
Waste Activated Sludge for Start-up Seed of Thermophilic Anaerobic Digestion
Authors
김문일신규철
Issue Date
Sep-2005
Publisher
한국물환경학회
Keywords
Anaerobic digestion; Anaerobic digested sludge; Mesophilic; Start-up seed; Thermophilic; Waste activated sludge
Citation
한국물환경학회지, v.21, no.5, pp 490 - 495
Pages
6
Indexed
KCI
Journal Title
한국물환경학회지
Volume
21
Number
5
Start Page
490
End Page
495
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/46270
ISSN
2289-0971
2289-098X
Abstract
Since there are very limited numbers of thermophilic anaerobic digesters being operated, it is often difficult to start up a new one using sludge from an existing reactor as a seed. However, for obvious reasons it seems few attempts have been made to compare the start-up performance of thermophilic anaerobic digestion using different sources of seed sludges. The purpose of this study was to evaluate the start-up performance of anaerobic digestion using aerobic Waste Activated Sludge (WAS) from a plant and mesophilic Anaerobic Digested Sludge (ADS) as the seed source at both mesophilic (35˚C) and thermophilic (55˚C) temperatures. In this study, two experiments were conducted. First, thermophilic anaerobic reactors were seeded with WAS (VSS = 4,400 mg/L) and ADS (VSS = 14,500 mg/L) to investigate start-up performance with a feed of acetate as well as propionate. The results show that WAS started to produce CH4 soon after acetate feeding without a lag time, while ADS had a lag time of 10 days. When the feed was changed to propionate, WAS removed propionate down to below the detection limit of 10 mg/L, while ADS removed little propionate and produced little CH4. Second, in order to further compare the methanogenic activity of WAS and ADS, both mesophilic and thermophilic reactors were operated. WAS acclimated to anaerobic conditions shortly and after acclimating it produced more CH4 than ADS. WAS at mesophilic temperature biodegraded acetate at the same rate as for thermophilic. However WAS at mesophilic temperature biodegraded propionate at a much faster rate than at thermophilic. WAS as the seed source of anaerobic digestion resulted in much better performance than ADS at both mesophilic and thermophilic temperatures for both acetate and propionate metabolism.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING > 1. Journal Articles

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Kim, Moon il
ERICA 공학대학 (DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING)
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