4.2 Article

A comparative study on the alternating mesophilic and thermophilic two-stage anaerobic digestion of food waste

Journal

JOURNAL OF ENVIRONMENTAL SCIENCES
Volume 26, Issue 6, Pages 1274-1283

Publisher

SCIENCE PRESS
DOI: 10.1016/S1001-0742(13)60599-9

Keywords

community structure; food waste; methane production; nutrient removal; two-stage anaerobic digestion

Funding

  1. Korean Ministry of Agriculture, Food and Rural Affairs [313007-03-1-HD020]
  2. Institute of Planning & Evaluation for Technology in Food, Agriculture, Forestry & Fisheries (iPET), Republic of Korea [313007032SB010] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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An alternating mesophilic and thermophilic two stage anaerobic digestion (AD) process was conducted. The temperature of the acidogenic (A) and methanogenic (M) reactors was controlled as follows: System 1(S1) mesophilic A-mesophilic M; (S2) mesophilic A-thermophilic M; and (S3) thermophilic A-mesophilic M. Initially, the AD reactor was acclimatized and inoculated with digester sludge. Food waste was added with the soluble chemical oxygen demand (SCOD) concentrations of 41.4-47.0 g/L and volatile fatty acids of 2.0-3.2 g/L. Based on the results, the highest total chemical oxygen demand removal (86.6%) was recorded in S2 while S3 exhibited the highest SCOD removal (96.6%). Comparing Si with S2, total solids removal increased by 0.5%; S3 on the other hand decreased by 0.1 % as compared to Si. However, volatile solids (VS) removal in Si, S2, and S3 was 78.5%, 81.7%, and 79.2%, respectively. S2 also exhibited the highest CH, content, yield, and production rate of 70.7%, 0.44 L CH4/g VSadded, and 1.23 L CH4/(L.day), respectively. Bacterial community structure revealed that the richness, diversity, evenness, and dominance of S2 were high except for the archaeal community. The terminal restriction fragments dendrogram also revealed that the microbial community of the acidogenic and methanogenic reactors in S2 was distinct. Therefore, S2 was the best among the systems for the operation of two-stage AD of food waste in terms of CH4 production, nutrient removal, and microbial community structure.

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