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Lee, Changsoo
Applied Biotechnology Lab for Environment
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Biomethanation of Harmful Macroalgal Biomass in Leach-Bed Reactor Coupled to Anaerobic Filter: Effect of Water Regime and Filter Media

Author(s)
Jung, HeejungKim, JaaiLee, Changsoo
Issued Date
2018-04
DOI
10.3390/ijerph15050866
URI
https://scholarworks.unist.ac.kr/handle/201301/24009
Fulltext
http://www.mdpi.com/1660-4601/15/5/866
Citation
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, v.15, no.5, pp.866
Abstract
Ulva is a marine macroalgal genus which causes serious green tides in coastal areas worldwide. This study investigated anaerobic digestion as a way to manage Ulva waste in a leach-bed reactor coupled to an anaerobic filter (LBR-AF). Two LBR-AF systems with different filter media, blast furnace slag grains for R1, and polyvinyl chloride rings for R2, were run at increasing water replacement rates (WRRs). Both achieved efficient volatile solids reduction (68.4-87.1%) and methane yield (148-309 mL/g VS fed) at all WRRs, with the optimal WRR for maximum methane production being 100 mL/d. R1 maintained more stable methanation performance than R2, possibly due to the different surface properties (i.e., biomass retention capacity) of the filter media. Such an effect was also noted in the different behaviors of the LBR and AF between R1 and R2. The molecular analysis results revealed that the development of the microbial community structure in the reactors was primarily determined by the fermentation type, i.e., dry (LBR) or wet (AF).
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
ISSN
1661-7827
Keyword (Author)
anaerobic digestionanaerobic filterleach-bed reactormicrobial community structureUlvawater replacement
Keyword
MICROBIAL COMMUNITY STRUCTURETREATING FOOD WASTEMETHANE PRODUCTIONBIOGAS PRODUCTIONULVA BIOMASSDIGESTIONPERFORMANCERECIRCULATIONEFFLUENTSEAWEED

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