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미생물 첨가제가 거세한우 분의 이화학적 특성, 미생물 성상, 가스 발생량 및 퇴비 부숙도에 미치는 영향Effects of Microbial Additives on the Chemical Characteristics, Microbes, Gas Emissions, and Compost Maturity of Hanwoo Steer Manure

Other Titles
Effects of Microbial Additives on the Chemical Characteristics, Microbes, Gas Emissions, and Compost Maturity of Hanwoo Steer Manure
Authors
주영호서명지정승민김지윤김삼철
Issue Date
Dec-2022
Publisher
한국초지조사료학회
Keywords
Chemical characteristics; Compost maturity; Farm odor; Hanwoo steer manure; Microbial additives
Citation
한국초지조사료학회지, v.42, no.4, pp 264 - 269
Pages
6
Indexed
KCI
Journal Title
한국초지조사료학회지
Volume
42
Number
4
Start Page
264
End Page
269
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/30646
ISSN
2287-5824
2287-5832
Abstract
The present study investigated effects of microbial additives on the floor of Hanwoo steer manure in barn. The treatment following: without additives (CON); additives (AMA). Each treatment used 3 barns as replication and each barn contained 5 Hanwoos. The Hanwoo steer manure in barns was sub-sampled from 5 sides of pen at 0, 4 and 12 weeks. The sub-samples were used for analyses of chemical compositions, microbial counts, gas emissions and compost maturity. The concentrations of moisture, organic matter, total nitrogen and carbon-to-nitrogen (C/N ratio) of Hanwoo steer manure before the microbial additives were each 59.1%, 83.2%, 1.78% and 50.0%, respectively. The counts of lactic acid bacteria, Yeast, Bacillus subtilis, and Escherichia coli (E. coli) were each 5.94, 6.83, 7,28 and 5.52 cfu/g, but Salmonella was not detected. The ammonia-N gas was 4.67 ppm, but hydrogen sulfide gas was not detected. After 4 weeks, moisture, organic matter, total nitrogen, pH and yeast count were lowest (p<0.05). The lactic acid bacteria, yeast, Escherichia coli (E. coli) and ammonia-N gas were not effects of microbial additives. All treatments was not detected at Salmonella count and hydrogen sulfide emission, and compost maturity was completed. After 12 weeks, the lactic acid bacteria and Bacillus subtilis were highest in AMA, while moisture, yeast and E. coli were lowest (p<0.05). The ammonia-N gas was not effect by microbial additive. Salmonella and hydrogen sulfide emission were not detected in all treatments, and compost maturity was completed. Therefore, in present study, the microbial additive did not affect of gas and compost maturity, but the pathogenic microorganism such as E. coli, were inhibited by microbial additives.
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