• 제목/요약/키워드: Active composting

검색결과 20건 처리시간 0.019초

우분 퇴비화의 주발효과정 중 이화학적 및 미생물학적 파라미터의 변화 (Changes in Physico-chemical and Microbiological Parameters during Active Composting of Cattle Manure)

  • 김윤석;강명규;배경숙;이규승;이영하
    • 미생물학회지
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    • 제33권4호
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    • pp.267-273
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    • 1997
  • 주재료와 부재료로서 각각 우분과 톱밥이 함유된 유기성 폐기물 퇴비화의 주발효과정 중 이화학적 및 미생물학적 파라미터의 변화양상을 조사하고, 이로부터 퇴비화의 평가에 이용할 수 있는 각 파라미터간의 상관관계를 분석하였다. 퇴비화 전과정동안 온도는 $30-65^{\circ}C$, pH는 7.5-9.5, 함수율은 50-60% 정도의 범위에서 변하였으며, 이 중 $40^{\circ}C$ 이상의 고온이 유지되는 주발효 기간은 약 16일 정도 지속되었다. 주발효 기간 중 시료내 총탄소, 총질소 및 유기물 함량은 모두 15% 이상 감소되었으나, C/N ratio는 뚜렷한 변화를 보이지 않았다. 주발효 후기에는 암모니아성 질소 함량이 급격히 감소하고 질산성 질소가 증가되는 경향이 나타났다. 미생물 군집내 중온균과 고온균의 개체수는 퇴비화 과정동안의 온도변화와 밀접한 관계를 보였다. 중온균은 $50^{\circ}C$ 이상의 고온발효 기간에 급격히 감소하다가 온도가 낮아지는 주발효 후기에 다시 증가하는 반면에, 고온균은 이와 반대의 변화를 보였으며 주발효 기간 중 고온균의 개체수는 중온균에 비하여 $10-10^2$배 높았다. 조사된 토양효소 중 amylase 활성은 중온균의 개체수 및 환원당량과 높은 양의 상관관계를, 고온균의 개체수와는 음의 상관관계를 나타냈다. 이와는 달리 상호 유의할만한 양의 상관관계를 보인 cellulase, xylanase 및 ligninase의 활성은 주발효 기간 중 지속적으로 증가하는 양상을 보임으로써, 주발효 기간 중 lignocellulose 분해미생물과 amylose 분해미생물간의 출현양상이 크게 다름을 보여 주었다.

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Reduction of Ammonia Emissions by Compost Biofilter from the Agitated Bed Composting of Hog Manure

  • J. H. Hong;Park, K. J.;Kim, J. Y.
    • 한국농공학회지
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    • 제44권7호
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    • pp.46-52
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    • 2002
  • Manure compost biofilter for reducing ammonia emissions at the active stage of a semi air tight and agitated bed composting of hog manure amended with sawdust were evaluated in the practical composting plant(75 m 5 m $\times$1.4 m deep). During 55 days of composting and biofiltration process, the manure compost biofilter had a ammonia reduction of 91 to 98%. Results showed that the active stage of composting maintained temperatures between 40 and 7$0^{\circ}C$ and fluctuated greatly the ammonia concentrations between 100 and 300 ppm. Ammonia concentrations in manure compost biofiltration reached within a moderate range (2-18 ppm).

시장폐기물의 효율적인 퇴비화 연구 (Composting of Wastes from Agricultural Products)

  • 박진희;김석정;신홍균
    • 아시안잔디학회지
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    • 제12권1호
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    • pp.17-22
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    • 1998
  • This experiment was conducted to investigate the active composting process with wastes from agricultural products. This was decomposed by active composting process for 28 days. Temperature of active airation period was maintained at 60~68C˚ for 6 days, and then 55˚C ~40˚C for 11 days. After turnover, composting temperture raised to 55~58˚C for 5 days and was maintained at air temperature condition from 6 days. Add then, compost was stabilized in the non-aerated depository for 2 months. The C/N ratios of these compests were 18.5,19.7 and 18.5 on the depths which were 5 cm, 10 cm and 20 cm, respectively. The pH of compest was changed from 6.5 to 7.2. Key words: Agricultural products, Wastes, C /N ratios.

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저온기간중 우분의 퇴비화에 관한 연구 (Studies on the Cow Feces Composting in Cold Season)

  • 정광화;김원호;김맹중;서성;고응규
    • 한국축산시설환경학회지
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    • 제4권1호
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    • pp.55-61
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    • 1998
  • Cow feces excreted in cold season should be managed and composted properly, because the composted feces is distributed to pasture or cultivated land as a fertilizer in spring. Generally it is admitted that the effect of composting is suppressed by low temperature in cold season. In this study, composting piles were warmed by hot air until temperature of compost piles were reached at 35∼40$^{\circ}C$, to compare composting effect of experimental compost pile to control pile exposed in cold air. Some results obtained from the experiment during composting of cow feces mixed with bulking agent provide a possibility of active composting of organic matters in cold season. The biodegradation ratios of organic matter during composting in four types of composts were 10.2% for the rice straw, 7.7% for the rice hull, 6.4% for the sawdust and 4.3% for the control. The highest temperatures of compost piles during composting period were 76$^{\circ}C$ in sawdust, 80$^{\circ}C$ in rice hull, 68$^{\circ}C$ in rice straw, 45$^{\circ}C$ in control. Moisture content, pH, C/N, volume of compost were decreased during composting period, but EC value was increased with ionization of organic molecular by fermentation.

Characterization of Bacterial Community Dynamics during the Decomposition of Pig Carcasses in Simulated Soil Burial and Composting Systems

  • Ki, Bo-Min;Kim, Yu Mi;Jeon, Jun Min;Ryu, Hee Wook;Cho, Kyung-Suk
    • Journal of Microbiology and Biotechnology
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    • 제27권12호
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    • pp.2199-2210
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    • 2017
  • Soil burial is the most widely used disposal method for infected pig carcasses, but composting has gained attention as an alternative disposal method because pig carcasses can be decomposed rapidly and safely by composting. To understand the pig carcass decomposition process in soil burial and by composting, pilot-scale test systems that simulated soil burial and composting were designed and constructed in the field. The envelope material samples were collected using special sampling devices without disturbance, and bacterial community dynamics were analyzed by high-throughput pyrosequencing for 340 days. Based on the odor gas intensity profiles, it was estimated that the active and advanced decay stages were reached earlier by composting than by soil burial. The dominant bacterial communities in the soil were aerobic and/or facultatively anaerobic gram-negative bacteria such as Pseudomonas, Gelidibacter, Mucilaginibacter, and Brevundimonas. However, the dominant bacteria in the composting system were anaerobic, thermophilic, endospore-forming, and/or halophilic gram-positive bacteria such as Pelotomaculum, Lentibacillus, Clostridium, and Caldicoprobacter. Different dominant bacteria played important roles in the decomposition of pig carcasses in the soil and compost. This study provides useful comparative date for the degradation of pig carcasses in the soil burial and composting systems.

돈분 퇴비화 중 부숙도에 미치는 영향인자 구명 (Studies on a Factor Affecting Composts Maturity During Composting of SWine Manure)

  • 김태일;송준익;양창범;김민균
    • Journal of Animal Science and Technology
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    • 제46권2호
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    • pp.261-272
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    • 2004
  • 본 연구는 돈분과 팽연왕겨를 6:4로 혼합하여 함량을 65% 정도로 조절한 후 에스컬레이트식 축분교반기로 교반하면서 바닥에서 강제 송풍이 이루어진 대단위 퇴비화 시설에서 수행하였으며 본 시설을 이용한 축분 퇴비화중 퇴적더미의 온도는 15일령에 가장 높은 76$^{\circ}C$까지 상승한 후 25일령까지는 62$^{\circ}C$ 이상에서 온도가 유지되었으며 그 후 온도가 서서히 감소하여 완숙퇴비 단계에는 20$^{\circ}C$까지 떨어졌다. 수분 함량의 변화는 1일령부터 25일령까지 약 20%가 줄었으며 15일령부터 후발효 단계까지 급격하게 수분의 감소가 있었고 후발효 이후 수분 함량은 30%${\sim}$40% 사이로 유지되었다. 완숙퇴비의 안정성에 주된 인자로 알려진 퇴적더미내의 미생물상의 조사 결과 중온성 세균은 $10^8$-$10^10$ $CFUg^{-1}$, 사상균은 $10^3$-$10^4$, 방사선은 $10^6$-$10^8$의 범위에 상존하는 것으로 밝혀져 퇴비화 최종단계(퇴비화 45일령)에서는 축분퇴비의 안정성이 있는 것으로 사료되었으며 공정단계별 부숙도에 영향을 미치는 요인의 특성 변화를 구명하고자 실시한 결과는 다음과 같다. 1) 암모니아태 질소 함량은 퇴비화되면서 퇴비화 초기인 1일령에 최고치인 421.87mg/kg에서 점차 감소하여 완숙에는 104.89mg/kg으로 낮아졌다. 암모니아태 질수와 질산태 질소의 비율은 퇴비화 초기에는 11이상이었으며 퇴비화 45일령(완제품 단계)에서는 2 이하로 감소되었다. 2) 종자 발아지수는 퇴비내 독성물질과 영양소에 크게 좌우되었으며 퇴비화 전반기에는 무희석처리구의 수치로 볼 때 독성물질에 의한 저해로 간주가 되며 25일 이후 작물의 양적 영양소에 따라 발아지수가 달라졌다. 45일의 발효완료 단계에서의 발아지수는 80 이상을 나타내었다. 3) Humic acid의 E4:E6는 퇴비화 기간 중 25일 이전에는 E4:E6 ratio가 8.86에서 6.76 범위에서 감소하는 경향을 나타내었으며 25일 이후 완제품까지는 6.76에서 4.67의 범위에서 감소하였으며 이때의 퇴비화 전기간의 $r^2$ 값은 0.96이였다. 4) 수용성 탄소는 퇴비화 전반기에 0.54%에서 0.78%로 증가하였으며 그 이후는 0.42%까지 감소하는 경향을 나타냈다. 수용성 질소의 경우는 퇴비화 15일령까지 0.22%에서 0.32로 증가하다가 퇴비화 15일령 이후는 지속적으로 감소하는 경향을 나타냈다. 결과적으로 수용성 탄소와 수용성 질소간의 상관계수는 퇴비화 25일령까지인 전반기에 0.12인 반면 퇴비화 25일령 이후에는 0.5로 나타났다.

음식물쓰레기 퇴비화에서 혼합물 특성이 퇴비화에 미치는 영향 (An Influence of Mixing Material Characteristics on the Composting of Food Waste)

  • 정준오;권혁구;이장훈
    • 한국환경보건학회지
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    • 제28권5호
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    • pp.22-27
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    • 2002
  • The composting practice has been recognized as the most popular way of controlling food waste and many attempt have been made in the field to establish more efficient and economical process. Some of the efforts are mixing cured compost with sawdust as alternative bulking agent, seeding commercially produced microorganism and/or combination of above. However, verification of such efforts is often restricted because of either the lack of engineering consideration on the limitation of composting facility scales. In this study, the effect of mixing materials in food waste composting was investigated by controlling the combination and the mixing ratio of them. When the cured compost was mixed with saw dust. the decomposition of organic material was proven to be more active by observing the compost temperature, the oxygen (O$_2$) consumption, and the cumulative carbon dioxide ($CO_2$) profile. However, the quantity of compost mix-ing seemed not to influence the reaction as long as the minimum required amount was mixed. The feeding of com-mercially produced microorganism had a tendency to prolong the thermophilic stage, which helped to increase the decomposition but it resulted in composting period. Regardless of the composting condition, bacteria and actinomycetes increased in population as the reaction approached to the end. The population of bacteria and actinomycetes were rel-atively higher than those of fungi and yeast throughout the reaction.

Evaluation of Optimum Moisture Content for Composting of Beef Manure and Bedding Material Mixtures Using Oxygen Uptake Measurement

  • Kim, Eunjong;Lee, Dong-Hyun;Won, Seunggun;Ahn, Heekwon
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권5호
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    • pp.753-758
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    • 2016
  • Moisture content influences physiological characteristics of microbes and physical structure of solid matrices during composting of animal manure. If moisture content is maintained at a proper level, aerobic microorganisms show more active oxygen consumption during composting due to increased microbial activity. In this study, optimum moisture levels for composting of two bedding materials (sawdust, rice hull) and two different mixtures of bedding and beef manure (BS, Beef cattle manure+sawdust; BR, Beef cattle manure+rice hull) were determined based on oxygen uptake rate measured by a pressure sensor method. A broad range of oxygen uptake rates (0.3 to 33.3 mg $O_2/g$ VS d) were monitored as a function of moisture level and composting feedstock type. The maximum oxygen consumption of each material was observed near the saturated condition, which ranged from 75% to 98% of water holding capacity. The optimum moisture content of BS and BR were 70% and 57% on a wet basis, respectively. Although BS's optimum moisture content was near saturated state, its free air space kept a favorable level (above 30%) for aerobic composting due to the sawdust's coarse particle size and bulking effect.

음식폐기물 퇴비화에서 유효 미생물 분리 및 첨가에 관한 연구 (A Study on the Composting Process of Food Waste by Seeding the Isolated Effective Microorganism)

  • 이장훈;정준오;박승호
    • 한국환경보건학회지
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    • 제26권3호
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    • pp.1-10
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    • 2000
  • Although microorganisms play an important role in composting process, researches on the effective microorganism (EM) in composting process are rarely reported. In this study, three stages of work performed 1) investigation of composting facility 2) sample collection and isolation of the EM 3) lab-scale composting by seeding the isolated EM. For this, purpose, physical, chemical, and biological characteristics, such as temperature, moisture content, organic matter, pH population of microorganism, etc., were investigated during the process and the results were compared with those of a control(non-seeded). In the composting facility, the most active degradation of food waste was suppsed to occur in 10-11th day of composting by observing the temperature and CO2 emission. The population of bacterial and fungi was highest in thermophilic stage. Meanwhile that of actinomycetes and yeast was relatively uniform during the process. In the lab-scale test, the thermophilic stage was maintained longer(more than 9 days in 17 days of experiment) in the seeded which was favored for the high reduction of organic matter and moisture. Reduction rates of lipids and salinity were also increased in the seeded. It confirmed these results that the population of microorganisms in the seeded was observed higher in several orders than the control. However, pH of the seeded was maintained as low as about 4.5 throughout the experiment except the final period of the process. Meanwhile, pH of the control rose in the early stage of the experiment. This was probably due that the seeded microorganisms collected from the composting facility was adapted to the low pH environment.

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육계분의 콤포스터 처리시 내부온도 조절이 생산물의 영양학적, 미생물학적 성상에 미치는 영향 (Effect of Pile Temperature Control on Changes of Nutritional and Microbilological Parameters of Composted Poultry Waste)

  • 곽완섭;김태규;김언현;김창원
    • 한국축산시설환경학회지
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    • 제2권2호
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    • pp.147-154
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    • 1996
  • In an attempt to recycle as feed or fertilizer, broiler litter containing rice hull was manually composted under the control of peak temperature of piles(uncontrolled or controlled below $70^{\circ}C$ or below $60^{\circ}C$) in each of three $1.0\;{\times}\;1.0\;{\times}\;1.2m$ dimensional facilities. Changes of nutritional and microbiological parameters were evaluated throughout the 8 weeks of processing period. The initial content of crude protein(29.6%) decreased to 17.8% after 8 weeks of composting. The rapid nitrogen(N) loss observed in the early phase was attributed mainly to non-protein-N(NPN) loss. The initial content of ash(19.1%) increased to $26{\sim}29%$ after 8 weeks. For toxic heavy metals, Cr, Pb, and Hg contents of final composts were far less than the maximum tolerance levels allowed in food or compost. Bacterial growth was rather depressed until the second week, increased thereafter, and reached to peak($10^{12}cfu$ level) at the 4th week of composting. With composting, actinomycetes were active at the level of $10^7\;to\;10^9$. Fungi were active during the first to third week of composting. In general, control of pile temperature below $70^{\circ}C$ did not remarkably alter the nutritional and microbiological parameters of broiler litter compost, compared to that of pile temperature below $60^{\circ}C$. Further researches on prevention from the rapid loss of NPN in the early phase of composting are required for more effective recycling of broiler litter.

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