• 제목/요약/키워드: beef cattle manure

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가축분뇨로부터 아산화질소 배출량 산출 (Nitrogen Dioxide Emission from Livestock Manure Management)

  • 전병수;정종원;김태일;유용희;최동윤;곽정훈;박치호;이현정
    • 한국축산시설환경학회지
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    • 제9권1호
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    • pp.1-8
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    • 2003
  • 우리나라는 1998년도에 가축 사육두수가 감소되고 축산물 소비가 둔화되는 등 어려운 점이 많았으나 2012년까지 장기전망으로는 가축 사육두수가 축종에 관계없이 완만하게 상승될 전망이다. 분뇨분해에 의한 아산화질소 배출량은 고유의 분뇨처리시설 유형 점유형태에 대한 자료를 가지고 IPCC (2000)에서 제시하는 조건별 $N_2O$ emission factor 적용하여 산출하였으며 기준년도인 1990년도에 3.71 Gg이었으며 2005, 2010, 2015 및 2020년도에 5.84, 6.07, 6.23 및 6.53Gg으로 각각 추정되었고 기준년도에 비해 2005, 2010, 2015 및 2020년도에는 각각 57.4, 63.6, 67.9 및 76.0% 증가할 것으로 전망되었다. 아산화질소 배출을 줄이면 메탄배출이 오히려 증가하는 특성이 있어 아직까지는 아산화질소 배출저감을 위한 수단이 미약한 실정이며 추후 기술적인 검토가 필요하며 IPCC의 고정값을 사용한 것을 고유의 값으로 교체해야 하는 등 배출계수 (emission factor)의 정확도를 제고시켜나가야 한다는 과제를 안고 있다.

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우분의 저장온도, 저장기간, 톱밥의 혼합에 따른 메탄잠재량 변화 (Effect of storage temperature, period, and sawdust addition on the biochemical methane potential of cattle manure)

  • 임성원;김상미;김규형;김동훈
    • 유기물자원화
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    • 제29권1호
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    • pp.29-36
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    • 2021
  • 국내 유기성고형폐기물 중 우분이 가장 많은 에너지잠재량을 지니고 있으나, 바이오가스화에 대한 연구는 제한적으로 진행되었다. 특히, 우분이 저장 중에 일어나는 유기물의 분해 및 톱밥의 첨가량이 메탄잠재량에 영향을 미치는 영향에 대한 연구는 전무하다. 본 연구에서는 신선한 두 종류의 우분(한우분뇨, 젖소분뇨)을 저장 시 온도와 기간에 따른 우분내 유기물 함량의 변화, 그리고 그 과정 중에 발생하는 온실가스와 악취를 조사하였고, 저장 후 우분의 메탄잠재량과 톱밥 함유량에 따른 메탄잠재량도 알아보았다. 우분의 저장 온도에 따른 성상(VS, COD) 변화를 90일간 관찰한 결과, 20℃ 조건에서는 초기 우분 대비 약 10% 감소한 반면에 30℃ 조건에서는 약 30% 감소하였다. 유기물의 분해에 따라 메탄전환율 측면에서 한우분뇨의 경우 30℃, 90일 조건에서 메탄전환율이 약 10-13% 감소하였고 젖소분뇨의 경우 동일 조건에서 약 24% 정도 메탄전환율이 감소한 것으로 나타났다. 한편, 저장 기간 중 30℃에서의 온실가스 배출량이 20℃조건에 비해 약 3.3-3.8 배나 높게 나타났고, 악취 발생량은 29배 더 많았다. 전체 톱밥한우분의 전체 중량대비 톱밥 함유량이 25%만 되더라도 메탄전환율은 61% 감소하였으며 톱밥 함유량이 45%와 55%로 증가하면 저감 비율은 각각 69%, 75%으로 나타났다. 이는 톱밥의 첨가가 우분에서 전환될 수 있는 메탄잠재량값도 낮추는 즉 저해 작용 때문으로 판단된다.

전북 정읍지역 젖소농장 결핵병 집단 발생에 대한 역학조사 (Investigation on an epidemic of tuberculosis in dairy cattle farms In Jeongeup, Korea)

  • 윤하정;문운경;김연주;조범준;이수두;이정원;이상진
    • 대한수의학회지
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    • 제49권4호
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    • pp.309-317
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    • 2009
  • The present study describes an investigation on an epidemic of Tuberculosis (TB) which has been occurred among dairy cattle farms in Jeongeup, Jeollabuk-do since 2007. The investigation was performed in three ways as follows: 1. Collecting information about bovine TB outbreaks using investigation reports, an on-the-spot and tracing-back investigations; 2. Analyzing the outbreak pattern; 3. Establishing hypothesis and performing statistical analysis on potential risk factors. In the early 2000s, TB outbreaks were sporadically reported in beef cattle, and only a small number ($1{\sim}2$) of reactors was confirmed in each of outbreak farms. The number of TB outbreaks has been suddenly increased from 2007, mainly in dairy cattle farms. And these outbreaks were temporarily clustered during the period, from March 2007 to April 2009 (relative risk, RR = 13.7, p < 0.001). And two spatial clusters of which radiuses were 0.3 km (RR = 6.9, p < 0.001) and 0.9 km (RR = 3.6, p < 0.01). The analysis to find risk factors was performed on 99 dairy farms (21 outbreaks), which are located in the most seriously affected village during 2007-2009. Middleman (odds ratio, OR = 47.4, p < 0.05) and raw milk collecting system (OR = 6.9, p < 0.05) were recognized as with the highest association. Considering the fact that all the outbreak farms except one had their own manure composting tank, it might be that the manure containing pathogen was leaked from tank and transmitted to other farms by fomites such as middleman or raw milk collecting system.

2011년도 축산부문 온실가스 인벤토리 산정 연구 (Estimation of Greenhouse Gas (GHG) Emissions from Livestock Agriculture in Korea)

  • 양승학;최동윤;조성백;황옥화;박규현
    • 한국축산시설환경학회지
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    • 제20권4호
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    • pp.139-146
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    • 2014
  • This research was conducted to examine the temporal methane ($CH_4$) and nitrous oxide ($N_2O$) emission trends in livestock agriculture from year 1990 to 2011 with Tier 1 national greenhouse gas (GHG) inventory reporting method, which was related to efforts of decreasing GHG emissions and to achievement of voluntary GHG mitigation target. Methane emissions from enteric fermentation were calculated with default $CH_4$ emission factors of IPCC. Methane and $N_2O$ emissions from manure treatment processes were calculated with Tier 1 and mixture of Tier 1 and Tier 2 including $N_2O$ emission factors of manure treatment systems and nitrogen excretion rate of livestock, respectively. According to 2013 National GHG Inventory Monitoring, Reporting, and Verification report, GHG emission fluctuations from enteric fermentation and manure treatment processes were similarto livestock head fluctuation. GHG emissions from enteric fermentation were mainly affected by beef cattle including Hanwoo, while manure treatment processes were affected by various livestock.

가축분뇨의 자원화 용량 평가에 관한 연구 (A Study on Recycling Capacity Assessment of Livestock Manure)

  • 안태웅;최이송;오종민
    • 환경영향평가
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    • 제17권5호
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    • pp.311-320
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    • 2008
  • Reusing livestock manure have various advantages in securing soil organic resources, and since the costs needed for converting them into liquefied fertilizers are relatively moderate compared to normal treatment, such methods are necessary. In this study, the Recycling Capacity Assessment of Gyeonggi-do was carried out by comparing between the fertilizer demands for specific crops based on the cultivation areas and the amount of fertilizer resources that are generated from livestock manure. From this assessment, the possibility of obtaining resources by converting livestock manure into fertilizers were evaluated. The amount generated of Livestock Manure in Gyeonggi-do were evaluated by applying the emission units to the number of livestock manure. And from the amount generated of Livestock Manure, the amount of fertilizer produced from Livestock Manure were calculated by using the fertilizer a component rate. When considering the amount of fertilizer produced from Livestock Manure based on the type of livestock, N 6,626 ton/year, $P_2O_5$ 1,824 ton/year, $K_2O$ 4,480 ton/year were produced from milk cow manure, while N 5,247 ton/year, $P_2O_5$ 2,772 ton/year, $K_2O$ 2,879 ton/year, were produced from beef cattle manure. N 14,924 ton/year, $P_2O_5$ 7,205 ton/year, $K_2O$ 6,750 ton/year were produced from pigs and N 12,651 ton/year, $P_2O_5$ 4,458 ton/year, $K_2O$ 5,542 ton/year were produced by chickens. So the total amount of fertilizers that can be obtained from livestock manure were 3,668 ton/year Nitrogen, 16,259 ton/year phosphate and 19,651 ton/year kalium. And the total fertilizer demands in Gyeonggi-do were Nitrogen 27,200 ton/year, Phosphate 8,853 ton/year, and kalium 13,211 ton/year respectively. Nitrogen which had higher demands than production quantities were considered as limitation factors in crop growth. So the Recycling Capacity Assessment was carried out mainly based on Nitrogen. Since the Nitrogen quantities that can be provided by recycling livestock manure were 3,532 ton/year lesser than the Nitrogen demands, it is estimated that it would be desirable to convert livestock manure into resources. But in order to properly convert the entire livestock manure into organic resources, the seasonal situation that effects the nitrogen demands of crops along with the regional effects due to the industrial structures should be seriously analyzed. In addition, a system that can effectively produce and manage fertilizer should be established.

대청호 유역의 축산폐수 오염에 관한 연구 (Investigation for Pollution of Livestock Waste in Daechong Reservoir Area)

  • 이봉규;조우영;최윤식;심순보
    • 한국동물위생학회지
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    • 제15권2호
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    • pp.203-214
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    • 1992
  • Livestock waste causes ground and surface water pollution, eutrophication of reservoir as well as adverse affects living environment of those who dwell nearby. In order to investigate the pollution load from livestock waste, physical and chemical characteristics of the waste were determinded in the survey of livestock farms. Once pollution load is obtained as a function of the origin units of livestock, the influence of livestock waste on the Daecheong reservoir was studied. 1. For Daecheong reservoir inflow area, the liverstock manure productions of beef cattle swine, dairy cattle and chicken were 1,135.6t/day, 480t/day, 241.3t/day, 48t/day respectively; Beef cattle was the mai or source of the pollution. Pollution loading productions due to the livestock waste around the were found to be 53.31t/day for BOD, 222.49t /day for COD, 261.99t/day for T-S, 9.64t/day for T-N, 6.54t/day for T-P 2. Bocheong stream turnd out to be the major contribution for pollution loading production to Daecheong reservoir with 10,748kg /day of BOD, 47,157kg /day of COD, 1,946kg /day of T-N, 1,271kg /day of T-p. 3. Actual pollution loadings from livestock wastes for the area of Daecheong reservoir were estimated as 1,997kg /day(BOD), 8,546kg /day(COD), 364kg /day(T-N), 243kg /day (T-P), respectively Therefore, advanced treatment for livestock waste is recommended for Daectleong reservoir inflow area to eliminate the nutrients which are major sources of eutrophication of the reservoir.

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Comparison of OECD Nitrogen Balances of Korea and Japan

  • Kim, Seok-Cheol;Park, Yang-Ho;Lee, Yeon;Kim, Pil-Joo
    • 한국환경농학회지
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    • 제24권3호
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    • pp.295-302
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    • 2005
  • The nitrogen (N) balance in Korea during 1985-1997 was calculated according to the surface balance method of the PARCOM guidelines and compared with Japanese N balance. The some differences were founded in the coefficients used on calculating N balance in two nations. Of the important parameters, which can make a big difference in balance, N input by organic fertilizers was not included in Korea different with Japanese, due to absence of reliable statistics and then made lower the input. Nitrogen destruction rate from livestock manure was adjusted differently with 15% in Korea but 28% in Japan. There was some difference in the conversion factors of livestock number into manure N quantity in two nations, but the gap was ignoble scale except beef cattle. Our manure N production rate of beef cattle might be evaluated to be so lower than Japanese. Biological N fixation by pulses was very higher in Korea than in Japan but scarcely affect the increase of total N input, due to small cultivation area. In contrast, N fixation rate by free-living organisms in Korean and Japanese wet paddies showed the big difference with 7.6 and $37.0kg\;ha^{-1}\;yr^{-1}$, respectively, and therefore $29.4kg\;ha^{-1}\;yr^{-1}$ of nitrogen was estimated to be more inputted in Japan. Although there are many points to be more specified and improved, still, Korean N balance was very high with $250-257kg\;ha^{-1}$ in the mid of 1990s, which was the second highest level in OECD countries and furthermore increased continuously during the investigation. In contrast in Japan, which has similar fanning system with Korea, N balance was lower with $130-158kg\;ha^{-1}$ and has decreased continuously since 1993. This high N balance was mainly due to a high usage of chemical fertilizers in our intensive fanning system and the fast increment of livestock feeding. Therefore, the more active action to decrease chemical fertilizer utilization and reduce livestock feeding density is required in the government and farmer sides.

음식물쓰레기의 특성이 메탄생성량에 미치는 영향분석 (Effect of food waste properties on methane production)

  • 이수관;최홍림;이준희
    • 유기물자원화
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    • 제22권3호
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    • pp.11-22
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    • 2014
  • 음식물 쓰레기는 산완충능(buffer capacity)이 충분하지 않아 포집과 운송기간 동안 유기산이 축적될 수 있고 몰리브덴이나 코발트와 같은 미량원소가 부족할 수 있기 때문에 가축분뇨는 음식물 쓰레기와 혼합소화 시 부족한 메탄생성량을 보충할 수 있는 혼합기질로서 적합한 것으로 판단된다. 본 논문에서는 성공적인 혐기공정 설계 및 안정적 운영을 위한 우리 나라 유래 대상기질의 실제성상 특징과 메탄가스 발생사이의 상관성을 알아보고자 하였다. 서울시의 8개 기초자치단체(강남, 강동, 송파, 영등포, 관악, 구로, 동작, 용산)의 음식물 쓰레기 중간 집하장이나 처리시설에서 음식물 쓰레기를 채취하였다. 음식물 쓰레기의 고형물 함량은 평균 16%를 보였고 잠재 메탄발생량은 평균 $446.6STP-m{\ell}/g-VS$로서 $334.8{\sim}567.5STP-m{\ell}/g-VS$의 범위를 가진다. 우분의 고형물 함량과 잠재메탄 발생량은 각각 평균 26%과 $280.6STP-m{\ell}/g-VS$로 타나났다. 잠재 메탄발생량은 고위발열량, 지방 함량, 탄소함량, 수소함량과 양의 상관관계를 가지고 탄수화물 함량과 음의 상관관계를 가지는 것으로 나타났다($r^2&gt;0.8$). 따라서 이러한 기질특성 분석결과를 통해 잠재 메탄발생량을 비교적 정확하게 예측하였다. 본 연구에서는 단일 기질과 잠재 메탄발생량을 분석하였으나 향후는 최대 메탄발생량을 위하여 혼합기질 (음식물쓰레기, 가축분뇨, 수분조절제 등)의 최적조합을 결정하는 연구가 수행하여야 할 것으로 여겨진다.

충북 북부지역의 가축분뇨처리실태와 개선대책 (A Study on the Animal Waste Management in Northern Chungbuk Province and its Strategy)

  • 오인환;성시흥;이종현
    • 한국축산시설환경학회지
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    • 제10권3호
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    • pp.175-182
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    • 2004
  • A study was conducted to develop a management policy of animal waste in Northern Chungbuk province through investigating the status of animal waste management. In management of swine manure, rotary composting including a simple piling method has a portion of $64\%$ using as a liquefied fertilizer $18\%$, purification $9\%$ and ocean dumping $9\%$ respectively. Most of them use the animal waste as a fertilizer to the agricultural land. The exercise ground of dairy farms was bedded with $70\%$ of sawdust and $30\%$ of conventional soil ground besides the stall. They had a storage tank for the waste water from milking parlor. Korean beef cattle farms mostly run sawdust stall, which changed new one in a term of 6$\~$12 months. In case of layer, manure management was conducted in the order of simple piling method, rotary composting and ventilation into the piling mostly. Comparing the amount of excreted animal manure with that of possible spreading, the latter can be spread more than 2.9 times than the former in Northern Chungbuk province. The Northern Chungbuk province is an appropriate place to carry out an environmentally friendly animal production. An utilization model as a liquefied fertilizer should be developed for paddy field, upland field, orchard, and forage field to in-crease the value of animal waste effectively.

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광역친환경농업단지의 경축순환자원 양분관리 (Management of Recycled Nutrient Resources using Livestock Waste in Large-Scale Environment-Friendly Agricultural Complex)

  • 문영훈;안병구;정성수
    • 한국토양비료학회지
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    • 제45권2호
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    • pp.177-184
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    • 2012
  • 광역친환경농업단지의 경축순환자원 활용실태를 파악하기 위해 전북 완주군 고산광역친환경농업단지의 토양특성과 축분퇴비 소요량 등을 조사하였다. 주요작물 재배면적은 2,353 ha (벼 1,398 ha, 감 189 ha 등)이며 이 가운데 친환경 참여면적은 402.9 ha이고, 주요 축종사육은 한우 21,077, 젖소 1,099, 돼지 32,993마리 등 총 58,955 마리이었다. 경축자원화센터에 유입되는 분뇨는 한우, 돼지 각각 6,000 마리, 닭 200,000 마리 참여로 일일 32 Mg이고, 퇴비생산량은 연간 9,600톤이며, 비료성분은 T-N 1.4%, $P_2O_5$ 2.7%, $K_2O$ 2.1%, MgO 0.9%, CaO 2.5% 이었다. 친환경농업단지 내에서 소모되는 퇴비량은 6,588 Mg이었다. 친환경농업단지의 토양화학성분은 논의 경우 pH는 78.1%, 밭 58.2%, 과수원 60.3%, 비가림시설 재배지 62.1%가 적정범위였다. 유기물은 논의 경우 41.7%, 밭 46.5%, 과수원 40.5%, 비가림시설재배지 81.4%가 과잉으로 나타났다. 유효인산은 밭토양을 제외하고 64.9~91.7%가 과잉으로 나타났으며, 치환성 $K^+$, $Ca^{2+}$, $Mg^{2+}$은 과수원과 비가림시설재배지에서 53.2~70.2%가 과잉인 것으로 나타났다. 비가림시설 재배지의 토양화학성은 2년차 이후에 증가폭이 컸으며, 모든 농경지의 중금속 함량은 토양오염우려기준을 초과한 경우는 없었다. 친환경농업단지의 미생물분포는 일반농경지 보다 높았고, 호기성균의 경우 친환경농업단지의 밭과 과수원토양에서 가장 높았다.