• 제목/요약/키워드: Livestock emissions

검색결과 92건 처리시간 0.02초

Measurement of greenhouse gas emissions from a dairy cattle barn in Korea

  • Eska Nugrahaeningtyas;So-Hee Jeong;Eliza Novianty;Mohammad Ataallahi;Geun Woo Park;Kyu-Hyun Park
    • Journal of Animal Science and Technology
    • /
    • 제65권2호
    • /
    • pp.459-472
    • /
    • 2023
  • Korea is currently developing country-specific emission factors to support the 2050 zero-carbon campaign. Dairy cattle represent one of the largest livestock industries in Korea, and the industry is estimated to continue increasing because of an increase in milk demand. However, country-specific emission factors for dairy cattle are currently only available for calculating methane (CH4) emissions from enteric fermentation. Two experiments were conducted to evaluate CH4 and nitrous oxide (N2O) fluxes from sawdust-bedded barn in dairy cow and steer, as well as dairy cattle manure composting lots. The greenhouse gas (GHG) fluxes were quantified using the open-chamber method and gas chromatography. CH4 fluxes from steer, dairy cow, and manure compost were 27.88 ± 5.84, 36.12 ± 10.85, and 259.44 ± 61.78 ㎍/head/s, respectively. N2O fluxes from steer, dairy cow, and manure compost were 14.04 ± 1.27, 4.11 ± 1.57, and 3.97 ± 1.08 ㎍/head/s, respectively. The result of this study can be used to construct country-specific data for GHG emissions from manure management. Thus, the application of mitigation strategies can be prioritized based on the GHG profile and targeted source.

2006 IPCC 지침을 적용한 농경지 온실가스 배출량 분석 (The Analysis of Greenhouse Gases Emission of Cropland Sector Applying the 2006 IPCC Guideline)

  • 박성진;이창훈;김명숙
    • 한국기후변화학회지
    • /
    • 제9권4호
    • /
    • pp.445-452
    • /
    • 2018
  • The field of agriculture, forestry, and other land-use (AFOLU) is concerned with greenhouse emissions of agriculture (crop and livestock), as is the field of land-use, land-use change, and forestry (LULUCF). The 1996 IPCC guideline and the 2006 IPCC guideline are used in combination for calculation of greenhouse gas emission from the agricultural sector, and the 2003 IPCC guideline is used for that from the land-use sector. In this research, we analyzed GHG emissions of the cropland sector in AFOLU based on the 2006 IPCC guideline. The results showed that GHG emissions of 1990 was $-504Gg{\cdot}CO_2-eq$, while that of the last year was $2,871Gg{\cdot}CO_2-eq$. Compared with the 2003 methodology, total emissions according to the 2006 IPCC was lower except in 1997 and 2003. This trend is due to difference of analyzed emission sources, lower default values, and global warming potential by the 2006 IPCC. The results are estimated using limited data at the Tier 1 level and the first issue to be solved is the activity data from the land-use change matrix. Although this result should be improved, it can be used as the basis for calculating GHG emissions of the AFOLU sector.

상세 공간단위 농업분야 온실가스 배출량 산정 방안 연구 (Estimating GHG Emissions from Agriculture at Detailed Spatial-scale in Geographical Unit)

  • 김솔희;전혜진;최지연;서일환;전정배;김태곤
    • 한국농공학회논문집
    • /
    • 제65권5호
    • /
    • pp.69-80
    • /
    • 2023
  • Carbon neutrality in agriculture can be derived from systematic GHG reduction policies based on quantitative environmental impact analysis of GHG-emitting activities. This study is to explore how to advance the calculation of carbon emissions from agricultural activities to the detailed spatial level to a spatial Tier 3 level (Tier 2.5 level), methodologically beyond the Tier 2 approach. To estimate the GHG emissions beyond the Tier 2.5 level by region for detailed spatial units, we constructed available activity data on carbon emission impact factors such as rice cultivation, agricultural land use, and livestock. We also built and verified detailed data on emission activities at the field level through field surveys. The GHG emissions were estimated by applying the latest national emission factors and regional emission factors according to the IPCC 2019 GL based on the field-level activity data. This study has significance that it explored ways to build activity data and calculate GHG emissions through statistical data and field surveys based on parcels, one of the smallest spatial units for regional carbon reduction strategies. It is expected that by utilizing the activity data surveyed for each field and the emission factor considering the activity characteristics, it will be possible to improve the accuracy of GHG emission calculation and quantitatively evaluate the effect of applying reduction policies.

미이용 해조류를 활용한 축우용 사료화에 따른 경제성과 환경성 분석 (Economic Feasibility and Environmental Implications for the Use of Seaweed By-products as Feed for Ruminants)

  • 김남리;황일기;김삼철;주영호;김신권
    • 한국수산과학회지
    • /
    • 제57권4호
    • /
    • pp.336-341
    • /
    • 2024
  • In this study, the economic and environmental feasibility of seaweed by-products as livestock feed ingredients was evaluated. In the last three years (2021-2023), the estimated average annual production of domestic seaweed by-products, including processing residuals from sea mustard and kelp, was 210,000 tons. The economic feasibility analysis of using seaweed by-products as livestock feed indicated a net benefit of 482,237 KRW per ton. Additionally, substituting seaweed by-products at 0.25% 0.5%, 1%, and 2% in livestock compound feed generated net benefits of 6.5, 12.9, 25.9, and 51.7 billion KRW, respectively. The potential market value was analyzed from an environmental perspective by examining the greenhouse gas reduction potential of seaweed additives. By adding 2% laver, 2% sea mustard, and 0.25% sea mustard sporophyll to the feed, greenhouse gas emissions could be reduced by economic values estimated at 10.8, 11.4, and 15.6 billion KRW, respectively. The findings of this study suggest that the use of seaweed by-products livestock as feed ingredients can generate economic and environmental benefits.

가축 장내발효에 의한 국가단위 메탄 배출통계에 관한 연구 (National Methane Inventory Relevant to Livestock Enteric Fermentation)

  • 이현정;이상철
    • Journal of Animal Science and Technology
    • /
    • 제45권6호
    • /
    • pp.997-1006
    • /
    • 2003
  • 본 연구는 우리나라에서 가축 장내발효에 의한 메탄배출 통계 기반을 구축하기 위해 수행되었다. 메탄 배출량을 추정하기 위해 가축은 소, 돼지, 가금, 면양, 산양으로 대분류하였고, 소는 한우와 젖소로 분류하여 각각 한우 송아지, 한우 비육우, 한우 번식우, 젖소 송아지, 젖소 비육우, 착유우로 세분류하였다. Tier 2 방법에 의한 메탄 배출계수는 각 세분류 집단의 가축의 생산성, 생체중, 도체중, 일당 증체량, 소화율을 근거로 하여 산출되었다. 한우의 배출계수는 39~49kg/head/year 정도로 IPCC에서 제시한 Tier 1의 47kg/head/year과 유사한 수준이었고, 젖소의 배출계수는 107 kg/head/year로 Tier 1 배출계수, 118kg/head/ year 보다 다소 낮게 나타났다. Tier 2 방법으로 추정한 가축 장내발효에 의한 메탄 배출량은 2001년, 총 126.8톤이었고 각 세분류별 메탄 배출량은 한우, 젖소, 돼지, 면양, 산양, 말에서 각각 61.70, 47.76, 13.08, 2.25, 0.17, 0.01 톤으로 나타났다. 본 연구에서 온실가스 배출추정 방법으로, Tier 1을 Tier 2로 대체하므로써 우리나라 가축 장내발효에 의한 메탄배출 통계의 정확성과 신뢰성이 개선된 것으로 사료된다.

강제환기식 양돈시설의 암모니아 및 미세먼지 배출계수 산정 (Estimation of Particulate Matter and Ammonia Emission Factors for Mechanically-Ventilated Pig Houses)

  • 박진선;정한나;홍세운
    • 한국농공학회논문집
    • /
    • 제62권6호
    • /
    • pp.33-42
    • /
    • 2020
  • Emission factors for ammonia and particulate matters (PMs) from livestock buildings are of increasing importance in view of the environmental protection. While the existing emission factors were determined based on the emission inventory of other countries, in situ measurement of emission factors is required to construct an accurate emission inventory for Korea. This study is to report measurements of ammonia and PMs emissions from mechanically-ventilated pig houses, which are common types of pig barns in Korea. Ventilation rates and concentrations of ammonia and PMs were measured at the ventilation outlets of a weaner unit, a growing pig unit and a fattening pig unit to calculated the emission factors. The PMs emission was characterized with different aerodynamic diameters (PM2.5, PM10, and total suspended particulates (TSP)). The measured ammonia emission factors for weaners, growing pigs and fattening pigs were 0.225, 0.869 and 1.679 kg animal-1 yr-1, respectively, showing linear increase with pigs' age. The PMs emission factors for three growing stages were 0.023, 0.237 and 0.241 kg animal-1 yr-1, respectively for TSP, 0.017, 0.072 and 0.223 kg animal-1 yr-1, respectively for PM10, and 0.011, 0.016 and 0.151 kg animal-1 yr-1, respectively for PM2.5. PMs emissions were increased with pigs' age due to increasing feed supply and animal movement. The measured emission factors were smaller than those of the existing emission inventory indicating that the existing ones overestimate the emissions from pig buildings and also suggesting that long-term in situ monitoring at various livestock buildings is required to construct the accurate emission inventory.

Comparison of In vivo and In vitro Techniques for Methane Production from Ruminant Diets

  • Bhatta, Raghavendra;Tajima, K.;Takusari, N.;Higuchi, K.;Enishi, O.;Kurihara, M.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제20권7호
    • /
    • pp.1049-1056
    • /
    • 2007
  • This study was conducted to compare the methane ($CH_4$) production estimated by in vivo (sulfur hexafluoride tracer technique ($SF_6$)) with that of two in vitro rumen simulation (RUSITEC) and gas production (IVGPT)) techniques. Four adult dry Holstein cows, aged $7.4{\pm}3.0$ years and weighing $697{\pm}70$ kg, were used for measuring methane production from five diets by the $SF_6$ technique. The experimental diets were alfalfa hay ($D_1$), corn silage + soybean meal (SBM) (910: 90, $D_2$), Italian rye grass hay +SBM (920: 80, $D_3$), rice straw +SBM (910: 90, $D_4$) and Sudan grass hay +SBM (920: 80, $D_5$). Each diet was individually fed to all 4 cows and 5 feeding studies of 17 d each were conducted to measure the methane production. In the RUSITEC, methane production was measured from triplicate vessels for each diet .In vitro gas production was measured for each of the diets in triplicate syringes. The gas produced after 24 and 48 h was recorded and gas samples were collected in vacuum vials and the methane production was calculated after correction for standard temperature and pressure (STP). Compared to the $SF_6$ technique, estimates of methane production using the RUSITEC were lower for all diets. Methane production estimated from 24 h in vitro gas production was higher (p<0.001) on $D_1$ as compared to that measured by $SF_6$, whereas on $D_2$ to $D_5$ it was lower. Compared to $SF_6$, methane production estimated from 48 h in vitro gas production was higher on all diets. However, methane estimated from the mean of the two measurement intervals (24+48 h/2) in IVGPT was very close to that of $SF_6$ (correlation 0.98), except on $D_1$. The results of our study confirmed that IVGPT is reflective of in vivo conditions, so that it could be used to generate a database on methane production potential of various ruminant diets and to examine strategies to modify methane emissions by ruminants.

순천시의 폐사가축 처리실태에 관한 연구 (Farm Animal Mortality Management Practices in Sunchon-si)

  • 홍지형
    • 한국축산시설환경학회지
    • /
    • 제16권3호
    • /
    • pp.245-252
    • /
    • 2010
  • 축산업의 대규모 전업화로서 폐사가축이 급증되어서 대기, 수질, 토양, 지하수 등의 환경오염 및 쥐. 파리. 까마귀 등의 썩은 고기를 좋아하는 위해동물 번식으로 인하여 자연환경이 오염되어가고 있다. 전라남도 순천 지역 중심의 축종별 호당 연간평균 사육두수는 양계농가 251,000마리, 양돈농가 2,600두, 한우농가 142두 및 낙농가 92두 등 이었으며, 호당 연간추정 폐사가축 발생량은 양계농가 0.46톤, 양돈농가 15.32톤, 한우농가 0.36톤 및 낙농가 1.33톤 등이었다. 순천지역 축산농가의 연간 추정 폐사가축 발생량은 2,754톤 이였으며, 특히 양돈농가 폐사가축 발생량은 1,287톤으로 전체발생량의 47%를 차지하였다. 폐사가축 처리방식은 산지와 과수원 등에 매몰처리 (42%)와 축분에 투기처리 (36%)가 대부분 (78%)이며, 개별농가 사정에 따라서 렌더링, 간이소각, 침지소화 및 사체처리기 등이 활용되었다. 폐사가축처리시설 선정은 매몰처리로 발생하는 수질 및 대기오염, 위해동물 발생, 질병확산 위험 등이 없고, 처리비용이 다른 방법보다 저렴한 폐사가축 퇴비화시설 도입이 필요하였다.

탄소순환마을의 이산화탄소배출량 조사연구 (경상북도 봉화군 춘양면 서벽리를 중심으로) (Inventory of Carbon Dioxide Emission in Carbon Cycle Community (The case study on Gyeongbuk Bonghwa-gun Chunyang-myeon Seobyeok-ri))

  • 김효진;변우혁;임민우;박원경;김민수
    • 한국산림과학회지
    • /
    • 제99권4호
    • /
    • pp.597-602
    • /
    • 2010
  • 산림탄소순환마을 조성을 위한 가장 기본적인 사항은 온실가스 배출에 관한 통계인데 현재 시 도 단위의 온실가스 배출 통계는 존재하나 마을단위의 온실가스 배출에 관한 통계가 없다. 따라서 본 연구에서 마을단위의 온실가스 배출량에 대한 자료를 구축하여 탄소순환마을의 탄소수지에 관한 모델을 제시하고자 하였다. 연구수행결과, 시범대상지인 경상북도 봉화군 춘양면 서벽리의 에너지사용에 따른 이산화탄소 배출량은 $1,755tCO_2$이며 그 중 난방 사용에 의한 배출량이 55%로 가장 많은 비중을 차지하며 전력 23%, 차량 22%의 순으로 나타났다. 벼농사와 가축 등 농업으로 인해 총 $572tCO_2$의 이산화탄소가 배출되었다. 이는 에너지 사용과 농업부문에서 발생하는 이산화탄소 총 배출량 $2,327tCO_2$의 약 24.5%를 차지했다. 또한, 모델지역에서 사용되는 난방에너지를 우드칩이나 펠릿 등 목재 바이오에너지로 대체할 경우 년간 약 1,580 ton의 목재가 소비될 것이며 난방에서 발생하는 이산화탄소배출량은 $964tCO_2$의 1/12인 $80tCO_2$$884tCO_2$ 만큼의 탄소가 저감 될 것으로 예상된다.

Control of Methane Emission in Ruminants and Industrial Application of Biogas from Livestock Manure in Korea

  • Song, Man-K.;Li, Xiang-Z.;Oh, Young-K.;Lee, Chang-Kyu;Hyun, Y.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제24권1호
    • /
    • pp.130-136
    • /
    • 2011
  • Methane is known to be one of the major greenhouse gases. On a global scale, livestock farming may contribute 18% of total greenhouse gas emissions. Though methane contribution is less than 2% of all the factors leading to global warming, it plays an important role because it is 21 times more effective than carbon dioxide. Methane emission is a direct result of the fermentation process performed by ruminal microorganisms and, in particular, the archael methanogens. Reducing methane emission would benefit both ruminant production and the environment. Methane generation can be reduced by electron-sink metabolic pathways to dispose of the reducing moieties. An alternative way for methane control in the rumen is to apply inhibitors against methanogens. Generating methane from manure has considerable merit because it appears to offer at least a partial solution to two pressing problems-environmental crisis and energy shortage. An obvious benefit from methane production is the energy value of the gas itself. Control of methane emission by rumen microbes in Korea has mainly been focused on application of various chemicals, such as BES and PMDI, that inhibit the growth and activity of methanogens in the rumen. Alternatives were to apply long-chain polyunsaturated fatty acids and oils with or without organic acids (malate and fumarate). The results for trials with methane reducing agents and the situation of biogas production industries and a typical biogas plant in Korea will be introduced here.