• 제목/요약/키워드: Pig House

검색결과 119건 처리시간 0.033초

열펌프를 이용한 슬러리 돈분뇨 증발건조처리시스템 개발 (Development of Heat Pump Use Slurry Pig Manure Evaporation Drying System)

  • 김현태;최홍림
    • Journal of Biosystems Engineering
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    • 제30권1호
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    • pp.32-37
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    • 2005
  • This study was conducted the slurry pig manure treatment by condensation drying of liquid from the slurry manure with a heat-pump and electric heater combined with air flow channel system. The system was designed as liquid and solid matters separation of slurry manure, and it can doing continuous input of slurry manure from a pig house, and it can operated year round use for pig farms. The separation of liquid and solid matters from slurry manure needed the prevention of solid accumulation in the system. The system was designed as closed space from outside air space for maximized evaporation of liquid and the condensation of liquid from slurry manure. The system can be operated the pig slurry manure treatment regardless of seasons in a yew. The separated evaporation water from the pig slurry manure by the heat-pump was satisfactorily pure water that can be used as washing water in livestock farms. The system can applicate to about 100 heads of pig, and the proper area of evaporation plate system was considered around $10\;m^2$. The input electrical energy of about 15 kWh which the cost equal to 250,000 won per month.

양돈장의 소모성질병 확산 분석을 위한 현장 모니터링 및 공기유동학적 분석 (Aerodynamic Approaches for Estimation of Waste Disease Spread in Pig Farm through Airborne Contaminants)

  • 서일환;이인복;문운경;권경석
    • 한국농공학회논문집
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    • 제56권1호
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    • pp.41-49
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    • 2014
  • Pig chronic wasting disease, including porcine reproductive and respiratory syndrome (PRRS) and postweaning multisystemic wasting syndrome (PMWS), have made a continuous economic damage in pig farms. Airborne spread of livestock viruses are an important spread factor which is difficult to analyze due to invisible airflow and limitation of measurement. The objective of this study is to analyze airborne disease spread between buildings in the experimental pig farm by means of field experiment and computational fluid dynamics (CFD). The field experiments were conducted to capture airborne virus using air sampler and teflon filter along multi points in the experimental pig farm. The samples were tested in terms of virus detection resulting in positive reaction for PRRS and PCV-2 viruses, which can be a firm evidence of airborne virus spread. The CFD simulation model was developed by considering complex topography, wind conditions, building arrangement, and ventilation systems and was used to analyze airborne virus spread according to different wind conditions. The CFD computed result showed a possibility of airborne virus spread via livestock aerosol from infected pig house to neighboring pig houses according to wind directions. The CFD simulation technique is expected to provide significant data for estimating and making a counterplan against airborne disease spread.

돈분발효퇴비의 부숙기간이 상추 생육에 미치는 영향 (Effects of Maturation Periods of Pig Manure Composts on Growth of Leaf lettuce(Lactuca safiva L.))

  • 박창규;이영상;조광래;원선이;최영진
    • 한국유기농업학회지
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    • 제9권1호
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    • pp.17-27
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    • 2001
  • To clarify the proper and safe duration of maturation periods for sawdust-pig manure composts, leaf lettuces were applied with pig manure composts fermented for 15, 30, 45, 60, 75 days and 1 year (control) and cultivated in a plastic house with or without additional PE film tunnel. The changes in physiochemical properties of soil and leaf lettuce growth were measured. Shorter duration of maturation periods enhanced the generation of N $H_3$ gas from the composts and resulted in significant decrease in seed germination, growth and yield of leaf lettuce. Under with and without PE tunnel conditions the concentration of N $H_3$ from compost over 3.8 and 2.1 mg/100g composts, respectively induced growth reduction. In proportion to the increase of maturation duration saw-dust containing pig manure exhibited decrease in C/N ratio, N $H_4^{+}$-N, N $H_4^{+}$N $O_3^{-}$ ratio but increase in N $O_3^{-}$-N contents. In case of applying pig manure compost without PE film tunnel condition the minimum maturation period of pig manure composts for safe leaf growth was 60 days, while minimum 75 days of maturation was required when applied with PE film tunnel. tunnel.

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FIELD TEST INSTALLATIONS USING N$H_3$SENSOR AND VENTILATION RATE SENSOR FOR CONTINUOUS MEASUREMENT OF TOTAL AMMONIA EMISSION FROM ANIMAL HOUSES

  • Berckmans, D.;Ni, J.Q.
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1993년도 Proceedings of International Conference for Agricultural Machinery and Process Engineering
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    • pp.393-402
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    • 1993
  • Two field test installations are discussed. In the first one a new ammonia sensor and an accurate ventilation rate sensor are combined. They are installed in the exhaust chimney in a ventilated pig house. The relative humidity and the room temperature are measured as well. In the second one, an in situ NH$_3$longrightarrowNO converter with subsequent NOx analyser is also being added for accurate ammonia measurement . In this way , the continuous measurement of the total NH$_3$emission can be obtained , the performance of the NH$_3$ sensor can be evaluated, and the ammonia reduction techniques can be tested. The outputs of measurement are fed into a data acquisition system then to a PC in the laboratory. There has been realised the first test installation with which research on the new ammonia sensor is carried out. The primary research results are presented.

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압력손실을 고려한 양돈시설의 반폐회로 환기시스템의 환기량 및 혼합비율 평가 (Evaluation of Ventilation Rate and External Air Mixing Ratio in Semi-closed Loop Ventilation System of Pig House Considering Pressure Loss)

  • 박유미;김락우;김준규
    • 한국농공학회논문집
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    • 제65권1호
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    • pp.61-72
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    • 2023
  • The increase in the rearing intensity of pigs has caused deterioration in the pig house's internal environment such as temperature, humidity, ammonia gas, and so on. Traditionally, the widely used method to control the internal environment was through the manipulation of the ventilation system. However, the conventional ventilation system had a limitation to control the internal environment, prevent livestock disease, save energy, and reduce odor emission. To overcome this problem, the air-recirculated ventilation system was suggested. This system has a semi-closed loop ventilation type. For designing this system, it was essential to evaluate the ventilation rates considering the pressure loss of ducts. Therefore, in this study, pressure loss calculation and experiment were conducted for the quantitative ventilation design of a semi-closed loop system. The results of the experiment showed that the inlet through which external air flows should always be opened. In addition, it was also found that for the optimum design of the semi-closed loop ventilation system, it was appropriate to install a damper or a backflow prevention device rather than a ventilation fan.

무창자돈사의 공기유동 특성 분석 (Analysis of Airflow Characteristics in an Enclosed Nursery Pig House)

  • 송준익;최홍림;양창범;김현태
    • Journal of Animal Science and Technology
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    • 제47권1호
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    • pp.107-114
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    • 2005
  • Experiments were carried out to evaluate the air speed distribution of an enclosed nursery pig bay in summer and winter. The data taken by experiments were compared to validate with the calculated air speeds by a commercial CFD code, FLUENT. Air basically enters into the bay through perforated circular ducts overhanged on the ceiling, leaves through a exhaust fan attached on the end-wall of the bay. Air speeds were measured as 2 ${\sim}$ 2.5 mls at the perforated holes in the duct in winter and 7 mls in summer. The validation showed that a CFD simulaton is one of feasible methods to predict airspeed distribution in the nursery pig bay.

The Effect of Wet Pad and Forced Ventilation House on the Reproductive Performance of Boar

  • Chiang, S.H.;Hsia, L.C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권1호
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    • pp.96-101
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    • 2005
  • There were two trials involved in the experiment. Trial 1: the trial was conducted on two Taiwan Sugar Corporation (TSC) pig farms. One was located in the north of Taiwan and the other was located in the south. Both farms had wet pad and forced ventilation (WPFV) and conventional open design (COD) boar and sow houses. There were 12 Duroc boars, age ranging from 12-24 months. Half of them (6 boars) were raised in a WPFV pig house, and the other half were kept in a COD house. Semen was collected at 5-day intervals from May $1^{st}$ to the end of October. Sixteen sows (2-8 parity) were served by artificial insemination each week from the beginning of May to the end of Oct. These sows were checked for heat from 18 days to 25 days after insemination. Trial 2: there were four MPFV boar houses involved in the test. Two houses were located in the north of Taiwan, and the other two houses were located in the south. The test was conducted from January 2000 to December 2001. The total number of serviced sows by MPFV-housed boars was 35,105 head and for COD-housed boars 103,065 head. The results showed that the total semen volume, density of sperm, total sperm per ejaculate, sperm motility and morphological abnormality were significantly better (p<0.01) for boar raised in WPFV house than for COD houses. Average sperm motility in June and July was lower than for the other months. Morphological abnormality was higher during May, June and July. Although the results did not reach a significant level, the average value showed that the total volume of boar semen was higher in the north than for the south. The total semen volume production of boar raised in WPFV was higher than for boars raised in COD house, reaching a significant level only in summer. Boars kept in WPFV house had higher total sperm number than boars kept in COD house, reaching a significant level in spring (p<0.05), summer (p<0.01), and fall (p<0.05) but not in winter (p>0.05). Boars raised in WPFV house had significantly higher sperm motility than boars in COD house during spring (p<0.001), summer (p<0.001), fall (p<0.01) and winter (p<0.05). The average farrowing rate and piglets born alive were higher for boars in WPFV house than for boars in COD house, but neither reached a significant level (p>0.05). The present experiment shows that WPFV house can improve the reproduction performance of boars.

현장실험을 통한 축산시설로부터 배출되는 축산악취의 확산 평가 (Evaluation of Odor Dispersion from Livestock Building through Field Experiment)

  • 여욱현;이인복;하태환;데카노 크리스티나;김락우;이상연;김준규;최영배;박유미
    • 한국농공학회논문집
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    • 제61권6호
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    • pp.21-30
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    • 2019
  • Livestock odor is comprised of mixed type of odorous compounds. Among these, ammonia ($NH_3$) and hydrogen sulfide ($H_2S$) are the two known major odor causing substances. Because high odor concentration reduces productivity of livestock and causes damage to the surrounding communities, quantitative analysis is needed to manage the odor inside and outside the livestock facilities. It is also necessary to evaluate odor dispersion according to the distance between the receptors taking into account the influence of odor source and weather condition. Therefore, in this study, we tried to evaluate the internal environment and odor dispersion from experimental pig house considering weather conditions. An experimental farm was specifically selected to eliminate the interference of odors generated by adjacent farms. $NH_3$ and complex odor were quantitatively analyzed using a gas detector and air dilution sensory method. The concentration of $NH_3$ and complex odor in pig house showed a distinct concentration difference according to the cleaning and ventilation conditions. $NH_3$ concentration and complex odor was lower than emission standard in the pig house and at the site boundary. The average $NH_3$ concentration (P1~P3) and the $NH_3$ concentration at the site boundary (S1) were strongly correlated with R=0.77. While the correlation for complex odor inside and at the site boundary had R=0.52. The correlation coefficient between $NH_3$ and the complex odor was 0.80.

A Study on Ways to Improve the Smell of Pig Barn

  • Min-Jae JUNG;Su-Hye KIM;Young-Do KIM
    • 웰빙융합연구
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    • 제6권2호
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    • pp.9-13
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    • 2023
  • Purpose: In this study, we would like to make a technical proposal to solve the odor problem in pig houses. Through this, we would like to suggest an effective way to reduce the odor generated in the pig house as a solution to civil complaints. Research design, data and methodology: Conduct direct visits to pig farms where many civil complaints about bad odor occur, and identify the problems of each farm. Identify elements related to odor control, such as structure, facility, equipment, odor management method, and ventilation type. Through this, the technology to be applied to reduce odor and the solution to the odor problem are presented. Results: The results of major improvements are as follows: 1. Improvement of the structure of the barn or composting shed to an airtight type 2. Improvement of the pig manure treatment structure using the slope inside the barn 3. Establishment of ventilation and cooling systems 4. Automation of the mist spray system. Conclusions: As a result, as practical measures, sealing of facilities using winch curtains, construction of air conditioning systems using negative pressure ventilation, and management systems using AIoT systems were presented. It is judged that this study can be helpful in determining the grievances caused by civil complaints of tenant livestock farms and the direction of facility improvement in the future.

돈사 악취 저감을 위한 바이오필터 개발 (Development of Biofilter for Reducing Offensive Odor from Pig House)

  • 이승주;임송수;장동일;장홍희
    • 한국환경농학회지
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    • 제24권4호
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    • pp.386-390
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    • 2005
  • 국내에서 구입이 용이한 부숙수피와 펄라이트를 부피비 7:3으로 혼합하여 혼합충전재에 암모니아 산화균 Rhodococcus equi A3와 황 산화균 Alcaligenes sp. S5-5.2를 접종한 후, 개발한 양압식 상향류 방식의 바이오필터에 혼합충전재를 충전하여 돈사에서 발생하는 암모니아 및 황화수소에 대한 악취가스 제거성능을 실험을 실시하였다. 혼합충전재에 미생물을 접종한 후 72시간동안 순치하였을 때의 미생물 생균수와 24시간 간격으로 측정하였을 때의 미생물 생균수가 거의 같은 것으로 나타났다. 이는 개발한 바이오필터가 미생물의 생육조건을 유지하는데 성공했다고 판단된다. 또한 암모니아 가스의 유입농도는 평균 $22.8{\pm}5.2mgL^{-1}$이었고, 배출농도는 평균 $2.1{\pm}0.3mgL^{-1}$, 제거율은 90.8%이었다. 흐리고 황화수소의 유입농도는 평균 $2.7{\pm}1.2mgL^{-1}$이었고, 배출농도는 $0.5{\pm}0.2mgL^{-1}$, 제거율은 81.5%로 비교적 높았다. 이와 같이 부숙수피와 펄라이트를 혼합하여 만든 혼합충전재를 충전한 바이오필터가 악취가스 제거율이 비교적 높고 가격이 저렴한 것을 고려해 볼 때, 기존의 다른 충전재을 이용한 바이오필터보다 개발한 바이오필터가 양돈가에서 이용하는데 유리한 것으로 판단된다.