• 제목/요약/키워드: livestock manure treatment facility

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국내 가축분뇨 처리시설 형태별 특성조사 분석 (A Study on the Characteristics of Livestock Manure Treatment Facility in Korea)

  • 정광화;김중곤;;한덕우;곽정훈
    • 유기물자원화
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    • 제22권4호
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    • pp.28-44
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    • 2014
  • 국내 경제성장에 힘입어 최근 30여 년 간에 걸쳐서 축산물 소비가 급격하게 늘어나고 있다. 이에 따라 국내 가축 규모는 전업화, 대형화 되는 추세에 있다. 가축 사육두수의 증가는 필연적으로 가축분뇨 발생량 증가를 초래하게 되었다. 농림축산 통계에 따르면 2013년 말 기준으로 약 47,235천 톤의 가축분뇨가 발생되었다. 이 분뇨를 처리하기 위해서 퇴비화, 액비화, 정화 그리고 혐기소화와 같은 다양한 가축분뇨 처리방법이 적용되고 있다. 가축분뇨를 퇴비화 처리 하는 시설에 있어서는 에스컬레이터식, 패들식, 스크루식 또는 로타리식 등의 4가지 종류의 교반시설이 적용되고 있다. 가축분뇨 액비화 시설의 경우에는 호기적 방법과 무산소적 방법 등의 2가지 시설이 운영되고 있다. 가축분뇨를 액비화하기 위해서 전국에 약 8천기에 달하는 액비화 시설이 설치, 운영되고 있다. 가축분뇨 정화처리 시설에서는 고액분리 처리, 2차 처리 그리고 고도 처리의 3가지 단계의 기술을 적용하고 있다. 2012년 말 기준으로 볼 때 혐기소화 처리방법에 의해서 처리된 돼지분뇨 슬러리는 약 21천 톤에 달한다. 가축분뇨 처리를 위해서 퇴비, 액비, 정화 시설, 혐기소화 시설 등을 선택함에 있어서 악취제거 효율을 높이는 것이 대단히 중요한 사안이 되었다. 본 연구에서는 국내에 설치된 가축분뇨처리 시설의 특징과 운영방식을 6년간에 걸친 시설 설치관련 서류 검토와 현장조사를 통하여 분석하였다.

우리나라 공공하수처리시설 및 가축분뇨공공 처리시설의 인(P) 유입부하량에 대한 총량평가 (Total assessment for phosphorus input load of public wastewater and livestock manure treatment facilities in Korea)

  • 김원재
    • 상하수도학회지
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    • 제32권4호
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    • pp.325-335
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    • 2018
  • The annual total phosphorus load caused by public wastewater, nightsoil and livestock manure treatment facilities in Korea has been examined macroscopically. Annual domestic average phosphorus (P) inflows through the income of phosphate rock for the last five years (2012 - 2016) were analyzed as 76,598 tons/year. As of the year 2015, the total loadings of phosphorus attributed to public wastewater treatment facilities, nightsoil treatment facilities and livestock wastewater were estimated as 30,269 tons/year, 1,909 tons/year and 18,138 tons/year, respectively. Considering the amount of phosphorus imports, the annual phosphorus load from wastewater, livestock wastewater and excretions is equivalent to 39.5%, 23.7%, 2.5% and totally 65.7%(39.5% + 23.7% + 2.5%). Therefore, the introduction of phosphorus recovery and recycling processes for the public wastewater and livestock manure treatment facilities has been found to be effective because it could reduce the import amount of phosphate rock by up to 60% or more.

NIER-MASS 프로그램을 이용한 가축매립지 침출수 연계처리 방안 연구 (A Study on Treatment Measures of Carcass Disposal Site Leachate into the Livestock Manure and Sewage Treatment Facilities using NIER-MASS program)

  • 정동환;이철구;신진수;김현우;윤수향;김용석;유순주;김신조
    • 환경영향평가
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    • 제21권5호
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    • pp.725-734
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    • 2012
  • The outbreak of foot and mouth disease in November 2010 raised many social, economic and environmental issues and water contaminations by leachate from carcass disposal sites particularly emerged as a serious concern. In oder to efficiently handle these problems, a critical method is required to transport leachate to livestock manure and sewage treatment plants and purify it. This study aims to present the best applicable method to transport leachate from carcass disposal sites into livestock manure and sewage treatment facilities. We investigated the biological and chemical characteristics such as BOD, COD, SS, TN, TP and Total coliforms. Current conjugated treatments in livestock manure and sewage treatment plants was studied by surveying the operations of those facilities. The NIER-MASS(National Institute of Environmental Research - Mass Balance Evaluation System of Sewage Treatment Facilities) program was applied to present the best conjugated treatment method through estimating the maximum daily load to meet the water quality standards in effluent.

국내 가축분뇨 혐기소화시설 현황 및 운영실태 분석 (Status of Anaerobic Digestion Facility for Pig-slurry in Korea)

  • 정광화;김중곤;한덕우;곽정훈
    • 한국축산시설환경학회지
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    • 제20권1호
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    • pp.27-34
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    • 2014
  • This study was conducted to survey and inspect the currently operating anaerobic digestion facilities for animal manure. Recently, the number of anaerobic digestion facility for livestock manure is on the rise thanks to growing interest in developing alternative energy. A anaerobic digestion system has been constructed in large scale farms or animal manure public resource center. Currently, most animal manure anaerobic digestion facilities in operation are producing biogas from the pig slurry which contains 97% water. Methane gas can be used to operate a engine generator which then produces electricity. Anaerobic digestate, a by-product of digestion, is mostly utilized as a liquid fertilizer after curing processing. Only in a few cases, it can be discharged after wastewater treatment process. The problem of anaerobic digestate treatment is the imbalance of C/N ratio. The content of N was too high to keep it into normal process.

논문 - 바이오가스화 도입을 위한 양돈농가 가축분뇨 발생 및 특성분석 (Generation and Characteristics Analysis of Swine Manure for Introducing Biogas System)

  • 최은희;윤영만;김창현
    • 한국관개배수논문집
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    • 제18권2호
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    • pp.25-32
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    • 2011
  • The 21 livestock farms considering future installation of biogas systems were studied. These farms were examined how to raise the livestock, to treat manure, to operate facility with respect to manure characteristics. The 15 farms out of 21 farms have applied to the marine dumping and consignment treatment for treating manure and even farms which have equipped liquid fertilizing system have less capacity facility than legal standards. Characteristics of manure were affected by the scale of swine barn, clean water usage, frequency of cleaning, cleaning method, feces-urine separating method, etc. Retention time in storage (over 20 days) has resulted in lower concentration of organic matter which could reduce biogas production. This indicates that systematic barn management system is required. Inhibition tests showed that disinfectant and citric acid did not affected digestion rates at 10 times higher concentration than recommendation. However hypochlorous acid is likely to affect the anaerobic microbial activity.

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축사와 퇴비 시설 취기제어를 위한 생물학적 탈취 기술의 적용 (Biofiltration Technology Application for Livestock and Compost Facility Odor Control)

  • 홍지형
    • 한국축산시설환경학회지
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    • 제6권3호
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    • pp.153-160
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    • 2000
  • Odor control for livestock and compost facilities has focused on manure handling and treatment during storage and land application, however, large amount of malodorous air is emitted and it is one of main sources of malodour in livestock farming. Biological treatment or biodegradation involves converting an organic contaminant to carbon dioxide and water using natural bacteria. Biofiltration is an effective air pollution control technology that uses microorganisms to breakdown gaseous contaminants and produce innocuous end products. Investment and operating costs on the biofiltration are lower than for thermal and chemical oxidation processes. This paper is intended to provide an overview of basic design and operating criteria for biofilters to control odors from livestock and compost facilities.

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가축분뇨수의 무단방류가 샛강오염에 미치는 영향 (Impact of Livestock-production Wastewater on Water Pollution)

  • 최홍림;손재호;류순호
    • 농촌계획
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    • 제2권1호
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    • pp.69-78
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    • 1996
  • Environmental impact assessment survey reflecting farmers` opinion on the residence and production space in rural settlement area by ORD showed that more than 86% of respondents thought their reservoirs and waterways (small rivers) were getting seriously contaminated primarily by garbage and livestock manure. A typical rural settlement unit was taken to assess the impact of improper management of livestock manure in the farms on the water quality of small river flowing down along the villages where swine and dairy farms were situated in Daejook 2, 3-ri, Seolseong-myun, Icheon-gun. Nitrogen compounds such as NO$_3$-N, NO$_2$-N, NH$_3$-N, and phosphorus compound H$_x$PO$_4$, DO, BOD$_5$, COD, and microbial density were analyzed to evaluate water quality at five test sites designated along the water stream. Tests showed. for example, BOD$_5$ at site 4 was average 9.2mg/l which was about 3~8 times higher than that of observation site 2 and 3, at which most livestock houses were situated. This is a clear evidence that the nutrients of livestock manure illegally discharged to small river can lead to an eutrophication of the river at downstream. A soil absorption system with aeration could be one of alternatives to treat the contaminated wastewater by livestock manure. The place at downstream, inbetween observation site 1 and 2, could be the best construction site for the treatment facility from the standpoint of the overall treatment efficiency, An enclosed composting system can also be regarded as a good alternative for treatment of the sludge which is the by-product of the soil absorption system operation.

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가축분뇨 해양투기 금지 전후 하천 수질 변동 경향성 분석 (Trend Analysis for River Water Quality Change Before and After the Prohibition of Ocean Dumping of Livestock Manure)

  • 최현미;조용철;이보미;류인구;김상훈;신동석;유순주
    • 한국물환경학회지
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    • 제37권2호
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    • pp.75-91
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    • 2021
  • Ocean dumping manure was prohibited in Korea until the end of 2012. Undumped manure was treated by resourcification, purification, and public process in a facility. But poor storage of untreated manure and overproduced compost can pollute river water. In this study, linear regression, Mann-Kendall, Seasonal Mann-Kendall, LOWESS trend, and Spearman's correlation analysis were conducted for investigating the changes in the water quality of Bukhan and Imjin river before and after the prohibition of ocean dumping. In 2017, the Imjin Riv er basin had more than 5.7 times liv estock breeding heads than the Bukhan Riv er basin and more than 3.5 times livestock manure. The areas of land, farmland, and nutrient balance were also higher in the Imjin River basin. Since the two basins have different environments, it is expected that the characteristics of changes in water quality due to the increase in livestock manure generation and treatment methods will be different when comparing the water quality trends before and after the ban. The result of the trend analysis revealed a decrease in EC before the ban but an increase afterward. T-N and BOD of Imjin river increased slightly before the ban but demonstrated great enhancement thereafter. Other sites and T-P exhibited no trend. The correlation analysis result showed that the increase in the number of livestock rearing was correlated with the increase in T-P of Bukhan River and BOD of Imjin River. The increase in livestock manure production was not correlated with the Imjin River basin, while a correlation was observed with the Bukhan River with an increase in T-N and EC and the decrease in T-P.

가축분뇨처리시설과 연계한 상향류식 인공습지의 자연형 후속처리공정 적용방안에 관한 연구 (A study on application of eco-friendly follow-up process connected with livestock wastewater treatment plant using the upflow constructed wetland)

  • 최한나;조은하;강호근;박주현;강선홍
    • 상하수도학회지
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    • 제29권3호
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    • pp.359-370
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    • 2015
  • This study developed an up-flow wetland providing either an eco-friendly follow-up process of medium-sized public treatment facility for livestock manure or a non-point source pollution controller near livestock farms. The four bench-scale up-flow wetlands were operated with four different bed media sets. The removal efficiencies of the wetland effluent for CODCr, TN, TP, SS were 35.2 %, 29.5 %, 31.2 % and 52.2 % for set 1(Blank, without reed, with bio-ceramic), 40.6 %, 43.4 %, 42.2 % and 55.4 % for set 2(with bio-reed & without bio-ceramic), 45.2 %, 48.7 %, 46.6 % and 66.3 % for set 3(with bio-reed & bio-ceramic), 32.9 %, 27.3 %, 29.3 % and 54.1 % for Set 4(with reed & bio ceramic), respectively. The set 3 condition having a mixture of bio-reed and bio-ceramic showed the highest efficiency in the bench-scale evaluation. This study suggests a mixture of bio-reed and bio-ceramic as suitable bed media in the construction of artificial wetlands near livestock farms. Soils including the bed media were monitored during the evaluation for trace elements. Soil analysis results were satisfied with the Korean Soil Contamination Standard. This study showed that the up-flow constructed wetland was feasible to treat the effluent livestock wastewater treatment facility.

호기성 액비화 발효열을 가정한 폐열회수시스템 구성 및 활용 연구 (A Study on Composition and Utilization of Waste Heat Recovery System Assuming Aerobic Liquid-composting Fermentation heat)

  • 임류갑;장재경;강태경;손진관;이동관
    • 한국산학기술학회논문지
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    • 제22권4호
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    • pp.56-66
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    • 2021
  • 본 연구에서는 가축분뇨 처리시설의 호기성 액비화 과정에서 발생하는 열을 회수하기 위한 폐열회수 시스템을 고안하여 시스템을 구성하는 요소 장치의 성능을 분석하였다. 또한, 회수된 열의 활용 가능성을 확인하였다. 실험 설정을 위해 가축분뇨 처리시설의 액비 발효조에서 발생하는 발효열을 확인하였다. 호기성 액비화를 위한 발효조의 온도가 균일성을 나타낸 특성과 34.5 ~ 43.9 ℃의 범위에서 운영되는 점을 고려하여 실험 온도 수준을 35, 40, 45 ℃로 설정하였다. PE 및 STS 파이프로 구성된 복합열교환기는 53.5, 65.6, 74.4 MJ/h 열에너지를 회수하고, 5 RT 용량의 히트펌프는 95.6, 96.1, 98.9 MJ/h 열에너지를 축열 하였으며, 이때 히트펌프의 난방성능계수는 4.53, 4.62, 4.65이었다. 발효조의 온도를 45 ℃로 가정한 열교환기의 최대 온수 생산능력을 급탕량 산정 방법으로 비교했을 때 56 360 kcal/day의 에너지 공급량을 확인하였다. 축열조와 연계된 FCU의 온풍 난방능력은 20.8 MJ/h, 에너지 이용효율은 96.1 %였다. FCU의 온풍으로 퇴비를 건조하였을 때 초기함수율 50.5 %에서 건조 후 함수율 45.8 %로 4.7 % 감소함을 확인할 수 있었다.