• 제목/요약/키워드: Livestock manure sludge

검색결과 32건 처리시간 0.029초

국내산 유기자원 우각을 활용한 유기질비료의 작물 생육 및 수량에 미치는 영향 (Application Effects of Organic Fertilizer Utilizing Livestock Horn Meal as Domestic Organic Resource on the Growth and Crop Yields)

  • 장재은;임갑준;이진구;윤승환;홍상은;신기해;강창성;홍순성
    • 유기물자원화
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    • 제27권2호
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    • pp.19-30
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    • 2019
  • 본 연구는 국내산 우각이 혼합된 유기질비료를 개발하여 가장 많은 유기재배 면적을 차지하고 있는 벼를 포함하여 가지에 대한 시용효과를 조사하고 수입 유박을 대체할 유기자원으로 우각의 활용가능성을 구명하고자 실시하였다. 질소함량이 높은 국내산 유기자원 선발을 위하여 계분, 어분, 콩깻묵, 참깻묵, 들깻묵, 혈분, 우각, 맥주오니 등 8종을 분석하여 질소함량이 높은 유기자원을 선발하였고 보조제로 왕겨 바이오차, 미강 등을 원료별, 혼합비율별로 혼합하고 성분을 분석하여 유기농업에 사용 가능한 유기질비료 제조조건을 확립하였다. 우각은 전질소(T-N) 함량이 12.0 %로 높아 혈분 13.5 % 다음으로 높았으며 어분 및 깻묵은 전질소 함량이 5.9~7.9 % 수준이었다. 계분은 유기농업에 사용가능한 무항생제 산란계 계분을 사용하였으며, 맥주오니는 질소함량이 3.4 %로 나타났다. 무항생제 계분, 우각, 맥주오니 등을 주재료로 바이오차, 미강 등을 보조제로 사용하여 유기질비료를 제조한 결과. 수입유박의 질소함량(4.0~4.2 %) 대비 개발한 유기질비료의 질소함량은 7.5 %로 높고 중금속함량은 Zn 400 mg/kg, Cu 120 mg/kg 이하 등으로 나타나 질소 함량이 높고 유기농업자재 품질기준에 적합한 유기질비료를 개발하였다. 우각이 포함된 유기질비료를 사용하여 벼와 가지를 재배하면서 시용효과를 조사한 결과 토양검정질소시비량 기준 100 % 시용시 혼합유박 대비 시용량을 40 % 감소하였음에도 벼 생육 및 수량이 대등하였으며, 가지 재배시에도 동일한 결과를 나타내었다. 우각 등 국산 유기자원을 이용한 새로운 고농도 질소원 선발 및 이를 이용한 유기재배 적합 유기질비료 개발은 친환경농업 확대 보급의 중요성이 높아지고 있는 현 시점에서 지역자원을 이용한 기존 수입 혼합유박 대체 연구의 출발점이자 폐기되고 있는 국내 유기자원의 활용 방안 모색에서 큰 의미를 가지며 향후 확대 보급된다면 친환경농산물의 안정적 생산에 기여할 수 있을 것으로 기대된다.

페로니켈슬래그와 하수슬러지소각재를 이용한 액비로부터 스트루바이트 생산 타당성 연구 (Feasibility Tests on Struvite Production from Liquid Fertilizer by Utilizing Ferronickel Slag and Sewage Sludge Ash)

  • 김현;권규태;장덕진
    • 한국물환경학회지
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    • 제34권3호
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    • pp.316-327
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    • 2018
  • Liquid fertilizers made from livestock manure contain high concentrations of nitrogen and phosphorus and thus are used as a fertilizer. However, excessive use of liquid fertilizer causes eutrophication of agricultural land and nonpoint source pollution. In this study, as a means of lowering the nutrient concentrations, struvite ($MgNH_4PO_4{\cdot}6H_2O$) production from the liquid fertilizer was investigated. When liquid fertilizers produced in Gyeonggido were analyzed, its characteristics differed by region and season, but the phosphorus concentration was commonly lower than that of nitrogen. When $K_2HPO_4$ and $MgCl_2$ were added to the liquid fertilizers, the optimal pH for struvite formation was pH 9.5. For environmentally friendly sources of magnesium and phosphate, ferronickel slag (FNS) and sewage sludge ash (SSA) were suspended in deionized water and extracted by sulfuric acid with various mass ratios. The optimum conditions for extracting FNS and SSA were 4.0 M sulfuric acid and 0.35 mass ratio of sulfuric acid to sewage sludge ash, respectively. For forming struvite, 0.233 L of SSA leachate (SSAL) was added into 0.3 L of liquid fertilizer containing 2,586 mg/L of ammonia and 110 mg/L of phosphate, pH was then adjusted to pH 9.5 using 10 M of NaOH. Afterwards 0.333 L of FNS leachate (FNSL) was added to this mixed solution. After a reaction for 1 hr at room temperature, the remaining concentrations of magnesium, ammonium, and phosphate were less than 50 mg/L, 500 mg/L and 150 mg/L, respectively, and 30 g of precipitates were obtained, most of which were struvite.

유기성 슬러지 처리 시스템에 관한 융합연구 (Convergence Study on Organic Sludge Treatment System)

  • 한두희
    • 한국융합학회논문지
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    • 제11권10호
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    • pp.213-217
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    • 2020
  • 천연 광물질, 식물질, 정수장 슬러지를 이용하여 친환경적인 수수질정화제와 이를 활용하는 오폐수복합처리시스템을 개발하였다. 오폐수복합처리시스템은 오염수 유입, 수질정화제 투입, 가압부상장치 가동, 슬러지 부상, 슬러지 수거 및 처리수 배출의 과정을 거친다. 이 장치를 축분 탈리액, 육계 세척수, 공장 폐수, 하수종말처리장 및 연못의 녹조제거에 적용하여 우수한 제거율을 얻었다. 유기성 폐기물 정화에 천연 수질정화제를 활용한 예는 조사되지 못했다.

음식물류 폐기물 퇴비 시용이 토마토 생육 및 토양특성에 미치는 영향 (The Effect of Food Waste Compost on Tomato (Lycoperscion Esculentum.L) Growth and Soil Chemical Properties)

  • 이영돈;칼리드후세인;유재홍;주진호
    • 한국환경농학회지
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    • 제38권4호
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    • pp.332-337
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    • 2019
  • BACKGROUND: From year 2005, landfill for food waste has been prohibited. Also, according to London agreement in year 2013, ocean discharge for livestock manure, sewage sludge, and food waste has been regulated. Alternative way for food waste disposal is incineration. However, due to high moisture content, additional input for energy is needed. Therefore, effective way for food waste disposal such as application of food waste compost is needed. METHODS AND RESULTS: Seven different treatments (livestock compost, food waste compost, food waste + livestock compost, livestock compost + chemical fertilizer, food waste compost + chemical fertilizer, food waste + livestock compost + chemical fertilizer and control) were applied to tomato crop. All treatments were replicated with completely randomized design. Tomato growth treated with LC+NPK showed the highest values at 6 weeks for all parameters such as leaf length (11.80 cm), leaf width (6.88 cm), and chlorophyll (61.12 O.D.), compared to other treatments. Subsequently the FWC+LC+NPK treatment was followed (11.51 cm, 6.40 cm, 59.50 O.D. for leaf length, leaf width, and chlorophyll, respectably). EC, OM contents, and CEC in the soil treated with the composts significantly increased. CONCLUSION: To evaluate the effect of food waste compost application on tomato growth and soil chemical properties, we carried out field experiment treated with 7 treatments with 3 replicates. The LC+NPK treatment showed highest values for all parameters. Some parameters such as shoot length and total length for tomato were not significantly different between the LC+NPK and the FWC+LC+NPK treatments.

기체상 질소산화물을 포함한 2012~2014년도 대한민국 질소수지 연구 (Nitrogen Budget of South Korea Including Gaseous Nitrogen Oxides from 2012 to 2014)

  • 이한욱;어세연;박재우
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권4호
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    • pp.49-59
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    • 2017
  • This study estimated the nitrogen budget, including gaseous nitrogen oxides ($NO_x$), of South Korea in 2012~2014. The nitrogen budget was classified into three categories: agricultural and livestock, forest, and city. To estimate the nitrogen budget, several input and output parameters were investigated, including deposition, fixation, irrigation, chemical fertilizer use, compost, fuel, denitrification, volatilization, runoff, crop uptake, leaching, and $NO_x$ emissions. The annual nitrogen inputs from 2012 to 2014 were 6,202,828, 6,137,708, and 6,022,379 ton/yr, respectively. The corresponding annual nitrogen outputs were 1,393,763, 1,380,406, and 1,360,819 ton/yr, respectively, signifying a slight decrease from 2012 to 2014. $NO_x$ was the parameter contributing to the nitrogen budget to the greatest extent. The annual ratios of $NO_x$ emissions by vehicles, power plants, and businesses were 0.31, 0.31, and 0.30 in 2012, 2013, and 2014, respectively. A change in government policy that prohibited the disposal of livestock manure and sewage sludge in the ocean from 2012 affected nitrogen budget profile. As a result, the ocean disposal ratio completely diminished, which differs from previous studies.

증기가압형 처리공정을 이용한 유기성 폐기물의 건조처리 및 고형연료화 (Dehydration and RDF Production of Organic Wastes with Pressurized Hydrothermal Treatment Process)

  • 박세준;최영찬;최인규
    • 한국수소및신에너지학회논문집
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    • 제20권5호
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    • pp.439-446
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    • 2009
  • This paper investigates the dehydration and RDF (Refuse Derived Fuel) production of organic wastes, livestock manure and sewerage sludge with pressurized hydrothermal treatment process. The renewable technology for the organic wastes must involve short treatment time required, reusable energy source, anti-odor and viruses, low cost for the treatment, and well-fertilization. The pressurized hydrothermal treatment process promotes to evaporate moisture in the waste after being shortly treated in a reactor, which uses steam and heat supplied by an external boiler. By the pressurized steam, the cell walls of the waste break and effectively release the internal moisture. Then, the dried waste can be mixed with waste vinyls to produce RDF with a higher heating value as high as 6,700 kcal/kg.

Phylogenetic placement of thermophilic ammonium-tolerant bacteria and their distribution in various composts

  • Kazutaka Kuroda
    • Animal Bioscience
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    • 제36권4호
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    • pp.671-678
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    • 2023
  • Objective: Previous studies isolated the thermophilic ammonium-tolerant (TAT) bacterium Bacillus sp. TAT105 that grew in composting swine manure with the assimilation of ammonium nitrogen and reduced ammonia emissions during composting. Those studies also investigated the potential for applications of TAT105 to composting. It was observed that the concentration of TAT bacteria, phylogenetically close to TAT105, increased during composting. The objectives of this study were to identify the phylogenetic placement of these TAT bacteria and investigate their distribution in various composts. Methods: The phylogenetic placement of TAT105 was examined based on the sequence of 16S ribosomal RNA gene. The genomic DNA homology between TAT105 and the type strains of bacterial species that were phylogenetically close to TAT105 were examined by DNA-DNA hybridization. Moreover, the tolerances of these strains to NH4Cl and NaCl were analyzed using a cultivation method. Concentrations of TAT bacteria in various composts were evaluated using an agar medium specific to TAT bacteria and polymerase chain reaction followed by restriction fragment length polymorphism analysis. Results: TAT105 was most closely related to Bacillus thermolactis and Bacillus kokeshiiformis. Many variants of these species have been detected in various environments, including composts. The type strains of these species displayed TAT characteristics that were similar to those of TAT105. Among the composts examined in this study, TAT bacteria were detected at high concentrations (105 to 109 colony forming units per gram of dry matter) in most of the composts made from cattle manure, swine manure, bark, and excess sludge. Conclusion: TAT bacteria comprised B. thermolactis, B. kokeshiiformis, and their phylogenetically close relatives. They were considered to be adaptable to composting of some certain materials, and a favorable target for searching for strains with some useful function that could be applied to composting of these materials.

에너지 생산형 하수처리장을 위한 가용 기술과 통합관리 방안 (Available Technology and Integrated Management Plan for Energy-positive in the Sewage Treatment Plant)

  • 송민수;김형호;배효관
    • 한국물환경학회지
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    • 제36권1호
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    • pp.55-68
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    • 2020
  • Because of the intensified environmental problems such as climate change and resource depletion, sewage treatment technology focused on energy management has recently attracted attention. The conversion of primary sludge from the primary sedimentation tank and excessive sludge from the secondary sedimentation tank into biogas is the key to energy-positive sewage treatment. In particular, the primary sedimentation tanks recover enriched biodegradable organic matter and anaerobic digestion process produces methane from the organic wastes for energy production. Such technologies for minimizing oxygen demand are leading the innovation regarding sewage treatment plants. However, sewage treatment facilities in Korea lack core technology and operational know-how. Actually, the energy potential of sewage is higher than sewage treatment energy consumption in the sewage treatment, but current processes are not adequately efficient in energy recovery. To improve this, it is possible to apply chemically enhanced primary treatment (CEPT), high-rate activated sludge (HRAS), and anaerobic membrane bioreactor (AnMBR) to the primary sedimentation tank. To maximize the methane production of sewage treatment plants, organic wastes such as food waste and livestock manure can be digested. Additionally, mechanical pretreatment, thermal hydrolysis, and chemical pretreatment would enhance the methane conversion of organic waste. Power generation systems based on internal combustion engines are susceptible to heat source losses, requiring breakthrough energy conversion systems such as fuel cells. To realize the energy positive sewage treatment plant, primary organic matter recovery from sewage, biogas pretreatment, and co-digestion should be optimized in the energy management system based on the knowledge-based operation.

축산폐기물의 퇴비화 과정중 미생물상의 변동 (Change of Microflora in Livestock Manure during Composting Process)

  • 황경숙;장기운
    • 한국토양비료학회지
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    • 제29권3호
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    • pp.303-311
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    • 1996
  • 축산폐기물(돈분, 계분)과 임산부산물(톱밥. 제지슬러지)을 배합하여 수분함량을 조절한 10개 처리구에 대해 퇴비화 과정중 미생물상의 변화를 조사한 결과는 다음과 같다. 1. 수분함량을 65%로 조절한 P-1 처리구의 경우 B/F값은 3571, C-1은 5400을 나타낸 반면, 수분함량 50%로 조절한 P-4의 B/F값은667, C-4는 334를 나타내어 퇴비 원료 중 수분함량에 따라 세균과 사상균의 존재율(B/F)에 큰 차이를 나타내었다. 2. 퇴비화가 진행되는 과정중 온도의 상승과 하강을 거치면서 회비 환경에 적응하는 미생물 flora의 천이가 일어났다 고온기에는 중온세균과 사상균수가 감소하는 한편 포자형성세균들이 증가하였으며, 냉각기에 다시 중온미생물수가 증가하였다. 발효과정 50일 후 퇴비내 B/F값은 300-25를 나타내어 세균수가 초기단계에 비하며 크게 감소하였다. 3. 발효과점 중 퇴적물의 중심온도가 $60^{\circ}C$까지 상승하는데 소요되는 시간은 처리구별로 각각 다른 양상을 나타내었다. 빠른 속도로 고온기에 달한 퇴비 중에는 병원성미생물이 잔존하지 않았지만, 더딘 속도로 고온기에 이르는 시료 중에는 병원성미생불이 사멸되지 않고 잔존해 있었다. 4. 퇴비화 과정중 미생물 flora의 다양성에 관하여 각 처리구별로 조사한 결과 대부분의 처리구에서 같은 양상을 나타내었다. 초기단계에는 중온성 세균과 fungi들이 주로 분포해 있었고, 고온단계의 전반기에는 주고 Bacillus spp., 후반기에는 Thermoactinomyces spp., 와 같은 고온기 이후 퇴비화가 진행되면서 중온성 미생물이 다시 증가하다가 후숙단계에 들어서면서 부식질로 변한 환경내에는 lignin 분해성 담자균류(Coprinus spp.)와 Coryneform bacteria와 같은 일부 저영양성 미생물 그룹이 분포해 있었다.

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돼지 축분자원화물의 발생 및 배출부하 원단위 산정에 관한 연구 (A study on the estimation of unit load generation and discharge from livestock resources of piggery)

  • 한기봉;강영희;윤지현;임재명;원철희;최승철
    • 유기물자원화
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    • 제14권3호
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    • pp.91-100
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    • 2006
  • 본 연구에서는 돼지 분 뇨 및 폐수의 오염물 부하를 조사 및 분석함으로써 다양한 형태의 돼지 돈사로부터 발생 및 배출되는 오염물 부하 원단위를 산정한 결과는 다음과 같다. 오염물질의 발생부하 원단위는 돼지의 성장단계에 비례하여 증가하였으나, 돈사의 형태에 따른 발생부하 원단위는 각 돈사별 평균값을 고려할 때 큰 차이를 보이지 않았다. 3계절과 생체 중량을 고려한 평균 분뇨 발생량은 분이 1.49kg/head/d, 뇨가 3.08kg/head/d로서 총 4.57kg/head/d가 발생하였다. 돈사의 형태와 계절을 고려한 최종적인 평균 오염물질 발생부하 원단위는 BOD 199.5g/head/d, $COD_{cr}\;413.5g/head/d$, T-N 27.8g/head/d, T-P가 5.3g/head/d로 나타났다. 시멘트 돈사에서 배출되는 폐수의 배출부하 원단위는 BOD 31.3g/head/d, $COD_{cr}\;95.6g/head/d$, T-N 8.9g/head/d, T-P가 3.1g/head/d로 조사되었다. 분의 수거율(80%, 90%)을 고려한 분의 발생부하 원단위와 시멘트 돈사의 폐수발생 원단위의 합을 슬러리 돈사의 배출부하 원단위와 비교 시, 오염물질과 항목별로 다소의 차이는 있으나 거의 유사하였다.

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