• 제목/요약/키워드: Nitrogen management

검색결과 929건 처리시간 0.026초

하수처리장 개선이 마산만 수질에 미치는 영향분석 (Analysis of Water Quality caused by Improvement of Sewage Treatment Plant in Masan Bay)

  • 오현택;구준호;박성은;최윤선;정래홍;최우정;이원찬;박종수
    • 한국환경과학회지
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    • 제14권8호
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    • pp.777-783
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    • 2005
  • For the sustainable management of marine ecosystem in Masan Bay, we have to assess the carrying capacity and standard of target water quality. In this research, we assume that all pollutants loads are treated in Dukdong sewage treatment plant, then we simulate the physical-biological model for prediction water quality for the achievement of standard water quality. In 2001 year, for the achievement of COD 2.5 mg/L, we need to reduce COD $90\%$, nitrogen $30\%$, phosphate $90\%$ than that of the present value, According to these results, the water quality of sewage treatment plant is required to treat COD 13.5 mg/L, nitrogen 33.3 mg/L, phosphate 6,0 mg/L. If the sewage treatment plant will be expanded much larger in 2011, it will need to be treated in COD 6.6 mg/L, nitrogen 2.5 mg/L, phosphate 5 mg/L for the achievement of water quality standard in COD 2.5 mg/L.

MLE 공정을 이용한 고농도 NH4+-N 함유 침출수의 생물학적 질산화/탈질 (Biological Nitrification and Denitrification for Landfill Leachate Containing High Concentration of Ammonium-Nitrogen by using MLE Process)

  • 원종철;남궁완;배영신;이경신;박기혁;송수성;윤조희
    • 대한환경공학회지
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    • 제22권6호
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    • pp.1027-1035
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    • 2000
  • 본 연구에서는 생활폐기물 매립지에서 발생되는 침출수에 함유된 고농도 $NH_4{^+}$-N 및 T-N의 적정처리를 위하여 pilot 규모의 MLE 공정을 이용하여 생물학적 질산화/탈질을 실시한 결과 $NH_4{^+}$-N온 99%이상, T-N은 88%정도의 처리효율을 얻을 수 있었으며, BOD/$NH_4{^+}$-N비를 약 3.5로 유지할 경우 T-N온 $0.09kgN{\cdot}m^{-3}{\cdot}day^{-l}$정도 제거되는 것으로 나타났다. 또한, 질산화/탈질과정에서 $NH_4{^+}$-N 산화량에 따른 알카리도 소비량은 평균 $3.4{\sim}3.5kgAlk{\cdot}kgNH_4{^+}-N^{-1}$정도로 나타났으며, 외부탄소원으로 투입된 메탄올에 대한 탈질균의 적용 기간은 약 20일 정도가 필요한 것으로 나타났다. 또한, 질산화조에 유동상 메디아를 투입한 결과 투입하지 않았을 때에 비하여 $SV_{30}$가 2배 정도 양호하게 나타났다.

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Feeding and Management System to Reduce Environmental Pollution in Swine Production - Review -

  • Han, In K.;Lee, J.H.;Piao, X.S.;Li, Defa
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권3호
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    • pp.432-444
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    • 2001
  • In this manuscript, several effective feeding and management systems to reduce environmental pollution in swine production have been briefly introduced. It is logical that reducing the excretion of nutrients in manure should be the first step to reduce the environmental impact of pig production. it is evident that the excretion of nitrogen and phosphorus can be reduced when more digestible or available feedstuffs are used. Also, it is well known that proper feed processing can reduce anti nutritional factors (ANF) and improve nutrient digestibilities. Supplementation of effective feed additives can reduce excretion of nitrogen and phosphorus due to efficient feed utilization. These include enzymes (e.g., phytase), antibiotics, probiotics, organic acids and growth hormones ($\beta$-agonists and porcine somatotropin). One of the most effective ways to reduce pollutants from swine manure is to use synthetic amino acids in feed manufacturing. Many studies showed that reduction of 2 to 4% unit (U) of dietary protein with supplemental amino acid (AA) could dramatically reduce (15 to 20%) nitrogen excretion. Regarding feeding strategies, it has been recognized that phase feeding regimen could be used to reduce nitrogen and phosphorous excretion by feeding pigs in better agreement with age and physiological state. Feeding barrows and gilts separately, known as split sex feeding, can also decrease excretion of nitrogen and phosphorus. With the increasing concerns on the negative impact of animal production systems on the environment, animal nutritionists and producers should be aware that sustainability of animal agriculture is as important as high production performance. Therefore, some feeding and management strategies described in this manuscript will help to reduce environmental pollution in swine production. Proper combination of feeding regimen and environment-friendly diet formulation through nutritional approach will be more effective to reduce nutrient excretion in swine production system compared to single approach to do so.

경작조건별 농경지 비료성분의 거동특성에 관한 칼럼 연구

  • 최태범;이기철;장윤영
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.279-281
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    • 2003
  • This study is intended to give information on agricultural nonpoint source pollution and transport related to fertilizer application and irrigation practice. Field-simulated soil columns were set up and leaching studies on fertilizer components such as nitrogen and phosphorus were performed. Nitrogen and phosphorus in the leachate showed different trends in each column and nonpoint source pollution in agricultural areas may be expected to depend on planted crops, soil conditions, and climate as well as irrigation and fertilizing management.

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Wide Area Distribution of Nitrogen Concentrations in Mountain Streams of Hyogo Prefecture, Japan

  • Muramatsu, K.;Komai, Y.;Umemoto, S.;Inoue, T.
    • Environmental Engineering Research
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    • 제15권2호
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    • pp.111-115
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    • 2010
  • To study the relationship between the concentrations of nitrogen in mountain streams, and anthropologic and natural factors, the water chemistry of the mountain streams in the entire Hyogo Prefecture, Japan, were investigated. A thousand mountain streams were investigated between 1998 and 2001. The concentrations of nitrate nitrogen ranged from 2.92 to 0.1 mg/L, with an arithmetic mean value of 0.45 mg/L. A number of streams showing more than 1.0 mg/L of nitrate nitrogen accounted for 8% of the mountain streams investigated. These results indicated that the concentrations of nitrate nitrogen in the mountain streams were low in the entire Hyogo Prefecture. In general, the mountain stream water in Hyogo Prefecture appears to not have been affected by wet and dry deposition originating from anthropologic sources in mountain streams and Japan. On the other hand, sites with more than 0.8 mg/L nitrate nitrogen were distributed over the entire Hyogo Prefecture, which were classified into five groups. Each group showed unique geographical, geological and anthropological characteristics. No common characteristic among five groups were discover. These results suggest that the cause of high concentrations of nitrogen in mountain streams is not from a uniform set of conditions.

A Study on the Chemical Treatment Techniques of High Concentration Ammonia Nitrogen in Food Wastewater

  • Tae-Hwan JEONG;Su-Hye KIM;Woo-Taeg KWON
    • 웰빙융합연구
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    • 제6권3호
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    • pp.33-36
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    • 2023
  • Purpose: Since the food wastewater contains a high concentration of nitrogen, it is very important to find a way to efficiently remove it. Research design, data and methodology: A total of four experiments were conducted under different conditions to remove ammonia nitrogen present in the food wastewater. The experiment was designed by adding sodium hypochlorite to the raw food wastewater and varying conditions such as pH control, aeration/precipitation, and stirring. Results: The ammonia nitrogen removal rate in Experiment 1 was about 12% (sodium hypochlorite added), ammonia nitrogen increased about 4.7% in Experiment 2 (sodium hypochlorite added after aeration/precipitation in a bioreaction tank, stirring), and decreased about 52.5% (sodium hypochlorite added after controlling and stirring). Conclusions: When the concentration of sodium hypochlorite was high, ammonia nitrogen was best removed, and the pH was adjusted to 12, and sodium hypochlorite was added after stirring, and the removal was the second best. If the method of this study is further studied and developed, it can be basic data for ammonia nitrogen removal in the future.

가축분뇨관리 과정 중 손실되는 질소 : A review (Nitrogen Losses During Animal Manure Management : A review)

  • 최동윤;송준익;박규현;;안희권
    • 한국축산시설환경학회지
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    • 제18권sup호
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    • pp.73-80
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    • 2012
  • 가축분뇨 중의 질소성분이 불필요하게 대기중으로 휘산되어 환경오염을 일으키거나 가축분뇨의 비료 가치를 저하시키는 것을 줄여주기 위해서는 가축분뇨 처리단계 별 질소손실 기작 및 조건을 올바르게 이해할 필요가 있다. 각 축종별 우리나라의 전형적인 축사시설 및 가축분뇨 처리형태를 기준으로 가축분뇨에 함유된 질소가 토양에 살포되어 작물에 의해 이용될 수 있는 비율을 산정한 결과는 다음과 같다. 1. 슬러리 형태로 수거한 돈분뇨를 퇴비화 한 후 토양에 표면살포했을 경우 시비 후 2년 이 경과한 시점에서 작물이 이용 가능한 질소 성분은 배설된 분뇨에 함유된 총질소 성분의 27% 수준이다. 2. 슬러리 형태로 수거한 돈분뇨를 혐기소화 한 후 토양 표면에 살포한 상태에서 2년 후에 작물이 이용 가능한 질소는 분뇨중 총 질소의 29%이며, 혐기소화 한 소화폐액을 토양주입(Injection)에 의해 살포할 경우 분뇨중 총질소의 54%가 2년 후 작물에 의해 이용 가능하다. 이러한 결과는 토양주입이 가축분뇨 토양살포 시 휘산되는 암모니아를 저감시키는데 매우 효율이 높음을 입증하는 좋은 예라고 볼 수 있다. 3. 깔짚우사에서 수거한 한우 및 젖소 분뇨를 퇴비화한 후 토양 살포를 할 경우 3년이 경과한 시점에 작물이 이용 가능한 질소는 분뇨 중 총질소의 18% 수준이다. 4. 계분을 퇴비화한 후 토양 살포를 할 경우 2년이 경과한 시점에 작물이 이용 가능한 질소는 분뇨 중 총질소의 18% 수준으로 계산되었다.

이화학적 특성과 질소 안정동위원소비를 활용한 강우시 가축사육 밀집 지역의 하천 수질 영향 평가 (River Water Quality Impact Assessment in an Intensive Livestock Farming Area During Rainfall Event using Physicochemical characteristics and Nitrogen Stable Isotopes)

  • 류홍덕;백운일;김선정;김덕우;김찬식;김민섭;신동석;이재관;정유진
    • 한국환경과학회지
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    • 제28권1호
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    • pp.7-18
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    • 2019
  • This study aimed to assess the impact of livestock excreta discharged from an Intensive Livestock Farming Area (ILFA) on river water quality during a rainfall event. The Bangcho River, which is one of the 7 tributaries in the Cheongmi River watershed, was the study site. The Cheongmi River watershed is the second largest area for livestock excreta discharge in Korea. Our results clearly showed that, during the rainfall event, the water quality of the Bangcho River was severely deteriorated due to the COD, $NH_4-N$, T-N, $PO_4-P$, T-P, and heavy metals (Cu, Zn, and Mn) in the run-off from nearby farmlands, where the soil comprised composted manure and unmanaged livestock excreta. In addition, stable isotope analysis revealed that most of nitrogen ($NH_4-N$ and $NO_3-N$) in the run-off was from the ammonium and nitrate in the livestock excreta. The values of ${\delta}^{15}N_{NH4}$ and ${\delta}^{15}N_{NO3}$ for the Bangcho River water sample, which was obtained from the downstream of mixing zone for run-off water, were lower than those for the run-off water. This indicates that there were other nitrogen sources upstream river in the river. It was assumed from ${\delta}^{15}N_{NH4}$ and ${\delta}^{15}N_{NO3}$ stable isotope analyses that these other nitrogen sources were naturally occurring soil nitrogen, nitrogen from chemical fertilizers, sewage, and livestock excreta. Therefore, the use of physicochemical characteristics and nitrogen stable isotopes in the water quality impact assessment enabled more effective analysis of nitrogen pollution from an ILFA during rainfall events.

공구와 칩 사이에서의 Liquid Nitrogen의 마찰 효과 (Friction on the Tool-chip Interface Under Liquid Nitrogen Cooling)

  • Jun Seong Chan
    • 대한안전경영과학회지
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    • 제4권2호
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    • pp.237-249
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    • 2002
  • A cutting fluid can improve machining quality and tool life by maintaining the tool toughness and by providing a lubrication effect to reduce the friction between the chip and tool interface. Although liquid nitrogen as an environmentally safe coolant has been widely recognized in cryogenic machining, its function as a lubricant is plausible due to its chemical inertness, physical volatility and low viscosity. Since a reduced friction is a direct witness of the lubrication effect from a tribological viewpoint, this paper presents an evaluation of the apparent friction coefficient on the tool-chip interface in cryogenic cutting operations to prove and characterize the lubricity of LN2 in cryogenic machining. The mathematical approaches have been formulated to derive the normal and frictional forces on the tool-chip interface for the oblique cutting tests.

Investigating the Impact of Best Management Practices on Nonpoint Source Pollution from Agricultural Lands

  • 최예환
    • 한국농공학회지
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    • 제32권E호
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    • pp.1-19
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    • 1990
  • Abstract Over the last several decades, crop production in the United States increased largely due to the extensive use of animal waste and fertilizers as plant nutrient supplements, and pesticides for crops pests and weed control. Without the application of animal waste best management, the use of animal waste can result in nonpoint source pollution from agricultural land area. In order to increase nutrient levels and decrease contamination from agricultural lands, nonpoint source pollution is responsible for water quality degradation. Nonpoint source pollutants such as animal waste, ferilizers, and pesticides are transported primarily through runoff from agricultural areas. Nutrients, primarily nitrogen and phosphorus, can be a major water quality problem because they cause eutrophic algae growth. In 1985, it was presented that Watershed/Water Quality Monitoring for Evaluation BMP Effectiveness was implemented for Nomini Creek Watershed, located in Westmoreland County, Virginia. The watershed is predominantly agricultural and has an aerial extent of 1505 ha of land, with 43% under cropland, 54% under woodland, and 3% as homestead and roads. Rainfall data was collected at the watershed from raingages located at sites PNI through PN 7. Streams at stations QN I and QN2 were being measured with V-notch weirs. Water levels at the stream was measured using an FW-l Belfort (Friez FWl). The water quality monitoring system was designed to provide comprehensive assessment of the quality of storm runoff and baseflow as influenced by changes in landuse, agronomic, and cultural practices ill the watershed. As this study was concerned with the Nomini Creek Watershed, the separation of storm runoff and baseflow measured at QNI and QN2 was given by the master depletion curve method, and the loadings of baseflow and storm runoff for TN (Total Nitrogen) and TP (Total Phosphorus) were analyzed from 1987 through 1989. The results were studied for the best management practices to reduce contamination and loss of nutrients, (e.g., total nitrogen and total phosphorus) by nonpoint source pollution from agricultural lands.

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