• 제목/요약/키워드: nitrogen ratio

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미질향상을 위한 간척지 토양 염농도별 적정 질소시비량 (Nitrogen Fertilizer Management for Improving Rice Quality under Different Salinity Conditions in Tidal Reclaimed Area)

  • 최원영;이규성;고종철;박홍규;김상수;김보경;김정곤
    • 한국작물학회지
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    • 제49권3호
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    • pp.194-198
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    • 2004
  • 본 연구는 남서해안 간척지에서 토양 염농도(저염; 0.1%, 중염; 0.3∼0.4%)별로 쌀 품질 향상을 위한 적정 질소 시비량을 구명하기 위하여 시험한 결과를 요약하면 다음과 같다. 1.유추분화기의 초장은 질소 시비량이 많을수록 컸고, 토양염농도간에는 저염 토양에서 켰다. 2. 출수기는 저염 토양에서는 표준비인 N20kg/10a에 비해 N8-N16kg/10a까지는 같았으나 N24kg/10a에서는 1일 늦었고, 중염 토양에서는 N8-N16kg/10a 까지는 1일이 삘랐고 N24kg/10a에서는 같았으며, 토양 염농도간에는 저염 토양에서보다 중염 토양에서 4일 정도 늦었다. 3. 질소시비량이 많을수록 간장이 크고, 포장도복이 심했다. 4. 저염 토양에서 질소시비량이 많을수록 $\textrm{m}^2$ 당 립수는 많았으나 등숙비율이 낮아져 발 수량은 N12kg/10a이상에서는 유의차가 없었으며, N12kg/10a이하에서 현미의 완전미율이 높고 단백질 함량이 낮았다. 5.중염 토양에서는 질소시비량이 많을수록 $\textrm{m}^2$ 당 립수가 많고 등숙비율이 비슷하여 발 수량은 질소시비량이 많을수록 높았으나 N20kg/10a 이상에서는 유의차가 없었고, 현미의 완전미율과 단백질함량은 질소시비량간에 비슷하였다. 따라서 남서해안 간척지에서 쌀 수량 및 미질 등을 고려해 볼 때, 저염 토양에서는 N12kg/10a, 중염 토양에서는 N20kg/10a이 적당할 것으로 생각된다

질소시비량과 예취시기가 답리작 호밀의 수량 및 사료가치에 미치는 영향 (Effects of Nitrogen Fertilizer Application Level and Cutting Time on Forage Yield and Feed Value of Rye in Paddy Field)

  • 김창호;채제천
    • 한국작물학회지
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    • 제39권4호
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    • pp.373-381
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    • 1994
  • 호밀을 답리작으로 재배시 수량, 일반사료성분과 에너지 함량 및 수량을 질소시비량 및 예취시기에 따른 반응을 요약하면 다음과 같다. 1. 호밀은 질소시비량이 30kg/10a까지 많을수록 청예 및 건물수량이 증가하고 건물률은 감소하였으며 식물체의 엽신과 엽초의 비율은 증가하는 반면 줄기와 이삭의 비율은 감소하였다. 2. 호밀은 질소시비량이 많을수록 단백질, 총가소화양분(TDN), 무기물 및 에너지 함량과 수량이 모두 증가하였으며 ADF(acid detergent fiber) 와 NDF(neutral detergent fiber)의 함량은 감소하고 상대적사료가치가 높아졌다. 3. 질소시비량이 많아지면 예취시기가 늦더라도 전체 조단백질 함량 중에서 가급태 단백질이 차지하는 비율이 크게 낮아지지 않았다. 4. 호밀의 수확적기는 관행사료가치의 관점에서 는 대체로 유숙기 무렵으로 판단되었으나 사료의 에너지 관점에서는 이와 다소 차이가 있었다. 증체에너지(NEG)와 유지에너지(NEM) 면에서 본 수확적기는 개화후기에 높고 관행사료가치보다 10일정도 빨랐으며 에너지추정값(ENE)과 필유에너지(NEL)는 유숙기 무렵으로 같았다.

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Effect of Carbon Source and Carbon to Nitrogen Ratio on Carotenogenesis of Rhodotorula glutinis

  • Nam, Hee-Sop
    • Journal of Microbiology and Biotechnology
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    • 제1권1호
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    • pp.75-78
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    • 1991
  • The carotenoid biosynthesis of a red oleaginous yeast, Rhodotorula glutinis was significantly changed when the yeast was grown on different carbon substrates. The highest carotenoid production was obtained on culture medium containing glucose when the carbon to nitrogen ratio (C/N ratio) was adjusted to 25.7. Galactose stimulated the biosynthetic rate of torularhodin, a xanthophyll component of the yeast. With decreasing C/N ratio of the medium, significant changes of $\gamma$-carotene and torularhodin were observed such that increase in the torularhodin concentration was nearly equal to the decrease in $\gamma$-carotene. It was speculated that the nature of carbon substrate affected the metabolic rate of the cell, and accompanied by the different pattern of carotenoid accumulation in the cell.

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MLE 공정을 이용한 양돈폐수의 질소 제거 특성 (Nitrogen Removal Characteristics of Swine Wastewater when treating by MLE Process)

  • 박성균;박현수;이기공;정윤진
    • 상하수도학회지
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    • 제14권2호
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    • pp.147-156
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    • 2000
  • In this study, the optimal operation parameters of MLE(Modified Ludzack-Ettinger) process treating the liquid supernatant separated from the slurry excreta of swine feedlot was studied as a promising biological treatment process. The nitrogen removal characteristics with different volume ratio between nitrification and denitrification reactor and the operational effect with different nitrogen loading rate, and different C/N($COD_{Cr}/TKN$) ratio were investigated. Based on the laboratory results, pilot MLE plant was operated to examine the effect of ambient temperature for five months including winter. The denitrification reactor which is 20% of total volume was proposed as the most optimal volume fraction for nitrification and denitrification. The optimum ratios of F/M and $F_N/M$ were increased with increase of the C/N ratio. However, optimum F/M ratio was changed more rapidly than $F_N/M$ ratio with increase of the C/N ratio. Therefore, MLE process is desirable to be controlled by F/M ratio in the range of high C/N ratio and by $F_N/M$ ratio in the range of low C/N ratio. Pilot MLE plant showed the higher removal efficiencies of COD and TKN in winter than in summer and was operated most stably at the temperature of $20{\sim}25^{\circ}C$ for mixed liqour.

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Sorghum 및 옥수수의 형태적 특성과 재배온도가 Nitrate-Nitrogen 축적에 미치는 영향 (Accumuation Pattern of Nitrate-Nitrogen in Sorghum And Maize Plants as Affected by Morphological Characteristics And Environmental Temperature)

  • 김정갑
    • 한국초지조사료학회지
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    • 제7권3호
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    • pp.146-152
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    • 1987
  • Sorghum cv. Pioneer 93 1, sorghum-sudangrass hybrid cv. Sioux and maize plant cv. Blizzard were assayed for toxic concentrations of nitrate-nitrogen ($NO_3$-N) and their relationship to morphological characteristics and environmental temperature in a field and phytotron trial. In the phytotron, sorghum and maize plants ranging from emergence to heading stage, were grown under different day/night temperatures of 30125, 25/20,28/18 and 1818 degree C. Nitrate-nitrogen in sorghum and maize plants was accumulated mainly in stems. Therefore nitrate concentration in the young plants was increased as development of stalks advanced and was highest at the stage of 3-4 leaves, when the plants had a leaf weight ratio 0.78-0.80 g/g plant weight. However, nitrate concentrations of the plant decreased as morphological development progressed, especially from the stage of growing point differentiation. Correlation coefficients showed a positive correlation of nitrate concentration with leaf weight ratio, leaf area ratio and specific leaf area, while plant height, dry matter percentage and absolute growth rate showed a negative association with TEX>$NO_3$-N ($P{\le}0.1$%). Cyanogenic glycosides, total nitrogen and crude protein were close associated with nitrate accumulation, and positively significant ($P{\le}0.1$%). High temperature over 30/25^{\circ}C.$ for 3 weeks increased N-uptake and dry matter accumulation, but reduced nitrate concentration. Under cold temperature below 18/8^{\circ}C.$ concentration of nitrate-N was increased in spite of its limited nitrogen uptake and plant growth.

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질소 첨가된 ta-C 후막코팅의 기계 및 트라이볼로지적 특성연구 (Effects of nitrogen doping on mechanical and tribological properties of thick tetrahedral amorphous carbon (ta-C) coatings)

  • 강용진;장영준;김종국
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.156-156
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    • 2016
  • The effect of nitrogen doping on the mechanical and tribological performance of single-layer tetrahedral amorphous carbon (ta-C:N) coatings of up to $1{\mu}m$ in thickness was investigated using a custom-made filtered cathode vacuum arc (FCVA). The results obtained revealed that the hardness of the coatings decreased from $65{\pm}4.8GPa$ to $25{\pm}2.4GPa$ with increasing nitrogen gas ratio, which indicates that nitrogen doping occurs through substitution in the $sp^2$ phase. Subsequent AES analysis showed that the N/C ratio in the ta-C:N thick-film coatings ranged from 0.03 to 0.29 and increased with the nitrogen flow rate. Variation in the G-peak positions and I(D)/I(G) ratio exhibit a similar trend. It is concluded from these results that micron-thick ta-C:N films have the potential to be used in a wide range of functional coating applications in electronics. To achieve highly conductive and wear-resistant coatings in system components, the friction and wear performances of the coating were investigated. The tribological behavior of the coating was investigated by sliding an SUJ2 ball over the coating in a ball-on-disk tribo-meter. The experimental results revealed that doping using a high nitrogen gas flow rate improved the wear resistance of the coating, while a low flow rate of 0-10 sccm increased the coefficient of friction (CoF) and wear rate through the generation of hematite (${\alpha}-Fe_2O_3$) phases by tribo-chemical reaction. However, the CoF and wear rate dramatically decreased when the nitrogen flow rate was increased to 30-40 sccm, due to the nitrogen inducing phase transformation that produced a graphite-like structure in the coating. The widths of the wear track and wear scar were also observed to decrease with increasing nitrogen flow rate. Moreover, the G-peaks of the wear scar around the SUJ2 ball on the worn surface increased with increasing nitrogen doping.

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생물막 여과 반응기를 이용한 양어장 순환수의 동시 질산화 및 탈질산화 반응 (Simultaneous Nitrification and Dennrincation of Recirculating Aquaculture Water by Biofilter Reactor)

  • 이민규;서근학;오영회
    • 한국환경과학회지
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    • 제6권4호
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    • pp.409-415
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    • 1997
  • In order to Investigate the possibility as a simple technique of wastewater treatment for recirculating aquaculture system, the experiment by a biofilter unfit was carried out. The high and stable removal efficiency of nitrogen could be obtained by selecting the optimum recycle ratio and DO concentration. It was found that the proper combination of nitrifacation and denitrfication step in the reactor would be required for increasing the removal efficiency. The extent of nitrogen removal gradually decreased UO the rise of re- cycle ratio since the depression of denitrificatlon by the lack of hydrogen donor. The depression of nitrogen removal was overcome by increasing the CIN ratio In the wastewater. The extent of phosphorus removal was increased slightly with the increase of DO concentration and recycle ratio, but high removal efficiency was not observed. However, the extent of COD removal was not affected by recycle ratio and DO concentration and showed the stable removal of above 90%.

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Mainstream ANAMMOX 공정 적용시 암모니아성 질소 대비 아질산성 질소 비율 도출 연구 (Determination optimal ratio of ammonium to nitrite in application of the ANAMMOX process in the mainstream)

  • 이다원;이지원;길경익
    • 한국습지학회지
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    • 제23권1호
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    • pp.60-66
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    • 2021
  • 도시화와 산업화로 인해 하수처리장으로 유입되는 하수 내 질소 농도가 증가함에 따라 부영양화 발생, 수생태계에 독성을 미치는 등의 악영향의 정도 또한 증가하고 있다. 고농도의 질소가 포함된 하수를 처리하기 위해 생물학적 질소 제거 공정에 대한 연구가 다방면으로 진행되고 있다. 기존의 생물학적 질소 제거 공정에 있어 산소공급과 외부탄소원 보충에 따른 상당한 비용이 요구된다. 이러한 측면에서 경제적인 개선이 이루어진 고도의 질소 제거 공정이 요구됨에 따라 최근 기존의 질산화·탈질 공정 보다 효율적이고 경제적인 혐기성 암모늄 산화 공정(ANaerobic AMMonium OXidation, ANAMMOX)이 제안되었다. 본 연구에서는 수처리공정에서의 ANAMMOX 공정의 안정성을 확인하고, Mainstream ANAMMOX 공정구현을 위한 암모니아성 질소(NH4+) 대비 아질산성 질소(NO2-) 비율을 도출하는데 목적이 있다. 선행연구에서 제시된 기질비율을 바탕으로 산정한 비율을 적용해 실험실 규모의 Mainstream ANAMMOX 반응조를 운전하였다. Initial 구간에서 NH4+ 제거효율은 58~86%, 평균 제거효율은 70%였다. Advanced 구간에서 NH4+ 제거효율은 94~99%, 평균 제거효율은 95%였다. 연구 결과 NH4+/NO2- 비율이 증가함에 따라, Mainstream ANAMMOX 공정의 안정성이 확보되어 NH4+ 제거효율 및 총질소(TN) 제거효율이 증가하는 경향을 확인할 수 있었다. 결과적으로, 본 연구결과는 이후 수처리공정에서의 ANAMMOX 공정 적용과 공정 안정성 확보에 있어 기초자료로 활용될 수 있을 것으로 보인다.

충전탑형 무산소/호기 공정에서 반송비에 따른 유기물 및 질소 제거 특성 (Characteristics of Organics and Nitrogen Removal with the Recycle Ratio in Anoxic / Oxic Packed Bed Process)

  • 선용호
    • 한국환경과학회지
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    • 제11권12호
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    • pp.1261-1265
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    • 2002
  • This study was focused on the investigation of the characteristics of organics and nitrogen removal with the recycle ratio in anoxic/oxic(A/O) packed bed process that consisted of the anoxic reactor and the aerobic reactor. As increasing the recycle ratio by 0.5, 1.0, 2.0, the COD removal efficiency increased by 94.0%, 98.5%, 98.8% respectively. The aerobic reactor showed the perfect nitrification efficiency by 98.5%, 99.2%, 98.0% respectively. The T-N removal efficiency with the recycle ratio, increased by 56%, 67%, 70% respectively. As increasing the recycle ratio by 0.5, 1.0, 2.0, T-P removal efficiency decreased by 62.1%, 57.4%, 51.3% respectively. The process by releasing the stored phosphorus in the anoxic reactor and uptaking the excess phosphorus in the aerobic reactor, occurred well comparatively when recycle ratio is 0.5. But this process did not occur when the recycle ratio is 1.0 and 2.0. And optimum pH of nitrification was about 6~7 and alkalinity decreased as nitrification rate increased. As increasing the recycle ratio in the anoxic reactor, DO concentration and ORP increased.

Nitrogen Removal from Wastewaters by Microalgae Without Consuming Organic Carbon Sources

  • Lee, Kwang-Yong;Lee, Choul-Gyun
    • Journal of Microbiology and Biotechnology
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    • 제12권6호
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    • pp.979-985
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    • 2002
  • The possibility of microalgal nitrogen treatment was tested in wastewaters with a low carbon/nitrogen (C/N) ratio. Chlorella kessleri was cultured in the two different artificial wastewaters with nitrate as a nitrogen source: one contained glucose for an organic carbon source and the other without organic carbon sources. The growth rates of the two cultures were almost identical when the aeration rate was over 1 vvm. These results suggest that microalgae could successfully remove nitrogen from wastewater, as far as the mass transfer of $CO_2$, was not limited. Nitrate was successfully reduced to below 2 mg $NO_3^-$-N/ml from the initial nitrate concentration of 140 mg $NO_3^-$-N/ml in 10 days, even in the wastewater with no organic carbon source. Similar results were obtained when ammonium was used as the sole nitrogen source instead of nitrate. Higher concentrations of nitrogen of 140, 280, 560 and 1,400 mg/ml were also tested and similar amounts of nitrogen were removed by algal cultures without showing any substrate inhibition.