• 제목/요약/키워드: Ammonia flux

검색결과 49건 처리시간 0.029초

Evaluation of Fishmeal Supplement with Net Nitrogen Flux by the Portal-drained Viscera and the Liver in Mature Sheep

  • Fukuma, T.;Taniguchi, K.;Obitsu, T.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권9호
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    • pp.1255-1261
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    • 2005
  • The objective of this study was to evaluate the net flux response of nitrogen compounds (alpha-amino N, ammonia N, urea N, essential amino acids) across the portal-drained viscera (PDV), liver and total splanchnic tissues of mature wethers to increasing level of dietary fishmeal (FM) supplementation. Four wethers (average body weight, 64 kg) with chronic indwelling catheters into the portal, hepatic and mesenteric veins and the abdominal aorta were used in a 4${\times}$4 Latin square design. A basal diet consisting of 0.7 hay and 0.3 concentrate was fed twice daily with a fixed amount at 1.4 times maintenance energy (1.3 kg/day on a dry matter basis). The supplementation proportion of FM as treatment was 0, 0.03, 0.06 and 0.09 to the amount of the basal diet to contain 119, 137, 154 and 170 g crude protein per kg dietary dry matter, respectively. Blood flows through PDV and liver did not differ (p>0.05) among the treatments. Both net PDV release and hepatic uptake of alpha amino acid N increased linearly (p<0.05) in response to increased dietary FM, which resulted in similar total splanchnic release of alpha-amino N among the treatments. Similarly, increased dietary FM increased net PDV absorption and hepatic removal of ammonia N linearly (p<0.05). Hepatic synthesis and total splanchnic release of urea N increased linearly (p<0.01) with increased dietary FM, but PDV uptake of urea N did not respond to increased dietary FM. Linear regression equations between the increases in FM N intake and PDV net flux indicated that 0.34 and 0.30 of FM N was absorbed in the form of alpha-amino N and ammonia N, respectively. The results demonstrated that FM supplementation provides more alpha-amino N than ammonia N to the liver, but the alpha-amino acid N absorption is less than the expected metabolizable protein N from FM supplementation.

Influence of Houttuynia Cordata Powder on The Growth Performance of Ducks and The Impact of AlCl3 Treatment on Ammonia flux in Duck Litter

  • Chung, Tae-Ho;Choi, In-Hag
    • 한국환경과학회지
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    • 제24권10호
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    • pp.1309-1313
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    • 2015
  • The effects of Houttuynia cordata powder on the growth performance of ducks were investigated. Ninety ducks were assigned into one of three dietary treatments as a completely randomized design for 6 weeks: feeds supplemented with 1% or 2% H. cordata and a control group. No significant difference was observed in feed conversion among the three groups (p > 0.05), but addition of H. cordata had a significantly positive effect (p < 0.05) on initial and final body weight, weight gain, and feed intake of the ducks. Furthermore, the effects of chemical treatment (comprising 50 g and 100 g aluminum chloride [$AlCl_3$] per kilogram litter) on the ammonia ($NH_3$) flux in duck litters were also investigated. Duck litter was treated with $AlCl_3$ at a depth of 8 cm by top-dressing; this resulted in a significant difference on $NH_3$ flux (p < 0.05) during the experimental period (but not at 2 weeks). $NH_3$ flux at 6 weeks were reduced by 25.4% and 37.5% by treatment with 1% and 2% H. cordata, respectively, compared with the control groups. In conclusion, enriching the diets of the ducks with 2% H. cordata and adding 100 g $AlCl_3$ to their litter has beneficial effects on increasing their growth performance and reducing $NH_3$ flux in their environment.

스윕 가스-진공 혼합식 탈기막 시스템을 활용한 암모니아 제거 (Membrane Degassing Process of Sweep Gas-vacuum Combination Type for Ammonia Removal)

  • 윤홍식;민태진;이건희;김형탁;신완호
    • 한국산업융합학회 논문집
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    • 제25권5호
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    • pp.835-842
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    • 2022
  • In this study, the membrane degassing process of the sweep gas - vacuum combination type was proposed for ammonia wastewater treatment. The effect of pH, initial ammonia concentration and scale-up on ammonia degassing performance was investigated. As a result, as the pH and the initial ammonia concentration increased, the degassing permeate flux was improved. On the other hand, the ammonia mass transfer coefficient increased as the initial ammonia reduced, which seems to be due to the driving force of the sweep gas-vacuum combination type membrane degassing system proposed in this study. In addition, 80 mg NH3/min of the ammonia degassing rate was achieved using a 6×28 inch size module. Better degassing performance is expected if consideration for maintaining vacuum pressure is involved in the scale-up design.

Hybrid MBE Growth of Crack-Free GaN Layers on Si (110) Substrates

  • 박철현;오재응;노영균;이상태;김문덕
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.183-184
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    • 2013
  • Two main MBE growth techniques have been used: plasma-assisted MBE (PA-MBE), which utilizes a rf plasma to supply active nitrogen, and ammonia MBE, in which nitrogen is supplied by pyrolysis of NH3 on the sample surface during growth. PA-MBE is typically performed under metal-rich growth conditions, which results in the formation of gallium droplets on the sample surface and a narrow range of conditions for optimal growth. In contrast, high-quality GaN films can be grown by ammonia MBE under an excess nitrogen flux, which in principle should result in improved device uniformity due to the elimination of droplets and wider range of stable growth conditions. A drawback of ammonia MBE, on the other hand, is a serious memory effect of NH3 condensed on the cryo-panels and the vicinity of heaters, which ruins the control of critical growth stages, i.e. the native oxide desorption and the surface reconstruction, and the accurate control of V/III ratio, especially in the initial stage of seed layer growth. In this paper, we demonstrate that the reliable and reproducible growth of GaN on Si (110) substrates is successfully achieved by combining two MBE growth technologies using rf plasma and ammonia and setting a proper growth protocol. Samples were grown in a MBE system equipped with both a nitrogen rf plasma source (SVT) and an ammonia source. The ammonia gas purity was >99.9999% and further purified by using a getter filter. The custom-made injector designed to focus the ammonia flux onto the substrate was used for the gas delivery, while aluminum and gallium were provided via conventional effusion cells. The growth sequence to minimize the residual ammonia and subsequent memory effects is the following: (1) Native oxides are desorbed at $750^{\circ}C$ (Fig. (a) for [$1^-10$] and [001] azimuth) (2) 40 nm thick AlN is first grown using nitrogen rf plasma source at $900^{\circ}C$ nder the optimized condition to maintain the layer by layer growth of AlN buffer layer and slightly Al-rich condition. (Fig. (b)) (3) After switching to ammonia source, GaN growth is initiated with different V/III ratio and temperature conditions. A streaky RHEED pattern with an appearance of a weak ($2{\times}2$) reconstruction characteristic of Ga-polarity is observed all along the growth of subsequent GaN layer under optimized conditions. (Fig. (c)) The structural properties as well as dislocation densities as a function of growth conditions have been investigated using symmetrical and asymmetrical x-ray rocking curves. The electrical characteristics as a function of buffer and GaN layer growth conditions as well as the growth sequence will be also discussed. Figure: (a) RHEED pattern after oxide desorption (b) after 40 nm thick AlN growth using nitrogen rf plasma source and (c) after 600 nm thick GaN growth using ammonia source for (upper) [110] and (lower) [001] azimuth.

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Rumen Parameters and Urea Kinetics in Goats and Sheep

  • Darlis, N. Abdullah;Halim, R.A.;Jalaludin, S.;Ho, Y.W.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권7호
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    • pp.922-928
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    • 2000
  • The effects of animal species and supplements on rumen fluid characteristics, plasma urea-N (PUN) concentration, plasma urea-N pool size, urea-N degradation in the gut and urea-N net flux (urea-N synthesis rate) were studied in goats and sheep, with some minor differences detected. The animals were fed either chopped rice straw ad libitum+200 g soybean meal (SBM), or chopped rice straw ad libitum+190 g soybean meal+300 g sago meal (SBM+SM) for 14 days. The supplements were isonitrogenous (80 g crude protein/animal/d). [$^{14}C$]-urea was used as the marker for urea metabolism studies. Two animals from each species were fed either supplement in a cross-over design in two periods. The results showed that rumen pH was significantly (p<0.001) lower in animals fed SBM+SM than those fed SBM supplement. The ammonia concentrations of rumen fluid were significantly (p<0.01) higher in sheep (382.9 mg N/L) than goats (363.1 mg N/L) when fed SBM supplement but lower (282.5 mg N/L) than that of goats (311.0 mg N/L) when fed SBM+SM supplement. Total VFA concentrations were significantly (p<0.05) higher in animals fed SBM+SM supplement than those fed SBM supplement. Goats had significantly (p<0.01) higher molar proportions of acetate (79.1, 77.7%, respectively) than sheep (75.8, 74.0%, respectively) in both supplements. The molar proportion of acetate was significantly (p<0.05) higher, while that of butyrate lower in animals fed SBM supplement than those fed SBM+SM supplement. In animals fed SBM supplement, the molar proportion of propionate was significantly (p<0.01) higher in sheep (18.0%) than in goats (15.6%), but in animals fed SBM+SM, the molar proportion of butyrate was significantly (p<0.01) higher (9.6%) in sheep than in goats (7.2%). Plasma urea-N concentration, plasma urea-N pool size, urea-N degradation in the gut, urea-N net flux and the fraction of urea-C from the blood entering the rumen were not significantly different between goats and sheep fed either supplement. However, PUN concentration was significantly (p<0.05) lower in animals fed SBM+SM supplement (average of 13.8 mg N/100 ml) than in those fed SBM supplement (average of 16.5 mg N/100 ml). The urea net flux was significantly (p<0.05) higher in goats (average of 14.5 g N/d) than sheep (average of 12.9 g N/d), and animals fed SBM supplement showed higher (average of 14.9 g N/d) urea net flux than animals fed SBM+SM supplement (average of 12.9 g N/d). A significant (p<0.05) positive correlation was observed between urea-N net flux and urea-N degradation; urea-N net flux and pool size; urea-N net flux and urea excretion in the urine; and PUN and rumen ammonia in goats. While in sheep, significant (p<0.05) positive correlation was observed between urea-N net flux and urea excretion in the urine; and PUN and rumen ammonia.

산화 전처리가 고강도 질소폐수의 막증류 공정에 미치는 영향 (The Effect of Acidification on Membrane Distillation Process for Strong Nitrogenous Wastewater)

  • ;정다운;배효관
    • 한국물환경학회지
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    • 제36권2호
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    • pp.137-147
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    • 2020
  • A direct contact membrane distillation (DCMD) was applied to treat strong nitrogenous wastewater of anaerobic digestion supernatant (ADS) and human urine (HU). The ammonia transfer was evaluated in terms of specific ammonia transfer (SAT) value, which is the ratio of total ammoniacal nitrogen divided by the amount of water transferred. The acidification resulted in low SAT values and high quality of produced water. The ammonia transfer control in the acidic condition was stronger for HU than ADS due to higher alkalinity (pH 8.8) and ammonia concentration (5700 mg-N/L) of HU. Acidified HU at pH 4 exhibited a SAT value of 1.64 × 10-5, which was significantly smaller than the SAT value of 3.00 × 10-3 for the original HU. The low pH enhanced the water flux for ADS, but HU showed a steep decrease in water flux due to enhanced fouling. It was considered that the fouling intensity in acidic conditions depends on the characteristics of the wastewater source. The major foulants on the MD membrane were NaCl, CaCO3 and CuSO4 as recognized by the SEM-EDS. Acidified ADS and HU at pH 4 showed relatively high N content of 8.18 % and 28.03 %, respectively, as organic fouling.

양이온 교환막에 의한 암모니아 흡착 특성 (Adsorption Characteristic of Ammonia by the Cation-Exchange Membrane)

  • 김민;최혁준;양갑석;허광범;김병식
    • 멤브레인
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    • 제17권1호
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    • pp.54-60
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    • 2007
  • 본 연구에서는 복막 투석 시스템에 있어서, 요소를 가수분해 후 발생하는 암모니아를 제거하기 위하여, 방사선 그라프트 중합법에 의해 다공성 중공사막에 술폰산기($SO_3H$)를 도입시킨 양이온 교환막(이때 얻어진 막을 SS막이라 함)을 합성하였다. 여기에 금속이온(Cu, Ni, Zn)을 이용하여 그라프트 체인을 가교시킨 이온가교형 양이온 교환막(이때 얻어진 막을 SS-M막이라 함)을 합성하여, SS막과 SS-M막의 투과 유속과 암모니아의 흡착에 대하여 고찰하였다. 술폰산기 밀도에 따라 순수투과 유속은 술폰산기 밀도가 높아짐에 따라 투과 유속이 급격히 감소하였으나, 금속 이온이 도입됨에 따라, 투과 유속이 빨라진다는 것을 알 수 있었다. SS막의 경우 암모니아 흡착은 이온교환기 용량에 따라 1 : 1로 흡착되었고, SS-M막 보다 높은 흡착량을 나타났다. 또한, SS막, SS-M막 모두 pH 9에서 가장 높은 흡착량을 나타냈다.

시화호에서 암모니아와 납의 저층용출 (Benthic Fluxes of Ammonia and Lead in Lake Shihwa)

  • 한명우;박용철;허성회
    • 한국해양학회지:바다
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    • 제2권2호
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    • pp.69-77
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    • 1997
  • 염분약층으로 발달한 강력한 성층에 의해 저염분-유산소의 표층수와 고염분-무산소의 저층수로 분리된 시화호의 한 정점에서 퇴적물을 시추하였다. 공극수 암모니아와 납은 매우 높은 농도로 분포하여, 암모니아는 퇴적깊이 9cm에서 1420 ${\mu}M$에 이르고 낚은 3 cm에서 최대 농도 1348 nM에 이른다. 환원상태에서 안정한 암모니아와 납의 고 농도분포는 성층으로 형성된 저층수와 퇴적층의 무산소 환경이 심각한 상태임을 시사한다. 저층수의 고립은 저층용출에 의한 저층수의 수질오염 가능성을 제시한다. 암모니아의 총 저층용출량과 저층수의 암모니아 총량으로부터 저층수의 암모니아 체류시간을 3.1년로 유도하였는데, 이 시간은 방조제 완공후 조사 당시까지의 경과시간 2.5년과 거의 일치한다. 두 시간의 일치는 적어도 암모니아에 대해서 저층수의 수질오염이 대부분 시화호 바닥 퇴적물에서 발원하는 저층용출에 의해 진행되고 있음을 시사한다. 저층수 납의 체류시간은 20일 정도로 상당히 빠르게 나타나는데, 이것은 퇴적물에서 저층수로 용출된 납이 곧바로 침전되어 퇴적물로 돌아옴을 시사한다. 저층수의 높은 황화수소 농도와 쇄설성 입자의 높은 침강량은 납황화물 형태의 침전 가능성을 높여준다.

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수직원관형 GAX 흡수기 내부의 열 및 물질전달과정에 대한 수치모델 (A Numerical Model for Heat and Mass Transfer Processes within a Vertical Tube GAX Absorber)

  • 천태식;정은수
    • 설비공학논문집
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    • 제12권1호
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    • pp.102-111
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    • 2000
  • A numerical model which simulates the simultaneous heat and mass transfer within a vertical tube GAX absorber was developed. The ammonia vapor and the solution liquid are in counter-current flow, and the hydronic fluid flows counter to the solution liquid. The film thickness and the velocity distribution of the liquid film were obtained by matching the shear stress at the liquid-vapor interface. Two-dimensional diffusion and energy equations were solved in the liquid film to give the temperature and concentration, and a modified Colburn-Drew analysis was used for the vapor phase to determine the heat and mass fluxes at the liquid-vapor interface. The model was applied to a GAX absorber to investigate the absorption rates, temperature and concentration profiles, and mass flow rates of liquid and vapor phases. It was shown that the mass flux of water was negligible compared with that of ammonia except the region near the liquid inlet. Ammonia absorption rate increases rapidly near the liquid inlet and decrease slowly. Both the absorption rate of ammonia vapor and the desorption rate of water near the liquid inlet increase as the vapor mass flow rate increases, but the mass fluxes of the ammonia and the water near the liquid outlet decrease as the mass flow rate of the vapor increases.

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Selective Inhibition of Ammonia Oxidation and Nitrite Oxidation Linked to $N_2O$ Emission with Activated Sludge and Enriched Nitrifiers

  • Ali, Toor Umair;Kim, Minwook;Kim, Dong-Jin
    • Journal of Microbiology and Biotechnology
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    • 제23권5호
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    • pp.719-723
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    • 2013
  • Nitrification in wastewater treatment emits a significant amount of nitrous oxide ($N_2O$), which is one of the major greenhouse gases. However, the actual mechanism or metabolic pathway is still largely unknown. Selective nitrification inhibitors were used to determine the nitrification steps responsible for $N_2O$ emission with activated sludge and enriched nitrifiers. Allylthiourea (86 ${\mu}M$) completely inhibited ammonia oxidation and $N_2O$ emission both in activated sludge and enriched nitrifiers. Sodium azide (24 ${\mu}M$) selectively inhibited nitrite oxidation and it led to more $N_2O$ emission than the control experiment both in activated sludge and enriched nitrifiers. The inhibition tests showed that $N_2O$ emission was mainly related to the activity of ammonia oxidizers in aerobic condition, and the inhibition of ammonia monooxygenase completely blocked $N_2O$ emission. On the other hand, $N_2O$ emission increased significantly as the nitrogen flux from nitrite to nitrate was blocked by the selective inhibition of nitrite oxidation.