• 제목/요약/키워드: Ammonia Synthesis

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대두(大豆)의 질소대사(窒素代謝)에 관(關)한 연구(硏究) -III. 유식물(幼植物) 시기(時期)에서의 Glutamine 산(酸)과 Asparagine 산(酸) 및 그 Amide의 소장(消長) (Studies on the Nitrogen Metabolism of Soybeans -III. Variation of Glutamic acid, Aspartic acid and its Amides during the Growth of Yonger Plants)

  • 강영희
    • 한국토양비료학회지
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    • 제3권1호
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    • pp.55-59
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    • 1970
  • 대두(大豆)의 유식물(幼植物)시기에 있어서의 Glutarmine 산, Asparagine 산 및 그 Amide에 대(對)하여 각물질(各物質)의 소장(消長)을 검토하면서 대두내(大豆內)에서의 생합성(生合成)을 구명(究明)하여 보았다. 1. 산성 Amino 산으로의 Glutamine 산과 Asparagine 산의 소장곡선(消長曲線)은 자엽(子葉)에 있어서는 유식물(幼植物)시기 전반기에 있어서는 Glutamine 산, 후반기에 있어서는 Asparagin 산이 peak를 나타내어 성엽발생기를 중심(中心)으로 하여 대(對)칭적인 인상을 주었다. 그러나 배적(胚的)기관에 있어서는 양부위(兩部位)가 모두 성엽이 발생(發生)한 시기에 peak를 나타내었으며 소장곡선(消長曲線)은 거의 비슷한 증감의 현상을 나타냈다. 2. 그 Amide인 Glutamine과 Asparagine은 자엽(子葉)에나 배적(胚的)기관에서도 성엽이 발생한 시기에 peak를 나타냈으며 배적(胚的)기관에 있어서의 자엽(子葉)탈락시기에서의 감소에 비하여 자엽(子葉)에서의 급격한 증가는 대단히 인상적이다. 3. Glutamine 산과 Glutamine의 소장(消長)관계를 보면 둘다 자엽(子葉)에서 배적(胚的)기관으로 이동한 사실은 발견(發見)되었으나 그밖의 Glutamine 산은 식물(植物)의 함질소성분으로서 Ammonia를 받아드리기 위한 중요한 입구적(入口的)인 기능과 Glutamine 산 자체(自體)로서 타(他) Amino 산의 전구물질(前驅物質)인 역활을 다하고 있음을 추측할 수 있었다. 또 Glutamine의 경우는 후반기에 들어와서는 그의 가수(加水)분해로서 발생(發生)하는 Ammonia의 생성기구가 자엽(子葉)이 탈락하기 직전에는 그 기능이 상실되었음을 시사하여 주었다. 4. Asparagine 산과 Asparagine 과의 관계에서는 종자(種子) 상태(狀態)부터 감소하기 시작한 Asparagine 산은 배적(胚的)기관에 이동한 이외에도 Asparagine의 형성에 전구적(前驅的)인 물질(物質) 역할을 충분히 하여 주었다고 생각되었다. 그리고 Kreb's 회로의 생성물(生成物)로서 간주되는 Asparagine 산의 형성론(形成論)은 후반기부터 인정하게 되었다. 또 Asparagine의 함유량의 급격한 축적은 각세포(各細胞)에서 발생(發生)한 Ammonia의 농도를 유해량(有害量) 이하는 억제하기 위하여 Asparagine의 형태로 전환했다고 생각하는 설(說)과 자엽내(子葉內)에 과도(過度)하게 함유(含有)하고 있던 $NH_3$와 탄수화물로 형성 집적(集積)되어 있다는 두가지 설(說)로 적응시킬 수 있었다. 5. Amide는 발아중 또는 삼성물(森成物)에서의 경우라도 외부(外部)에서 Ammonia의 공급이 충분하면 형성량(形成量)도 많아지는데 대두내(大豆內)에 있어서는 외부(外部)에서의 공급 없이도 상당량의 Amide가 형성(形成)되었다. 이것은 대두(大豆)의 특징이 되기도 하며 특(特)히 Glutamine 보다는 Asparagine이 다량 생성되었다.

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Quantitative Comparison of Diversity and Conformity in Nitrogen Recycling of Ruminants

  • Obitsu, T.;Taniguchi, K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제22권3호
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    • pp.440-447
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    • 2009
  • Domestic ruminant animals are reared in diverse production systems, ranging from extensive systems under semi-arid and tropical conditions with poor feed resources to intensive systems in temperate and cold areas with high quality feed. Nitrogen (N) recycling between the body and gut of ruminants plays a key role in the adaptation to such diverse nutritional conditions. Ammonia and microbial protein produced in the gut and urea synthesized in the liver are major players in N-recycling transactions. In this review, we focus on the physiological factors affecting urea production and recycling. Sheep and buffalo probably have higher abilities to reabsorb urea from the kidney compared with cattle. This affects the degree of urea-N recycling between the body and gut at both low and high N intakes. The synthesis and gut entry of urea also differs between cattle bred for either dairy or beef production. Lactating dairy cows show a higher gut entry of urea compared with growing cattle. The synthesis and recycling of urea dramatically increases after weaning, so that the functional development of the rumen exerts an essential role in N transactions. Furthermore, high ambient temperature increases urea production but reduces urea gut entry. An increase in total urea flux, caused by the return to the ornithine cycle from the gut entry, is considered to serve as a labile N pool in the whole body to permit metabolic plasticity under a variety of physiological, environmental and nutritional conditions.

Effects of Formalin Treated Soy Bean as a Source of Rumen Undegradable Protein on Rumen Functions of Non-lactating Dairy Cows on Concentrate Based-diets

  • Kanjanapruthipong, J.;Vajrabukka, C.;Sindhuvanich, S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권10호
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    • pp.1439-1444
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    • 2002
  • An objective of this study was to determine the effects of increasing contents of rumen undegradable protein (RUP) from formalin treated soy bean (FSBM) on rumen functions. Four rumen canulated non-lactating cows were randomly allocated to total mixed rations (TMR) containing different proportions of soy bean meal (SBM) and FSBM. Of rumen fermentation characteristics, concentrations of ruminal fluid ammonia and molar proportions of isoacids decreased with increasing contents of RUP in diets (p<0.01). The animals on TMR containing only SBM gained less weight and had smaller rumen volume than those on TMR containing RUP from FSBM (p<0.05). Organic matter and neutral detergent fiber digestibility in sacco were not different (p>0.05). The density of protozoa particularly small Entodinium sp. in ruminal fluid was higher in animal fed TMR containing SBM:FSBM (34:66) and FSBM than those fed TMR containing SBM:FSBM (66:34) and SBM (p<0.01). Total viable count, and net microbial protein synthesis as indicated by purine derivatives in urine increased with increasing contents of RUP from FSBM (p<0.01). It can be concluded that a reduction in net microbial protein synthesis in the rumen with increasing contents of RUP in the diet can be due to the reduction of preformed protein available for microbial growth as well as an increased turnover rate of microbial cells by predatory activity of protozoa.

Synthesis of Iron-loaded Zeolites for Removal of Ammonium and Phosphate from Aqueous Solutions

  • Kim, Kwang Soo;Park, Jung O;Nam, Sang Chul
    • Environmental Engineering Research
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    • 제18권4호
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    • pp.267-276
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    • 2013
  • This study presents a comparison of different protocols for the synthesis of iron-loaded zeolites, and the results of their application, as well as that of zeolite-A (Z-A), to the removal of ammonium and phosphate from aqueous media. Zeolites prepared by three methods were evaluated: iron-incorporated zeolites (IIZ), iron-exchanged zeolites (IEZ), and iron-calcined zeolites (ICZ). The optimal iron content for preparing of IIZ, as determined via scanning electron microscopy and X-ray photoelectron spectroscopy analyses, expressed as molar ratio of $SiO_2:Al_2O_3:Fe$, was below 0.05. Ammonia removal revealed that the iron-loaded zeolites have a higher removal capacity than that of Z-A due, not only to ion-exchange phenomena, but also via adsorption. Greater phosphate removal was achieved with IEZ than with ICZ; additionally, no sludge production was observed in this heterogeneous reaction, even though the coagulation process is generally accompanied by the production of a large amount of undesired chemical sludge. This study demonstrates that the developed synthetic iron-loaded zeolites can be applied as a heterogeneous nutrient-removal materials with no sludge production.

Effect of Niacin Supplementation on Rumen Metabolites in Murrah Buffaloes (Bubalus bubalis)

  • Kumar, Ravindra;Dass, R.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권1호
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    • pp.38-41
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    • 2005
  • An experiment was conducted on 3 male rumen fistulated adult buffaloes fed on wheaten straw and concentrate mixture in a Latin square design to study the impact of niacin supplementation on rumen metabolites. Three animals were fed wheaten straw+concentrate mixture (group I, control), wheaten straw+concentrate mixture+100 ppm niacin (group II), and wheaten straw +concentrate mixture+200 ppm niacin (group III). After 21 days feeding, rumen liquor was drawn for 3 consecutive days at different time intervals (0, 2, 4, 6 and 8 h) to study the various rumen metabolites i.e., rumen pH, ammonia-N, total-N, trichloroacetic acid precipitable-N, non-protein nitrogen, total volatile fatty acids, their fractions and number of protozoa. Mean pH values in strained rumen liquor (SRL) of animals in 3 groups were 6.64, 6.71 and 6.67, indicating no statistically significant difference. Results revealed a significant (p<0.01) increase in TVFA concentration among the supplemented groups (group II and III) in comparison to control group. Mean TVFA concentration (meq/dl) was 9.75, 10.97 and 11.44 in 3 groups respectively. The highest concentration of TVFA was observed at 4 h and minimum at 0 h in all the 3 groups. The percentage of acetic, propionic, butyric and isobutyric acid was statistically similar among the three groups. The mean ammonia-N concentration (mg/dl SRL) was significantly (p<0.01) lower in group II (16.38) and group III (15.42) than group I (18.14). Ammonia-N concentration was higher (p<0.01) at 4 h as compared to all the time intervals. The mean total-N concentration (mg/dl SRL) was higher (p<0.01) in group II (74.16) and group III (75.47) as compared to group I (62.04). Total-N concentration was higher (p<0.01) at 4 h as compared to other time intervals and lowest value was recorded at 0 h.Concentration of TCA-ppt-N (mg/dl SRL) was significantly (p<0.01) lower in control group as compared to niacin supplemented groups. Mean value of NPN (mg/dl SRL) was significantly (p<0.01) lower in group III (23.21) as compared to group I (25.71), whereas groups I and II, and groups II and III were similar to each other. Total protozoa number (${\times}10^4$/ml SRL) ranged from 18.06 to 27.41 in group I, 20.89 to 38.44 in group II and 27.61 to 39.45 in group III. The mean protozoa number was significantly (p<0.01) higher in SRL of group II (27.60) and III (30.59) as compared to group I (22.48). It can be concluded from the study that supplementation of niacin in the diet of buffaloes had improved the rumen fermentation by decreasing the concentration of ammonia-N and increasing protein synthesis.

진공튜브 속에서 분해하는 리튬암모니아 솔루션의 열전효율 향상 (Thermoelectric Efficiency Improvement in Vacuum Tubes of Decomposing Liquid Lithium-Ammonia Solutions)

  • 이정윤;김미애;심규철;김지범;전준현
    • Korean Chemical Engineering Research
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    • 제51권3호
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    • pp.358-363
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    • 2013
  • 순수한 리튬-암모니아(Li-$NH_3$) 솔루션의 생성은 진공 상태에서 가능하지만, 고효율 열전전력을 얻기 위한 안정적이고 신뢰성 있는 분해에 대한 문제가 아직 남아있다. 본 논문은 Li-$NH_3$ 솔루션의 열전변환 효율을 향상시키기 위한 새로운 방법을 다루었다. 제안된 방법은 Li-$NH_3$ 솔루션의 합성과 분해를 위해 'U' 형태의 파이렉스 진공 튜브를 사용하였다. 튜브 상부에는 기존 'U' 형태의 파이렉스 진공 튜브의 두 다리를 연결하는 기체의 이동통로가 있는데, 이는 고온부(Hot side)에서 분해가 진행될 때 $NH_3$ 기화에 따른 양단의 내부압력 불균형을 방지하는 역할을 한다. 열전 실험결과, 'U' 형태 튜브 속에서 솔루션 반응은 기존 'U' 형태에 비해 매우 안정적이고 효율적으로 이루어졌으며, 결과적으로 열전변환 효율이 향상됨을 보였다. 또한, 제안 방식은 장시간에 걸친 고효율 열전 발전을 위해 튜브 속에서 합성과 분해가 순환되는 가역반응을 제공함이 입증되었다.

바나디움 산화물의 환원 및 질화반응으로부터 얻어진 바나디움 산화질화물의 제조, 특성분석 및 암모니아 분해반응에서의 촉매 활성 (Synthesis, Characterization and Ammonia Decomposition Reaction Activity of Vanadium Oxynitride Obtained from the Reduction/Nitridation of Vanadium Oxide)

  • 윤경희;신채호
    • Korean Chemical Engineering Research
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    • 제60권4호
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    • pp.620-629
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    • 2022
  • 가열 속도, 몰 공간속도, 질화반응온도 등 다양한 실험 조건을 변화하며 바나디움 산화물과 암모니아와의 승온 질화반응을 통하여 바나디움 산화질화물을 제조하여 특성분석을 수행하였으며 제조된 바나디움 산화질화물 상에서 암모니아 분해반응의 촉매 활성을 검토하였다. 제조된 촉매의 물리·화학적 특성을 알아보기 위하여 N2 흡착분석, X-선 회절분석(XRD), 수소 승온환원(H2-TPR), 산소 존재 하 승온산화 (TPO), 암모니아 탈착 (NH3-TPD), 투과전자현미경(TEM) 분석을 수행하였다. 340 ℃에서 5 m2 g-1의 낮은 비표면적을 갖는 V2O5의 환원에 의하여 V2O3 으로의 변환은 미세 기공 형성에 의해 115 m2 g-1 높은 비표면적 값을 보여주었으며 그 이상의 질화반응 온도가 증가함에 따라 소결현상에 의해 지속적인 비표면적의 감소를 초래하였다. 비표면적에 가장 큰 영향을 미치는 질화반응 변수는 반응온도였으며, 단일 상의 VNxOy의 x + y 값은 질화반응온도가 증가함에 따라 1.5에서 1.0으로 근접하였으며 680 ℃의 높은 반응온도에서 입방 격자상수 a는 VN 값에 근접하였다. 본 실험 조건 중에 질화반응온도가 가장 높았던 680 ℃에서 암모니아 전환율은 93%로 나타났으며 비활성화는 관찰되지 않았다.

Effects of the Pattern of Energy Supply on the Efficiency of Nitrogen Utilization for Microbial Protein Synthesis in the Non-Lactating Cows Consuming Grass Silage

  • Kim, K.H.;Lee, S.S.;Jeon, B.T.;Kang, C.W.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권7호
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    • pp.962-966
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    • 2000
  • Effects of the pattern of energy supply on the efficiency of nitrogen utilization for microbial protein synthesis (MPS) were examined in cows consuming grass silage (7.1 kg DM/d) and supplement of 1 kg sucrose per day given as an intraruminal infusion. Three non-lactating cows received three experimental treatments in a $3{\times}3$ Latin square design with each period lasting 14 days. The treatments were (1) the basal diets of silage alone given in one meal each day at 09:30 h (BASAL), supplemented with (2) 1.0 kg sucrose given a 4-h infusion starting at 09:30 h (SYNC), (3) 1.0 kg sucrose given a continuous infusion for 24 h (CONT). Compared with BASAL, sucrose infusions altered (p<0.05) the pattern of variation in ruminal pH and the concentration of ammonia at 4 h after feeding but none of the sucrose treatments resulted in any changes in the ruminal concentration of VFA. All sucrose treatments increased (p<0.05) MPS relative to BASAL by 14% and 33% for SYNC and CONT, respectively, and that for CONT was greater (p<0.05) than for SYNC. It is concluded that synchronization of energy and nitrogen over the shorter term has no further advantage of the efficiency for MPS relative to CONT.

Preparation of Alumina Powder with Special Morphology

  • Ma, Chicheng;Zhou, Xuesi;Zhu, Tun
    • 한국결정성장학회:학술대회논문집
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    • 한국결정성장학회 1997년도 Proceedings of the 12th KACG Technical Meeting and the 4th Korea-Japan EMGS (Electronic Materials Growth Symposium)
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    • pp.3-5
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    • 1997
  • Synthesis of ammonium aluminum hydrogen carbonate(AAHC) via reaction of aluminum bicarbonate and aluminum salt and thermal decomposition is oner of the important processes for preparation of high pure and ultra fine alumina. Kato and coworkers[1] developed this process, at same time Von Erdos and Altorfe[2] found AAHC in the corrosive products of aluminum in the atmosphere of carbon dioxide and ammonia. Murase and Iga[3] synthesized acicular AAHC in a autoclave under 60 to 12$0^{\circ}C$ Hayashi[4] optimized the conditions for preparation of AAHC and alumina. Attemp has been made in this paper to reveal the conditions affect the morphology of the synthesized AAHC and the consequently produced alumina.

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UREA IN POULTRY NUTRITION - REVIEW -

  • Chowdhury, S.D.;Roy, C.R.;Sarker, A.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제9권3호
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    • pp.241-245
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    • 1996
  • A chronological account of the prospect and problems of utilization of urea in poultry diets is presented. Urea has long been considered as toxic to poultry but recent research, although limited, has yielded controversial results. The main problem appears to be due to the fact that whether or not response to urea is dependent on environment (germ free versus conventional). Although caecum is found to be the major site of ammonia production from urea, the so called nutritional benefit derived by chicken fed urea is probably limited to its utilization for the synthesis of nonessential amino acids in the protein depleted chicken, but not in the protein adequate chicken. More research is needed to monitor production characteristics of birds fed urea and investigate its toxic effect, if any, in some greater detail before recommending this nonprotein nitrogenous substance for inclusion in the poultry diets.