• 제목/요약/키워드: nitrogen use efficiency

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Latex 피복요소시용(被覆尿素施用)이 어린모기계이앙(機械移秧) 벼의 질소이용효율(窒素利用效率)과 수량(收量)에 미치는 영향 (Effects of Application of Latex Coated Urea on Yield and Nitrogen-Use Efficiency for 10-day Old Seedling Machine Transplanted)

  • 유철현;강승원;신복우;한상수;김성조
    • 한국토양비료학회지
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    • 제32권2호
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    • pp.140-146
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    • 1999
  • 본 연구(硏究)는 2년간('97~'98) 이상고온(異常高溫)해에 벼 어린모 기계이앙비재배시(機繼移秧秘栽培時) 완효성비료(緩效性肥料)(LCU)의 시용(施用)에 따른 시비질소(施肥室素)의 토양중(土壤中) $NH_4-N$ 발현량(發現量), 질소흡수량(室素吸收量) 및 이용율(利用率), 수량성(收量性) 변이(變異)를 조사하기 위하여 호남평야지(湖南平野地) 논토양의 대표토양(代表土壤)인 전북통(全北統)에서 시험한 결과로 다음과 같이 요약할 수 있다. 시비질소(施肥窒素)의 용출(溶出)은 완효성비료(緩效性肥料)의 기비전량(基肥全量) 전층시비시(全層施肥時) 이앙후(移秧後) 50일인 최고분벽기(最高分蘗期)에 거의 완료(完了)되었으며 최고발현기(最高發現期)는 무효분벽기(無效分蘗期)였다. 또 관행(慣行)의 표층시비(表層施肥)에서는 전기간 $NH_4-N$함량(含量)이 낮았다. 완효성비료(緩效性肥料) 시용구(施用區)의 출수기(出穗期) 비절현상(肥切現象)은 SPAD 31.6에서 나타났으며 경엽(莖葉)중 질소농도(窒素濃度)는 1.29%였다. 시비질소(施肥室素) 필요량(必要量)은 출수기(出穗期)~성숙기(成熟期)까지 관행(慣行)은 $2.9kg\;ha^{-1}$였으나 완효성비료(緩效性肥料)의 기비전량(基肥全量) 전층시비구(全層施肥區)에서는 $11.9kg\;ha^{-1}$로 많았다. 질소이용율(窒素利用率)은 관행(慣行)에 비하여 완효성비료(緩效性肥料) 시용구(施用區)에서 높았고 수비(穗肥)를 시용(施用)하므로서 12.7%가 더 증가(增加)되었다. 쌀수량(收量)은 완효성비료(緩效性肥料)를 기비(基肥)로만 시용(施用)한 것에 비하여 수비(穗肥)를 시용(施用)하므로서 13%의 증수(增收)를 보였다.

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Effects of Charcoal Application on Ammonia Emission and Nitrogen Use Efficiency of Pig Slurry in the Vegetative Growth of Maize (Zea Mays L.)

  • Lee, Seung Bin;Park, Sang Hyun;Kim, Tae Hwan
    • 한국초지조사료학회지
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    • 제41권4호
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    • pp.280-286
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    • 2021
  • The objective of this study was to prove the effect of pig slurry application with charcoal on nitrogen use efficiency (NUE), feed value and ammonia (NH3) emission from maize forage. The four treatments were applied: 1) non-pig slurry (only water as a control), 2) only pig slurry application (PS), 3) pig slurry application with large particle charcoal (LC), 4) pig slurry application with small particle charcoal (SC). The pig slurry was applied at a rate of 150 kg N ha-1, and the charcoal was applied at a rate of 300 kg ha-1 regardless of the size. To determine the feed value of maize, crude protein, dry matter intake, digestible dry matter, total digestible nutrient, and relative feed value were investigated. All feed value was increased by charcoal treatment compared to water and PS treatment. Also, the NUE for plant N was significantly higher in charcoal treatments (LC and SC) compared to PS treatment. On the other hand, there is no significant difference for feed value and NUE between LC and SC. The NH3 emission was significantly reduced 15.2% and 27.9% by LC and SC, respectively, compared to PS. Especially, SC significantly decreased NH3 emission by 15% compared to LC. The present study clearly showed that charcoal application exhibited positive potential in nitrogen use efficiency, feed value and reducing N losses through NH3 emission.

Physiological and Genetic Mechanisms for Nitrogen-Use Efficiency in Maize

  • Mi, Guohua;Chen, Fanjun;Zhang, Fusuo
    • Journal of Crop Science and Biotechnology
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    • 제10권2호
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    • pp.57-63
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    • 2007
  • Due to the strong influence of nitrogen(N) on plant productivity, a vast amount of N fertilizers is used to maximize crop yield. Over-use of N fertilizers leads to severe pollution of the environment, especially the aquatic ecosystem, as well as reducing farmer's income. Growing of N-efficient cultivars is an important prerequisite for integrated nutrient management strategies in both low- and high-input agriculture. Taking maize as a sample crop, this paper reviews the response of plants to low N stress, the physiological processes which may control N-use efficiency in low-N input conditions, and the genetic and molecular biological aspects of N-use efficiency. Since the harvest index(HI) of modern cultivars is quite high, further improvement of these cultivars to adapt to low N soils should aim to increase their capacity to accumulate N at low N levels. To achieve this goal, establishment and maintenance of a large root system during the growth period may be essential. To reduce the cost of N and carbon for root growth, a strong response of lateral root growth to nitrate-rich patches may be desired. Furthermore, a large proportion of N accumulated in roots at early growth stages should be remobilized for grain growth in the late filling stage to increase N-utilization efficiency. Some QTLs and genes related to maize yield as well as root traits have been identified. However, their significance in improving maize NUE at low N inputs in the field need to be elucidated.

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Comparison of the Efficiency of Absorbed Nitrogen Use from Different Protein Sources in Diets Having Similar Amino Acid Balance

  • Lee, K.U.;Boyd, R.D.;Austic, R.E.;Ross, D.A.;Han, In K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제11권6호
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    • pp.725-731
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    • 1998
  • Nine crossbred female pigs fitted with the bladder catheters were used to investigate the effects of dietary protein form on the efficiency of absorbed nitrogen for nitrogen retention in growing pigs. Combinations of the main protein sources were corn-soybean meal (CSM; slow + slow absorption rate form), corn-hydrolyzed casein (CAS; slow + rapid absorption rate form) and corn-porcine plasma (CPL; slow + intermediate absorption rate form). All experimental diets were formulated to be isonitrogenous (CP 11%) and isocaloric (3.5 Mcal/kg) and synthetic amino acids were added to the diet as required to maintain an equivalent amino acid profile among diets. Fecal digestibility of nitrogen was not different among treatments (p > 0.10). Ingested nitrogen was absorbed with an apparent efficiency of 82% to 84%. Mean nitrogen retention in pigs fed the CSM diet was as high as for pigs fed the CPL diet (0.74 g N/kg $BW^{0.75}$ per d), which was higher than the N retention rate in pigs fed CAS diet (0.68 g/kg $BW^{0.75}$ per d; P < 0.05). Apparent biological values (ABV = 100 ${\times}$ N retention/absorbed nitrogen) were 63.3%, 58.0% and 61.6% for CSM, CAS, and CPL groups, respectively (p < 0.05). There was no difference in mean energy digestibility among treatments. The efficiency of absorbed lysine utilization was significantly different among treatments (p < 0.05). Pigs fed the CAS diet were inferior to counterparts on the other diets in utilizing absorbed lysine. The ratios of free (and small peptide-bound) to protein-bound amino acids in CSM diet differed considerably from the CAS diet. This may affect the efficiency of amino acids utilization for nitrogen retention if hydrolyzed and intact amino acid pools reach the blood at different times.

중질소(重窒素)를 이용(利用)한 수도품종(水稻品種) 및 시용시기(施用時期)에 따른 토양(土壤) 및 시비(施肥) 질소(窒素)의 효율(效率) -V 포장(圃場)에서 ^{15}N$의 국지시용(局地施用)- (Efficiency of Soil and Fertilizer Nitrogen in Relation to Rice Variety and Application Time, Using ^{15}N$ Labeled $Fertilizer_{1)}$ -V. ^{15}N$ Point application in fields-)

  • 박훈;목성균;석순종
    • Applied Biological Chemistry
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    • 제25권4호
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    • pp.232-238
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    • 1982
  • 농가포장(農家圃場)(13개소(個所))에서 중질소비시험결과(重窒素肥試驗結果) 80%의 포장(圃場)에서 이용율(利用率)은 감법(減法)의 경우가 표식법(標識法)의 경우보다 높았으며 비료질소(肥料窒素)에 의(依)한 토양질소흡수(土壤窒素吸收)가 조장(助長)된 것을 나타낸다. 이 두 방법(方法)의 값은 포장간(圃場間)에에 류사(類似)한 경향(傾向)을 보였다. 황피뇨소(黃皮尿素)와 국지시용(局地施用)은 시비효율(施肥效率)(시비질소(施肥窒素) 당증수량(當增收量), Fe)을 분시(分施)의 15에서 23으로 증대(增大)시켰는데 이는 이용율(利用率)(Ef)을 29에서 50으로 증대시킨 때문이며 흡수시비질소효율(吸收施肥窒素效率)(Ef)은 50에서 46으로 감소하는 경향(傾向)을 보였다. 통일계(統一系)의 다수확능(多收穫能)은 흡수시비질소효율(吸收施肥窒素效率), 전이율(轉移率) 및 토양질소선호지수(土壤窒素選好指數)(시비질소흡수증가량(施肥窒素吸收增加量)에 대(對)한 토양질소흡수증가량(土壤窒素吸收增加量)의 비(比) PI)가 큰데 기인한 것 같다. 일련의 본(本) 연구(硏究)는 시비체계하(施肥體系下)의 수량(收量)은 이용율(利用率)과 흡수시비질소효율(吸收施肥窒素效率)의 적(積)인 시비효율(施肥效率)에 의존(依存)하며 비료(肥料)의 형태(形態)나 시비시기(施肥時期) 및 방법(方法) 등(方法) 시비관리(施肥管理)는 주(主)로 이용율(利用率)을 증대(增大)시키고 이용율(利用率)의 한계(限界)는 품종(品種) 특성(特性)에 주(主)로 기인(基因)하는 흡수시비질소효율(吸收施肥窒素效率)에 의(依)하여 조정(調整)됨을 보였다.

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중질소(重窒素)를 이용(利用)한 수도품종(水稻品種) 및 시용시기(施用時期)에 따른 토양(土壤) 및 시비질소(施肥窒素)의 효율 III. $^{15}N$ 비료(肥料)의 추비포장시험(追肥圃場試驗) (Efficiency of Soil and Fertilizer Nitrogen in relation to Rice Variety and Application Time, Using $^{15}N$ Labeled Fertilizer III. Top-dressing with $^{15}N$ fertilizer in fields)

  • 박훈;석순종
    • Applied Biological Chemistry
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    • 제25권3호
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    • pp.142-149
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    • 1982
  • 유수형성기추비(幼穗形成期追肥)(30%)한 표식질소(慓識窒素)의 이용율(利用率)은 $23{\sim}61%$(5개포장(個圃場))였으며 품종간차이(品種間差異)가 없었다. 고수답(高收沓)에서 추비질소(追肥窒素)의 이용율(利用率)이 컸으며 식물체내비료(植物體內肥料) 유래질소(由來窒素)의 50% 이상(以上)이 유수형성기이후(幼穗形成期以後)에 흡수(吸收)된 것으로 보였다. 정조(正租)에서 중질소과잉율(重窒素過剩率)이 가장 컸으며 이는 추비(追肥)된 질소(窒素)가 정조(正租)로 쉽게 전류(轉流)됨을 나타낸다. 일반계(一般系)보다 통일계(統一系)에서 정조(正租)와 엽간(葉間)의 중질소과잉율(重窒素過剩率)의 차이(差異)가 커서 통일계(統一系)에서 질소(窒素)의 전류(轉流)가 빠른것을 나타낸다. 지상부추비유래질소(地上部追肥由來窒素)는 $14{\sim}27%$였다. 특별(特別)한 관리(管理)를 한다면 포장조건(圃場條件)에서 중질소이용(重窒素利用)한 시험(試驗)은 처리당(處理當) 2구(區)에 구당(區當) 3주(株)로 충분(充分)할 것 같다.

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하수슬러지를 이용한 Bio-block의 비점오염물질 제거 가능성 평가 (Evaluation of the Feasibility of Eliminating Non-point Source Pollution Using Waste Sewage Sludge Bio-blocks)

  • 한상무;김도형;정병곤
    • 한국물환경학회지
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    • 제37권5호
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    • pp.363-368
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    • 2021
  • On the assessment results of the non-point source pollutant removability of bio-block using waste sewage sludge, at the reactor's initial operation stage, the removal efficiency of COD was slightly unstable. However, after the reactor was stabilized, the COD removal efficiency was higher in the reactor filled with bio-blocks compared to the reactor filled with broken stones. In terms of nitrogen and phosphorus, their removal efficiency was unstable at the initial stage of the reactor operation. This phenomenon was investigated through the bio-block elution experiments. Results indicated that nitrogen and phosphorus were eluted from the bio-blocks affecting their removal at the initial operation. Furthermore, based on elution tests conducted after the dry ashing of the waste sewage sludge, part of the nitrogen and phosphorus was eluted similar to the bio-block elution test results, although considerable amounts of nitrogen and phosphorus were reduced compared to the sludge cake. Prior to the use of the waste sewage sludge bio-blocks as a filter medium to remove non-point source pollutants, a stabilization period of 10 days was required. After the stabilization process, results showed similar characteristics as general aggregates. Moreover, to use the bio-block as a filter medium for the non-point pollutant removal, the filling ratio of 75% was the most suitable as it resulted in the highest nitrogen removal efficiency after the stabilization. The results of this study suggested that waste sewage sludge can be suitably recycled as a mixed raw material for the bio-blocks, with satisfactory application as a filter medium in artificial wetlands, stormwater runoff problems, stream water pollutants to eliminate non-point source pollutants.

Influence of the Lysine to Protein Ratio in Practical Diets on the Efficiency of Nitrogen Use in Growing Pigs

  • Lee, K.U.;Boyd, R.D.;Austic, R.E.;Ross, D.A.;Han, In K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제11권6호
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    • pp.718-724
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    • 1998
  • Twelve gilts were used to investigate the effect of lysine to protein ratio (5.2 g lysine/100 g CP vs. 6.7 g lysine/100 g CP) in practical diets on nitrogen retention and the efficiency of utilization in growing pigs. Treatments involved 2 levels of dietary lysine (5.2 or 6.7 g/100 g CP) and 3 levels of dietary crude protein (11, 14 and 17% in diet). Nitrogen retention was greatest when pigs were fed the control diet containing 17% protein. Nitrogen retention progressively increased as dietary protein increased (p < 0.01), but it was not affected by lysine concentration (g/100 g CP). Apparent biological value (ABV, nitrogen retained/apparently digestible nitrogen) was estimated to be ~50% at the maximum nitrogen retention. ABV was not affected by lysine concentration, but declined (p < 0.05) as the dietary protein level increased. The efficiency of intake N used for maximum nitrogen retention was approximately 44%. One gram of lysine supported approximately 9 to 10 g apparent protein accretion (nitrogen retention ${\times}$ 6.25/lysine intake) in pigs fed control diets. The efficiency of lysine utilization for protein accretion was lower in pigs fed high-lysine diets (6.7 g lysine/l00 g CP) so that 1 g of lysine accounted for 7 to 8 g of protein accretion in these pigs (p < 0.01). The lysine required to support maximum nitrogen retention in pigs fed high-lysine diets was higher than that in pigs fed control diets, which suggests that lysine was over-fortified relative to crude protein, since practical diets can not be formulated without excess of some amino acids. In summary the concentration of 5.2 g total lysine/100 g CP in diet is more appropriate for corn-soybean diets than the commonly suggested the content of 6.7 g total lysine/100 g CP.

습식 스크러버를 이용한 NOx 제거에 관한 연구 (The Simultaneous removal of NOx using Wet Scrubber)

  • 김재강;이주열;박병현;최진식
    • 한국응용과학기술학회지
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    • 제32권2호
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    • pp.296-301
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    • 2015
  • The experiment was performed for in order to remove NOx which is generated in the Ship's engine. it was performed test in order to remove NOx which is generated in the Ship's engine. It was used as the oxidizing agent sodium chlorite. Use the oxidizer is nitrogen monoxide was oxidized to nitrogen dioxide. and was tested pH adjustment to increase the efficiency of oxidizing. An aqueous solution of sodium hydroxide was used for the nitrogen dioxide absorbent. Low concentration of the solution, it showed a high efficiency. improves the absorption efficiency by add additives.