• Title/Summary/Keyword: 요인분해

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Analysis on the cause inducing an uncorrected disparity and distorted depth information by the image distance in stereo camera system (상거리에 따른 시차량의 변화 및 깊이 정보의 왜곡에 대한 연구)

  • Lee, Kwang-Hoon;Kim, Dong-Wook;Kwon, Yong-Moo;Chang, Eun-Young;Kim, Sung-Kyu
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.11B
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    • pp.1320-1327
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    • 2009
  • In stereoscopy using stereo camera system, the representative factors inducing stereoscopic depth distortions have been reported such as the inter camera distance, the convergence angle and the depth resolution. The image distance is just known to us as a factor related in optical system. In a point of view of depth distortion, it will be a factor inducing a stereoscopic depth distortion. In this paper, we focused on the proof of our opinion that the image distance is one of the weighted factors inducing depth distortion under orthostereoscopic condition.

발효를 통한 적절한 소재(ingredient) 개발

  • Gu, Gyeong-Hyeong
    • Bulletin of Food Technology
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    • v.15 no.3
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    • pp.112-124
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    • 2002
  • 발효란"박테리아,곰팡이,효모의 효소에 의해 일어나는 계속적인 변화"로 규정한다. 발효에 의해 일어나는 화학적 변화의 예를 들면 우유의 acidulation. 전분의 분해.설탕이 알콜과 이산화탄소로 변화되는 것과 질소 유기화합물의 산화등이 있다. 배지, 온도, 소금, 산도 배양 용기 및 시간과 같은 몇몇 요인이 발효 과정에 중요한 역할을 한다. 사실 발효식품 제조에 있어서 제품의 향미,텍스쳐,아로마 기타 다른 요소들이 어느 정도의 발효시간에 따라 차이가 있기때문에 단순히 급하게 서두를 수도 없다. 빵, 맥주, 사이다, 와인, 치이즈와 요구르트류의 식품과 음료는 발효과정을 통해 만들어진다. 이들 제품 이외에 어떤 제품은 다른 식품 제조에 이용될 수 있는데, 광의의 이들 식품 소재는 새롭고 기발한 발효기법 뿐아니라 전통적인 기법을 사용해서 생산 되기도 한다. 예를 들면 잔탄검(xanthan gum)은 고분자 폴리사카라드로 Bacterium xanthomona campestris를 이용한 발효과정을 통해 생산되는데 기질로서 설탕을 사용한다 젤란검(Gellan Gum)은 수용성 폴리사카이라이드로 Sphingomonas elodea 순수균의 발효에 의해 생산된다. 이와 같은 다중 기능의 하이드로콜로이드는 IFT Food technology 산업 성공상을 수년에 걸쳐 받았고, 제조업자들은 이것을 증점제, 안정제, 조직강화제로 이용했다. 최근 식품, 음료와 의약품에 사용하는 소이이소플라본(soy isoflavone)이 주목을 받고 있다. 소이이소프라본 중 제니스데인(genistein). 다이드제인(daizein)과 글라이스데인(glycitcin) 같은 soy sioflavone이 건강에 이익을 준다고 연구되었고, 독자적인 발효 과정으로 건강 증진과 기능성을 준다는 이들 성분이 더 많이 함유하는 대두 제품을 내놓고 있다. 본문에서는 12개 발효소재(ingredients)를 살펴보고 이들의 최근 개발동향을 재조명해 보았다. 이들의 개발동향은 시간이 결정적인 요인이 될 수 있는 발효과정을 사용하기 때문에 시기적으로 적절하게 인식될 수 있을뿐만 아니라, 건강, 장점,향미와 관련된 오늘날의 시장경향일 수도 있다.

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Forage Preservation (조사료 조제 및 저장)

  • 신정남
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.12 no.3
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    • pp.134-140
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    • 1992
  • 사일리지의 사양가치에 가장 크게 영향을 미치는 요인은 사초의 종류에 기인되는 화학조성분이며 사일리지를 적기에 제조하므로 단위면적당 최고의 양분수량을 거둘 수 있다. 유기산의 생성량이 많고 낙산이나 암모니아태질소의 함량이 많으면 사일리지의 품질이 떨어지고 섭취량이 감소되므로 사일리지 품질 증진을 위한 연구방향은 발효를 감소시키고 단백질의 분해를 막는 것이다. 사일리지의 발효에 영향을 미치는 중요한 요인으로는 사초의 화학조성분인 수분, 수용성탄수화물 등과 제조기술에 크게 좌우되는 공기(산소)혼입량이다. 재료의 수분함량은 사일리지 발효품질에 큰 영향을 미치며 수분이 많은 재료는 적당히 예건되면 젖산발효는 덜 제한되는 반면 불필요한 발효가 줄어들고 낙산발효를 억제할 수 있어 품질이 향상되고 기호성이 증진된다. 또한 사초를 알맞은 길이로 절단하므로 답압이 잘되어 공기 배출이 양호해 혐기상태의 유지가 가능하게 되고 사일리지의 취급또한 편리해 진다. 사일리지 첨가제는 재료를 적절히 예건하지 못할 때 필요하고 또한 특별한 조건하에서는 권장되고 있다. 이와같이 사일리지 발효에 도움을 준다는 가능성에도 불구하고 첨가제의 잇점은 양질 사일리지 제조를 위한 제반 처리를 대신할 수 없다. 양건 건초제조에 소요되는 기간은 기후에 크게 영향을 받게 된다. 건초제조 과정 중 포장에서 생기는 건물손실은 외기에 오랫동안 노출되면 잎이나 연한 줄기 부분이 부서지고 카로틴이 파괴된다. 또한 말리는 과정에 비를 맞힐 경우 양분이 용해되어 소화되기 쉬운 영양소와 건물 손실이 증가되며 섬유소함량이 증가되어 소화율과 섭취량이 감소된다. 그러므로 일기 예보에 따라 좋은 날씨가 $3\sim4$일 계속되는 시기를 택하여 적기 수확하고, 줄기의 압쇄(condition), 건조시 풀의 두께를 얇게, 뒤집기, 적절한 수분함량일 때 거둬들이는 조치가 필요하다.

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Studies on the Stability of Fenitrothion Formulations (Fenitrothion (MEP) 제제(製劑)의 화학적(化學的) 안정성(安定性)에 관(關)한 연구(硏究))

  • Park, Seung Heui
    • Korean Journal of Agricultural Science
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    • v.2 no.2
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    • pp.381-398
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    • 1975
  • Present work was executed to evaluate effects of adjuvants. stabilizers. moisture. pH and heavy metals on the stability of Fenitrothion in the emulsifiable concentrate. In addition, susceptibility ' of Fenitrothion in various formulations, to UV-irradiation has been also examined. The results are summarized as follows; 1. Xylene and benzene were found to be satisfactory solvents for Fenitrothion emulsifiable concentrate. As expected, polar sol vents such as aliphatic alcohols considerably reduced stability of the pesticides. 2. Of the two non-ionic emulsifiers, an alkyl aryl type Sorpol-1200, in contrast to sorbitan type Tweens, substantially reduced decomposition of Fenitrothion in the emulsifiable concentrates. Moisture and pH of emulsifiers. in the ranges studied. affected little if any. on the stabi ity of the Fenitrothion during the experiment periods. 3. Maleic anhydride, p-toluene sulfonic acid, sulfosalicylic acid, maleic anhydride-sulfosalicylic acid reduced decomposition of Fenitrothion in the emulsifiable concentrate. Addition of organic acids, however, increased liability of Fenitrothion in the emulsifiable concentrate. 4. Presence of either zinc or copper metals in the emulsifiable concentrate containing Tween-80 as a emulsifier, reduced stability of the Fenitrothion. 5. UV-irradiation, as expected, brought decomposition of Fenitrothion. The liability of Fenitrothion formulations decreased in the order, wettable powder ${\gg}$ dust > emulsifiable concentrate.

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An Economic Factor Analysis of Air Pollutants Emission Using Index Decomposition Methods (대기오염 배출량 변화의 경제적 요인 분해)

  • Park, Dae Moon;Kim, Ki Heung
    • Environmental and Resource Economics Review
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    • v.14 no.1
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    • pp.167-199
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    • 2005
  • The following policy implications can be drawn from this study: 1) The Air Pollution Emission Amount Report published by the Ministry of Environment since 1991 classifies industries into 4 sectors, i. e., heating, manufacturing, transportation and power generation. Currently, the usability of report is very low and extra efforts should be given to refine the current statistics and to improve the industrial classification. 2) Big pollution industries are as follows - s7, s17 and s20. The current air pollution control policy for these sectors compared to other sectors are found to be inefficient. This finding should be noted in the implementation of future air pollution policy. 3) s10 and s17 are found to be a big polluting industrial sector and its pollution reduction effect is also significant. 4) The effect of emission coefficient (${\Delta}f$) has the biggest impact on the reduction of emission amount change and the effect of economic growth coefficient (${\Delta}y$) has the biggest impact on the increase of emission volume. The effect of production technology factor (${\Delta}D$) and the effect of the change of the final demand structure (${\Delta}u$) are insignificant in terms of the change of emission volume. 5) Further studies on emission estimation techniques on each industry sector and the economic analysis are required to promote effective enforcement of the total volume control system of air pollutants, the differential management of pollution causing industrial sectors and the integration of environment and economy. 6) Korea's economic growth in 1990 is not pollution-driven in terms of the Barry Commoner's hypothesis, even though the overall industrial structure and the demand structure are not environmentally friendly. It indicates that environmental policies for the improvement of air quality depend mainly on the government initiatives and systematic national level consideration of industrial structures and the development of green technologies are not fully incorporated.

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Interpretation of Protein Feed Degradation Pattern in Ruminant Using an Omasal Digesta Sampling Technique (제 3위 소화액 채취기법을 이용한 반추위 단백질 사료 분해 패턴 측정법의 고찰)

  • 최창원;백경훈;강수원;이병석;오영균;김경훈
    • Journal of Animal Science and Technology
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    • v.48 no.4
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    • pp.541-554
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    • 2006
  • Present review is to introduce an omasal sampling technique in rumen proteolysis and to consider some information on the omasal sampling technique with particular emphasis on methodological aspects. Use of the omasal sampling technique provides a new opportunity for accurate estimation of rumen metabolism with overcoming limitations of previous in vivo, in vitro and/or in situ methods. The potential advantages of the present technique compared with post-ruminal sampling techniques include following points; 1) only rumen cannulated animals are required, 2) less endogenous nitrogen (N) is contaminated in omasal digesta and 3) omasal digesta are devoid of exposure to acid peptide hydrolysis occurring in the abomasum. Estimates of soluble non-ammonia N (SNAN) in omasal digesta indicate that the assumptions underlying the in situ method that rapidly degradable N fraction can be degraded at an infinite rate and only insoluble dietary N escapes the rumen may be not valid. Quatitatively higher peptide concentration rather than free amino acid and soluble protein in escapable SNAN suggests that hydrolysis of peptide to amino acid may be the rate-limiting step in rumen proteolysis.

Effect of Esterases from Rice Wine Yeast on the Ethyl Caproate Production during Rice Wine Brewing. (청주 제조 중 Ethyl Caproate 생성에 미치는 청주효모 Esterases의 영향)

  • 이종훈
    • Microbiology and Biotechnology Letters
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    • v.26 no.1
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    • pp.50-54
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    • 1998
  • Ethyl caproate is one of the important flavor compounds produced during the brewing of rice wine. The rice wine yeast and koji were reported to produce the esterases which synthesize and also hydrolyze ethyl caproate. From the results of monitoring the esterase activities of rice wine yeast and koji, their roles for producing ethyl caproate during brewing were postulated. In case of rice wine yeast, the production of esterase synthesizing ethyl caproate was influenced by the substrate, caproate but that of esterase hydrolyzing ethyl caproate was promoted by ethyl caproate but inhibited by caproate. The production of esterases of koji were not influenced by the substrates for ethyl caproate production but influenced by the growth of koji. The maximum concentration of ethyl caproate produced by rice wine yeast was 0.4 ppm in this research but the production of ethyl caproate by koji was not detected under our experimental conditions. Considering the results of this research, ethyl caproate is not produced by the esterases of koji during brewing but produced by the esterases of rice wine yeast. The growth of rice wine yeast represses that of koji because of the high concentration of ethanol produced by rice wine yeast. The esterases of rice wine yeast may decide the production of ethyl caproate during brewing.

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A Study on Types and Reasons of Engine Troubles Related to Fuel Oil (연료유에 의한 선박 디젤엔진 손상에 관한 연구)

  • Na, Eun-Young;Baik, Shin-Young
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.12 no.3
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    • pp.143-150
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    • 2009
  • Fuel oil mostly used for a ship is made from crude oil by refining process. In order to produce plenty of high-quality fuel oil, the Fluid catalytic cracking(FCC) method is widely adopted to many refinery factories during the decomposition process from high molecule into lower molecule. The major constituents in spent FCC catalysts are Si, Al, Fe, Ti, alkali metals and some others. The spent catalyst is also composed small amounts of rare metals such as Ce, Nd, Ni and V. The big problem in FCC oil is mixing the catalyst in the oil. This reason is unstable separation of FCC catalyst in separator. Such a FCC catalyst will become a reason of heavy wear down in moving parts of engine. The impurity in oil is ash and deposit compound, such as Al, Si, Ni, Fe and V, which will accelerate the wear down on fuel pump, fuel injection valve cylinder liner and piston ring. It is important to find a basic reason of an engine trouble for preventing similar troubles anymore. Insurance compensation will be different according to the reason of an engine trouble which might be natural abrasion or other external causes. In this study, types and reasons of engine troubles related to fuel oil will be covered.

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The Contents of Organic Acids, Nucleotides and Their Related Compounds in Kimchi Prepared with Salted-Fermented Fish Products and Their Alternatives (젓갈 및 젓갈대용 부재료 첨가 김치의 유기산 및 핵산관련 물질의 함량)

  • Park, Douck-Choun;Kim, Eun-Mi;Kim, Eun-Jin;Kim, Young-Myung;Kim, Seon-Bong
    • Korean Journal of Food Science and Technology
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    • v.35 no.5
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    • pp.769-776
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    • 2003
  • Organic acids, nucleotides and their related compounds (NRCs) of kimchi prepared with salted-fermented fish products (SFFPs) and their alternatives were analyzed at each optimal fermentation (pH $4.2{\pm}0.2$, acidity $0.6{\sim}0.8%$) during fermentation at 20, 10 and $4^{\circ}C$, respectively. The pH and acidity levels of kimchi sharply decreased and increased, respectively until each optimal fermentation period. The levels of organic acids and NRCs in SFFP kimchi were affected by fermentation temperature and the type of additive. Compared with the control, organic acid levels were slightly higher in kimchi with alternative additives, as were NRC rates in kimchi with hydrolysates of oyster and Alaska pollack. Moreover, slightly higher levels of NRC were observed in kimchi with alternative additives than in kimchi with SFFPs. Consequently, these results show that fermentation temperature and the type of additive (SFFPs and their alternatives) affect not only fermentation, but the levels of organic acids and NRCs in kimchi.

The Effects of Hydroxyl Radical Generation by Means of the Addition of $H_2O_2$ and $Fe^{3+}-EDTA$ in the Electron-beam Process (전자빔 공정에서 $H_2O_2$$Fe^{3+}-EDTA$의 첨가가 수산화라디칼 생성에 미치는 영향)

  • Kwon, Bumgun;Kwon, Joongkuen;Kim, Jongoh
    • Journal of the Korean GEO-environmental Society
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    • v.13 no.10
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    • pp.69-76
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    • 2012
  • This study focuses both on the quantitative measurement of hydroxyl radicals formed by an electron beam (E-beam) process and on the decomposition of pentachlorophenol(PCP) in the presence of $H_2O_2$ and $Fe^{3+}-EDTA$ as additives. To attain this objective, the quantitative measurement of hydroxyl radical was performed with the hydroylation of benzoic acid (BA), producing hydroxybenzoic acid (OHBA). As a result, the concentrations of hydroxyl radical measured were lower than those of hydroxyl radical predicted. Probably, it indicates that the reactive species generated during E-beam irradiation are able to scavenge the hydroxyl radicals. In particular, the degradation of PCP was promoted by the addition of $H_2O_2$ (< 1mM). On the other hand, its degradation as well as the generation of chloride ions as a by-product was inhibited by the addition of $H_2O_2$ (> 1mM), and thus carbon yield(%) of oxalic acid as a by-product was increased. During E-beam irradiation the addition of $Fe^{3+}-EDTA$ effectively decomposed the PCP, thus increasing the G-values. Considering the formation of OHBA and the decomposition of PCP, these results suggest that the addition of $Fe^{3+}-EDTA$ in the E-beam process can produce the further hydroxyl radicals and enhance the efficiency of PCP decomposition at low dose.