• 제목/요약/키워드: maximum growth rate

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최대 호흡율을 이용한 활성슬러지 모델 No.1 보정: 자가영양균 최대비성장율 추정 (Calibration of Activated Sludge Model No. 1 using Maximum Respiration Rate: Maximum Autotrophs Specific Growth Rate)

  • 최은희
    • 대한환경공학회지
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    • 제27권4호
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    • pp.409-413
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    • 2005
  • 본 논문에는 자가영양균의 최대비성장율 추정법이 제시되었다. 먼저 질산화균의 농도가 질산화 된 암모니아, 슬러지 일령 및 사멸계수를 이용하여 시뮬레이션 되었고, 다음단계로 과잉암모니아를 공급하여 질산화균의 호흡율을 측정하였다. 자가영양균의 최대비성장율은 ${\mu}_{max,A}\;=\;OUR_{max,A}/Y_A$의 관계를 통해 계산되어질 수 있으며 추정된 최대비성장율은 운전기간에 걸쳐 일정한 값을 가지지 앉고 시간에 따라 변화한다는 결과를 얻었다. 본 연구를 통해 최대호흡율을 이용한 최대비성장율의 동적 추정법이 수행되었고, 일정한 최대비성장율를 이용한 처리장 운전결과 예측은 처리장 거동을 예측할 수 없으며 활성슬러지공정의 성능예측을 위한 시뮬레이션을 위해서는 동적 추정된 매개변수의 사용이 필요함을 확인하였다.

Growth Rate and Nutrient Content Changes of Humulus japonicus

  • Ju, Eun-Jeong;Kim, Jae-Geun;Lee, Yang-Woo;Lee, Bo-Ah;Kim, Heung-Tae;Nam, Jong-Min;Kang, Ho-Jeong
    • Journal of Ecology and Environment
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    • 제29권5호
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    • pp.461-467
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    • 2006
  • The growth pattern and the seasonal changes in nutrient contents of Humulus japonicus were investigated. Stem length of H. japonicus reached the maximum from 240 to 260 Julian date and the median value was found at 255 Julian date. The maximum leaf area was observed from 235 to 248 Julian date and the median value was at 240 Julian date. The maximum growth rate of the stem length ranged from 205 to 227 Julian date. The leaf area showed the maximum growth rate from 196 to 214 Julian date. The median date in the growth rate of the stem length and leaf area was 212 and 205 Julian date, respectively. The growth rate of H. japonicus was related to rainy season and precipitation. Phosphorus and sodium contents of H. japonicus were correlated with maximum potential rate of relative growth. Although stem biomass of H. japonicus was $ 1.5{\sim}3.5$ times larger than that of leaf, N content of the leaf ($4.48{\sim}5.27%$) was about 2 times higher than that of the stem ($2.00{\sim}3.62%$). High content of N might be responsible for the high growth rate of H. japonicus in summer. This result provides valuable information for appropriate timing for the removal of H. japonicus.

Multi-component kinetics for the growth of the cyanobacterium Synechocystis sp. PCC6803

  • Kim, Hyun-Woo;Park, Seongjun;Rittmann, Bruce E.
    • Environmental Engineering Research
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    • 제20권4호
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    • pp.347-355
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    • 2015
  • The growth kinetics of phototrophic microorganisms can be controlled by the light irradiance, the concentration of an inorganic nutrient, or both. A multi-component kinetic model is proposed and tested in novel batch experiments that allow the kinetic parameters for each factor to be estimated independently. For the cyanobacterium Synechocystis sp. PCC6803, the estimated parameters are maximum specific growth rate $({\mu}_{max})=2.8/d$, half-maximum-rate light irradiance $(K_L)=11W/m^2$, half-inhibition-rate light irradiance $(K_{L,I})=39W/m^2$, and half-maximum-rate concentration for inorganic carbon $(K_{S,Ci})=0.5mgC/L$, half-maximum-rate concentration for inorganic nitrogen $(K_{S,Ni})=1.4mgN/L$, and half-maximum-rate concentration for inorganic phosphorus $(K_{S,Pi})=0.06mgP/L$. Compared to other phototrophs having ${\mu}max$ estimates, PCC6803 is a fast-growing r-strategist relying on reaction rate. Its half-maximum-rate and half-inhibition rate values identify the ranges of light irradiance and nutrient concentrations that PCC6803 needs to achieve a high specific growth rate to be a sustainable bioenergy source. To gain the advantages of its high maximum specific growth rate, PCC6803 needs to have moderate light illumination ($7-62W/m^2$ for ${\mu}_{syn}{\geq}1/d$) and relatively high nutrient concentrations: $N_i{\geq}2.3 mgN/L$, $P_i{\geq}0.1mgP/L$, and $C_i{\geq}1.0mgC/L$.

밀폐된 구획실의 체적변화가 최대 열발생률에 미치는 영향에 관한 수치해석 연구 (A Numerical Study on the Effect of Volume Change in a Closed Compartment on Maximum Heat Release Rate)

  • 윤홍석;남동군;황철홍
    • 한국화재소방학회논문지
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    • 제31권5호
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    • pp.19-27
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    • 2017
  • 밀폐된 구획실 화재에서 화원의 면적 및 위치, 화재성장률, 구획 체적의 변화가 열발생률을 포함한 주요 화재특성에 미치는 영향이 검토되었다. 이를 위해 닫힌 개구부가 적용된 ISO 9705 화재실을 대상으로 Fire Dynamics Simulator (FDS)를 활용한 화재시뮬레이션이 수행되었다. 주요 결론으로서, 화원의 면적 및 위치의 변화는 최대 열발생률, 총 열량, 상층부의 최대 온도 및 화학종 농도를 포함한 구획 내의 열적 특성과 화학적 특성에 큰 영향을 주지 않음을 확인하였다. 그러나 화재성장률과 구획 체적의 증가는 최대 열발생률 및 총 열량의 증가를 가져오며, 한계산소농도의 감소 및 최대 CO 농도의 증가를 발생시킨다. 마지막으로 화재성장률과 구획 체적의 함수로 표현된 최대 열발생률의 상관식을 도출하여, 밀폐된 구획실 화재에 대한 화재성장곡선의 적용을 위한 방법론이 제안되었다.

Experimental study on fatigue crack propagation of fiber metal laminates

  • Xie, Zonghong;Peng, Fei;Zhao, Tianjiao
    • Steel and Composite Structures
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    • 제17권2호
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    • pp.145-157
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    • 2014
  • This study aimed to investigate the fatigue crack growth behavior of a kind of fiber metal laminates (FML) under four different stress levels. The FML specimen consists of three 2024-T3 aluminum alloy sheets and two layers of glass/epoxy composite lamina. Tensile-tensile cyclic fatigue tests were conducted on centrally notched specimen at four stress levels with various maximum values. A digital camera system was used to take photos of the propagating cracks on both sides of the specimens. Image processing software was adopted to accurately measure the length of the cracks on each photo. The test results show that: (1) a-N and da/dN-a curves of FML specimens can be divided into transient crack growth segment, steady state crack growth segment and accelerated crack growth segment; (2) compared to 2024-T3 aluminum alloy, the fatigue properties of FML are much better; (3) da/dN-${\Delta}K$ curves of FML specimens can be divided into fatigue crack growth rate decrease segment and fatigue crack growth rate increase segment; (3) the maximum stress level has a large influence on a-N, da/dN-a and da/dN-${\Delta}K$ curves of FML specimens; (4) the fatigue crack growth rate da/dN presents a nonlinear accelerated increasing trend to the maximum stress level; (5) the maximum stress level has an almost linear relationship with the stress intensity factor ${\Delta}K$.

에탄올 생산 균주 Saccharomyces cerevisiae ATCC 248858의 비성장속도에 관한 수학적 모형연구 (Investigated of Mathematical Model for the Specific Growth Rate of Ethanol Producing Microorganism, Saccharomyces cerevisiae ATCC 24858)

  • 김휘동;허병기
    • KSBB Journal
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    • 제13권6호
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    • pp.730-734
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    • 1998
  • An이ew식과 Aiba삭을 조합하여 에탄올 생산단주인 Saccharomyces cerevisiae ATCC 24858의 비성장속도를 당농도와 에탄올 농도의 함수로 표현하였다. 기침의 저해영향을 받지 않는 최대 당농도 $S_m$은 150 g/L이며 기질의 저해영향은 기질농도 S와 $S-S_{max}$항의 함수로 표현되었다. 최대 비성장 속도 ${\mu}max 는 0.49 hr^{-1}, Monod상수 K_s$는 19 g/L, Andrew식의 기질저해상수 $K_1$는 139 g/L이였다. 또한 비성장속도에 영향을 마치지 앓는 최대알콜농도 Pm이 존재하였으며 그 값은 2 g/L 이였다. 따라서 Aiba식에서 비성장속도에 영향을 미치는 에탄올 농도항은 P-Pm으보 표현되었다. 본 연구의 알코올생산균주에 대한 비성장속도의 완성된 수식은 디음과 같으며 이 수식에 위한 계산값은 평균오차 6% 내외의 범위에서 실험값과 일치하였다.

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$Li_2O$.$2SiO_2$유리의 결정화에서 승온속도가 기계적 특성에 미치는 영향 (effect of Heating Rate on the Mechanical Properties in the Crystallization of $Li_2O$.$2SiO_2$ Glass)

  • 최병현;고경현;안재환;지응업
    • 한국세라믹학회지
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    • 제33권7호
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    • pp.809-815
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    • 1996
  • When Li2O.2SiO2 glass was crystallized between the temperature of maximum nucleation and the temperature of maximum crystal growth it was found that the control of heating rate had serious effect on the crystallinity and microstructure and the greatly changed physical properties. Density and elastic modulus tends to increase but thermal expansion coefficient decreased with increased crystallinity. When heating rate between the tempe-rature of maximum nucleation and the temperature of maximum crystal growth was 10~5$0^{\circ}C$/hr. crystallinity was increased to result in the increment of strength. When nuclation was done at 44$0^{\circ}C$ for 5 hours and the temperature of crystal growth was held at 575$^{\circ}C$ strength was increased until crystallinity reached 65% and strength was decreased with higher crystallinity. These phenomena could be explained that even for the same crystallinity different heat rates resulted in different number and size of cracks.

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BcI-2 Over-expression Reduced the Serum Dependency and Improved the Nutrient Metabolism in a NS0 Cells Culture

  • Tey Beng Ti;Al-Rubeai Mohamed
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권3호
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    • pp.254-261
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    • 2005
  • The over-expression of Bcl-2 has greatly improved the culture period, specific growth rate, and maximum viable cell density of NS0 cells culture under low serum condition. Further analysis of these data suggests that a saturation model of the Monod type can be used to represent the relationships of specific growth rate and initial serum concentration. The ${\mu}_{max}$ and $K_s$ for the Bcl-2 cell line is $0.927day^{-1}\;and\;0.947\%(v/v)$ respectively, which are $21\%$ greate and $7\%$ lower respectively than its control counterpart. Study on the amino acid supplementation revealed that Bcl-2 cell lines possess greater improvement in the specific growth rate and maximum viable cell density compared to the control cell lines. A further increase in the amino acid supplementation has resulted a $17\%$ decrease in specific growth rate and no improvement in maximum viable cell density in the control culture. However, the Bcl-2 cell line exhibited a better growth characteristic in this culture condition compared to that of control cell lines. The higher specific growth rate and maximum viable cell density of the Bcl-2 cell line in medium fortified with serum and MEM EM suggested a more efficient nutrient metabolism compared to that in the control cell line. The low serum and amino acid utilisation rate and the higher cell yield may prove to be important in the development of serum/protein free culture.

저서식물의 군집구조와 생산성(동해안, 죽도) II. 해조류 식생의 계절변화와 대형갈조류 성장상태의 관계 (Community Structure and Productivity of Phytobenthos in Juckdo (Eastern Coast of Korea) II. Seasonal Changes of Algal Vegetation in Relation to Annual Growth of Large Brown Algae)

  • 고철환
    • Journal of Plant Biology
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    • 제26권4호
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    • pp.181-190
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    • 1983
  • Seasonal occurrence of benthic algae and changes of subtidal vegetation were studied for their species composition, diversity and biomass during 1982 and 1983 at several selected sites at Juckdo Island (38$^{\circ}$12'N, 128$^{\circ}$32'E), eastern coast of Korea. Three large brown algae which played a role in change of algal vegetation through their great biomass were investigated with regard to their seasonal growth. Large brown algae such as Undaria pinnatifida, Costaria costata, Laminaria japonica, Agarum cribrosum, Sargassum confusum and S. hornerii constitute the major portion of vegetation in this area throughout the year. Algal vegetation in spring time is characterized by dominance of species U. pinnatifida and C. costata, whereas the summer vegetation by S. confusum and S. hornerii. In autumn large brown algae are shedded and only small algae, such as Chondrus ocellatus and Grateloupia filicina, remain. The vegetation in winter is dominated by the growth of U. pinnatifida and C. costata. Monthly changes in mean length and weight of randomly collected U. pinnatifida, C. costata and S. confusum are as follows; U. pinnatifida occurs from December to June and shows their maximum growth during March (120 cm in length, 201 g/individual in wet weight), its maximum growth rate is 1.4 cm/day, 3.3 g/day in this month. The growth season of C. costata is very similar to U.pinnatifida, but their average maximum length(110 cm) and weight (106 g/ind.) are lower than U. pinnatifida. The greatest growth rate is during March (1.8 cm/day, 2.0g/day). S. confusum is present throughout the year and reaches the maximum growth (102 cm, 63g/ind.) in July. Maximum growth rate (1.5 cm/day, 1.2 g/day) occurs also during this month. U. pinnatifida and C. costata show different months of maximum growth evidently during the two year. This seems to be caused by a considerable damage to the local vegetation followed by heavy storm in February 1983.

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MgO 및 TiO2가 첨가된 알루미나의 치밀화와 입성장 거동 (Densification and Grain Growth Behavior of MgO and TiO2-doped Alumina)

  • 이정아;김정주
    • 한국세라믹학회지
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    • 제39권11호
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    • pp.1083-1089
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    • 2002
  • 알루미나 세라믹스에 MgO와 $TiO_2$를 각각 단독으로 첨가했을 때의 치밀화와 소결 거동을 수축률-소결 밀도 관계를 통해 비교 조사하였다. MgO가 첨가되었을 때는 소결 전과정을 통해 입성장은 억제되고 치밀화는 촉진되었으나, $TiO_2$가 첨가되었을 때는 입성장은 촉진된 반면 치밀화는 떨어졌다. 또한 입자 크기, 밀도, 수축률등을 통해 수축률-소결 밀도 관계를 구하여 최대 수축률을 나타내는 밀도값(Density of Maximum Shrinkage Rate:${\rho}$J.S.R)을 조사해 보았다. 이때 최대 수축률을 나타내는 밀도값보다 낮은 밀도를 보이는 영역에서는 치밀화가 입성장보다 우세하게 진행되었으며 최대 수축률을 나타내는 밀도값보다 높은 밀도의 영역에서는 입성장이 보다 우세하게 진행되는 것으로 추정하였다. 이때 최대 수축률을 나타내는 밀도값은 $TiO_2$가 첨가된 알루미나 < 순수 알루미나 < MgO가 첨가된 알루미나의 순서로 높은 값을 보였다.