• Title/Summary/Keyword: 주간온도

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Preference and Competition for Shelters at Day and Night between Adult and Juvenile Schlegel's Japanese Gecko (Gekko japonicus) in an Indoor Vivarium (실내 사육장에서 도마뱀부치(Gekkojaponicus) 성체와 유체의 주야간 은신처 선호와 경쟁)

  • Park, Il-Kook;Kim, Dae-In;Jang, Se-Yoon;Kim, Do-Yeon;Choi, Woo-Jin;Kim, Jong-Sun;Koo, Kyo-Soung;Park, Daesik
    • Korean Journal of Environment and Ecology
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    • v.32 no.4
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    • pp.373-380
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    • 2018
  • We examined activities of adult (n=9, 3 females and 6 males) and juvenile (n=4) Schlegel's Japanese gecko (Gekko japonicus) in an indoor vivarium for 47 days to study the preference and competition for shelters at day and night. The result showed the strong correlation between the temperature inside the shelter and the body temperature of Schlegel's Japanese gecko and more individuals observed outside the shelters at nighttime than daytime. Both adults and juveniles showed a preference for certain shelters. The adults preferred the warmer shelters in the daytime while the juveniles preferred the same shelter in both daytime and nighttime. Both adults and juveniles observed outside the shelter at the nighttime had higher body temperature than those found inside. In the daytime, the body temperature of adults was higher than that of juveniles, but there was no significant difference in the nighttime. The results imply that G. japonicus, which is the nocturnal lizard, prefers the shelters with higher temperature and that there is the competition for shelters between adults and juveniles. This study provides the reference data on the relationships between the body temperature and the activities of G. japonicus.

Rooting of Needle Fascicles of Pinus radiata in Test Tubes (Pinus radiata 엽속삽목(葉束揷木)의 시험관내(試驗管內) 발근(發根))

  • Hong, Sung Ok;Sweet, Geoffrey B.
    • Journal of Korean Society of Forest Science
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    • v.32 no.1
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    • pp.64-72
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    • 1976
  • A series of rooting experiments of P. radiata needle fascicles were carried out in test tubes using peat-pumice medium to see a possibility of rooting fascicles in test tubes and, if possible, to find out whether that method can improve the rooting. Typical rooting of clones from ortets aged 3, 7, 11. 18, and over 40, respectively, was 57%, 47%, 18%, 4%, and 2%. The effect of ortet ages upon rooting of fascicle cuttings was significantly exerted in these experiments. In the older ortets these results are not as good as those often obtained in a glasshouse. Hormones tested (indolebutyric acid and abscisic acid) had no significant effect on rooting and neither did a series of fungicides tested. Needle fascicles placed in an 18 hour day at $20^{\circ}/10^{\circ}C$ (day/night temperature) rooted signficantly better than those in a 10 hour day at the same temperature regime. The latter in turn rooted better than those set under a 10 hour day at $15^{\circ}/5^{\circ}C$. Clonal differences in rooting ability were also distinct in every trial of the present experiments with needle fascicles.

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Comparative Analysis of the Cultivation Environment Changes, the Emerging Budding, Flowering and Yields in High Bed Strawberry due to the Application of Crown Heating System (관부 난방 시스템 적용으로 인한 고설 딸기의 재배 환경 변화와 그에 따른 출뢰, 개화 및 수확량 비교 분석)

  • Taeseok Lee;Jingu Kim;Kilsu Han
    • Journal of Bio-Environment Control
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    • v.32 no.4
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    • pp.449-455
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    • 2023
  • In this study, the effect of crown heating on the cultivation environment, budding, flowering and yields of strawberry was analyzed. In December, January, and February, when the outside temperature was low, the average strawberry crown temperature at daytime in the test zone was 1.3℃ higher than that in the control zone, and the average strawberry crown temperature at nighttime in the test zone was 2.7℃ higher than that in the control zone. The average bed temperature at daytime in test zone was 1.7℃ higher than that in the control zone, and the average bed temperature at nighttime in test zone was 2.4℃ higher than that in the control zone. As a result of performing correlation analysis and regression analysis on strawberry crown temperature and budding period, the correlation coefficient was -0.86, which tended to be shorter as the crown temperature was higher, and the determination coefficient was 0.74. The total yields of strawberry during test period were 392.6 g/plant for test greenhouse and 346.0 g/plant for control greenhouse respectively. As for the quality of strawberries, the ratio of 2L (very large) grades and L (large) grades was 62.4% in the test greenhouse and 58.5% in the control greenhouse, indicating that the proportion of high quality strawberries was higher in the test greenhouse.

Propagation Method for Sporophyte Formation of Woodsia ilvensis (L.) R.Br. (두메우드풀 포자체 형성을 위한 번식방법)

  • Jang, Bo Kook;Lee, Ki Cheol;Lee, Cheol Hee
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.04a
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    • pp.21-21
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    • 2018
  • 본 연구는 북방계 식물에 속하는 두메우드풀[Woodsia ilvensis (L.) R.Br.]의 전엽체 증식 및 포자체 형성을 위한 적정방법을 구명하고자 수행되었다. 식물재료는 경상북도 의성군 일대에서 채취한 후 청주의 일반하우스에 이식하여 재배하였다. 포자 성숙기인 8월에 채종하여 발아시켰으며, 포자로부터 획득한 전엽체를 8주간 계대하면서 실험재료로 사용하였다. 전엽체 300mg을 메스로 다진 후 배지농도 및 종류(Knop, 1/4, 1/2, 1 및 2MS)를 달리하여 8주간 배양하였다. 배양실의 온도는 $25{\pm}1.0^{\circ}C$, 광도는 $30{\pm}1.0{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$(16/8h)로 조절되었다. 연구의 결과, 배지구성물질의 농도가 높았던 2MS배지에서 전엽체의 생체중이 12.4g으로 41배 증가하여 가장 높은 증식율을 나타냈다. 또한 배지구성물질의 농도가 적을수록 생체중의 증가폭도 함께 감소하는 경향을 보였다. 포자체 형성에 적합한 토양조건을 확인하고자, 원예상토, 피트모스, 펄라이트 및 마사토의 비율을 달리한 5종류의 혼합토양을 조성하여 사각분($7.5{\times}7.5{\times}7.5cm$)에 충진하였다. 다음으로 전엽체 1g을 핸드블랜더로 10초간 분쇄 후 충진된 사각분 위에 고르게 분주하여 14주간 재배하였다. 재배환경은 온도 $25{\pm}1.0^{\circ}C$, 광도 $43{\pm}2.0{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$(16/8h) 및 습도 $72{\pm}2.0%$로 조절되었다. 지베렐린 수용액이 포자체 형성에 미치는 영향을 조사하고자, 선행연구에서 선발된 토양조건을 기준으로 침지농도(0, 50, 100, $200mg{\cdot}L^{-1}$)를 조절하여 1시간 침지 후 상기와 동일한 방법으로 재배하였다. 연구의 결과, 원예상토와 펄라이트 또는 마사토를 2:1(v:v)로 혼용한 토양에서 사각분 당 109.5, 128.8개의 포자체가 형성되었다. 한편, 피트모스가 첨가된 처리는 포자체의 형성이 억제되는 경향을 나타냈다. 지베렐린 50과 $100mg{\cdot}L^{-1}$ 수용액에 침지한 처리에서 무처리에 비해 많은 사각분 당 각 177.0, 181.7개의 포자체가 형성되었으며, 생육도 양호하였다.

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Effect of Non-Uniform Milling on Quality of Milled Rice during Storage (불균일도정이 저장 중 쌀의 품질에 미치는 영향)

  • Kim, Hoon;Lee, Hyun-Jung;Kim, Oui-Woung;Lee, Se-Eun;Yoon, Doo-Hyun
    • Food Science and Preservation
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    • v.13 no.6
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    • pp.675-680
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    • 2006
  • Uniform milling is regarded as a very essential technology to produce high quality milled rice in Rice Recessing Complex. But non-uniformly milled rice can be produced very easily because of unadequate operation methods of milling system and bad brown rice conditions. This study was conducted to find out the bad effect of non-uniform milling degrees and store temperatures on quality characteristics such as taste of cooked rice, fatty acidity, whiteness and so on of milled rice during storage. According to the increase of non-uniform milling degrees, the fatty acid acidity and b value were increased very rapidly, and taste of cooked rice and whiteness were decreased very rapidly during storage. And the general quality characteristics of milled rice were better at low temperature storage of $5^{\circ}C$ than at high temperature storage at $25^{\circ}C$.

Effects of Temperature and Light Intensity on the Growth of Red Pepper(Capsicum annuum L.) in Plastic House During Winter. IV. Growth Responses Influenced by Temperatures and Light Intensities in Growth Chamber (동계 plastic house내 고추(Capsicum annuum L.) 육묘시 온도와 광도가 생장에 미치는 영향 IV. 생장상내 온도 및 광환경 변화에 따른 생장반응)

  • 정순주;이범선;권용웅
    • Journal of Bio-Environment Control
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    • v.4 no.2
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    • pp.125-130
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    • 1995
  • Observations on the seedling growth of red pepper responding to different temperature(10, 20, 3$0^{\circ}C$) and light intensity(5, 15, 25 klux) were made in the growth Chamber during 7 weeks. The results obtained were as follows; 1. Best results of the combinations of temperature and light intensity were obtained from the combinated treatment of 3$0^{\circ}C$ and 25klux. At all of the temperature levels in this experiment, the more the light intensity is high, the more the growth is favor, but at low temperature below 2$0^{\circ}C$ and low light intensity below 15 klux, the growth of red pepper seedlings was decreased markedly. 2. Multiple regression polynomial equations of the characteristics of red pepper seedlings grown in the different combinations of temperature and light intensity fitted well in the plant height, number of leaves, leaf area, stem dry weight and shoot dry weight. 3. Multiple regression polynomial equation to the shoot dry weight was partial differentiated and diagrammatized the response surface using its theoretical value. Light intensity affected more to the shoot dry weight in the temperature below 2$0^{\circ}C$ but above 2$0^{\circ}C$ the role of the temperature showed greatly influence however, interaction effects of light intensity and temperature showed strongly.

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Early Growth of Sweet Pepper by Difference between Day and Night Temperature after Planting (정식 후 주야간온도차에 따른 착색단고추의 초기 생육)

  • Kim, Ho Cheol;Ku, Yang-Gyu;Lee, Yong Beom;Lee, Jeong Hyun;Choi, Joon Ho;Bae, Jong Hyang
    • Horticultural Science & Technology
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    • v.31 no.5
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    • pp.552-557
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    • 2013
  • This study was carried out to investigate the different DIF (day/night temperature differential) treatments on early growth of sweet pepper plants (Capsicum annuum L.) after planting. The DIF treatments were thus as follows. DIF levels are DIF-6 ($20-26^{\circ}C$) and DIF 0 ($23^{\circ}C$), DIF 3 ($24.5-21.5^{\circ}C$) and DIF 6 ($26-20^{\circ}C$). The DIF 3 and DIF 6 treatments significantly increased plant height of the sweet pepper plants during ten weeks after planting compared to DIF-6 and DIF 0. Leaf area per plant of DIF 3 treatment constantly increased and the level was greatest leaf area at ten weeks after planting. Fresh weight per plant treated with DIF-6 was lower and was reduced 74-77% range compared to other treatments. DIF 0 and DIF 3 treatments significantly affected dry weight and percentage of dry matter compared to DIF-6 and DIF 6. Especially DIF 6 treatment significantly decreased from eight weeks after planting. Percentage of dry matter of the leaf treated with DIF 0 and DIF 3 consistently increased from six weeks after planting, however, DIF-6 and DIF 6 treatments dramatically decreased from eight weeks after planting. High levels of DIF management cause growth retardant on early growth of sweet pepper plants, especially when night temperature is higher than day temperature, plants are indicated to be greater growth retardant.

Comparison of Thermal Environment in Single Span Plastic Greenhouses with an Electrical Heating, Hot-Air Heating nit without Heating (전기히터식 난방, 온풍난방 및 무가온 단동 플라스틱 하우스의 열환경 비교)

  • 허종철;임종환;서효덕;최동호
    • Journal of Bio-Environment Control
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    • v.8 no.2
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    • pp.125-135
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    • 1999
  • In this paper, the thermal characteristics in plastic greenhouses with heating systems of electric power, hot air, and non-heating are measured and analyzed by field tests. From these tests, we were able to estimate the heating efficiency and quantitatively evaluate the characteristics of indoor thermal distributions of the particular heating system in greenhouses. The heating system of electric power was ineffective to reduce the difference of thermal distribution in the vertical direction. The hot air heating system also does not properly reduce the serious temperature fluctuation by time. By removing the above problems, these data will be utilized effectively to design better thermal environment in greenhouses.

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Estimation of Overall Heat Transfer Coefficient for Single Layer Covering in Greenhouse (일중 피복온실의 관류열전달계수 산정)

  • Hwang, Young-Yun;Lee, Jong-Won;Lee, Hyun-Woo
    • Journal of Bio-Environment Control
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    • v.22 no.2
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    • pp.108-115
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    • 2013
  • This study was conducted to suggest a model to calculate the overall heat transfer coefficient of single layer covering for various greenhouse conditions. There was a strong correlation between cover surface temperature and inside air temperature of greenhouse. The equations to calculate the convective and radiative heat transfer coefficients proposed by Kittas were best fitted for calculation of the overall heat transfer coefficient. Because the coefficient of linear regression between the calculated and measured cover surface temperature was founded to 0.98, the slope of the straight line is 1.009 and the intercept is 0.001, the calculation model of overall heat transfer coefficient proposed by this study is acceptable. The convective heat transfer between the inner cover surface and the inside air was greater than the radiative heat transfer, and the difference increased as the wind speed rose. The convective heat transfer between the outer cover surface and the outside air was less than the radiative heat transfer for the low wind speed, but greater than for the high wind speed. The outer cover convective heat flux increased proportion to the inner cover convective heat flux linearly. The overall heat transfer coefficient increased but the cover surface temperature decreased as the wind speed increased, and the regression function was founded to be logarithmic and power function, respectively.

Determination of Carbon Dioxide Concentration in CO2 Supplemental Greenhouse for Tomato Cultivation during Winter and Spring Seasons (겨울과 봄철의 CO2 시비 토마토 온실에서 온도에 따른 CO2 농도 구명)

  • Su-Hyun Choi;Young-Hoe Woo;Dong-Cheol Jang;Young-Ae Jeong;Seo-A Yoon;Dae-Hyun Kim;Ho-Seok Seo;Eun-Young Choi
    • Journal of Bio-Environment Control
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    • v.32 no.4
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    • pp.416-422
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    • 2023
  • This study was aimed to determine the changes in CO2 concentration according to the temperatures of daytime and nighttime in the CO2 supplemental greenhouse, and to compare calculated supplementary CO2 concentration during winter and spring cultivation seasons. CO2 concentrations in experimental greenhouses were analyzed by selecting representative days with different average temperatures due to differences in integrated solar radiation at the growth stage of leaf area index (LAI) 2.0 during the winter season of 2022 and 2023 years. The CO2 concentration was 459, 299, 275, and 239 µmol·mol-1, respectively at 1, 2, 3, and 4 p.m. after the CO2 supplementary time (10:00-13:00) under the higher temperature (HT, > 18℃ daytime temp. avg. 31.7, 26.8, 23.8, and 22.4℃, respectively), while it was 500, 368, 366, 364 µmol·mol-1, respectively under the lower temperature (LT, < 18℃ daytime temp. avg. 22.0, 18.9, 15.0, and 13.7℃, respectively), indicating the CO2 reduction was significantly higher in the HT than that of LT. During the nighttime, the concentration of CO2 gradually increased from 6 p.m. (346 µmol·mol-1) to 3 a.m. (454 µmol·mol-1) in the HT with a rate of 11 µmol·mol-1 per hour (240 tomatoes, leaf area 330m2), while the increase was very lesser under the LT. During the spring season, the CO2 concentration measured just before the start of CO2 fertilization (7:30 a.m.) in the CO2 enrichment greenhouse was 3-4 times higher in the HT (>15℃ nighttime temperature avg.) than that of LT (< 15℃ nighttime temperature avg.), and the calculated amount of CO2 fertilization on the day was also lower in HT. All the integrated results indicate that CO2 concentrations during the nighttime varies depending on the temperature, and the increased CO2 is a major source of CO2 for photosynthesis after sunrise, and it is necessary to develop a model formula for CO2 supplement considering the nighttime CO2 concentration.