• 제목/요약/키워드: leaf temperature

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저장실의 온습도, 제통수분함량 및 제통중량이 황색종 가공엽의 탄화에 미치는 영향 (The Influences of Temperature and Humidity in Storage Room, Moisture Content and Packing Weight of Leaf on the Carbonization of Processed Flue-cured Leaf Tobacco)

  • 김상범;안동명;이윤환;김용규;복진영
    • 한국연초학회지
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    • 제23권1호
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    • pp.19-30
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    • 2001
  • This study was carried out to investigate the influences of environmental condition in storage room, moisture content and packing weight of leaf on the carbonization of processed flue-cured leaf tobacco, and find out a regression model able to pre-estimate the degree of carbonization. The influence of temperature and humidity in storage room on the carbonization was high,, while that of packing weight was relatively low, However, high moisture content and packing weight of leaf accelerated the carbonization under the high temperature and humidity condition. Thus the leaf tobacco under the condition of 4$0^{\circ}C$, 7$0^{\circ}C$ R.H. in storage room, 16% moisture content and 286 kg/box of packing weight could be carbonized within one month. The pH, total sugar content, lightness(L) and yellowness(b) of leaf were closely related to carbonization of leaf during storage. There were significant regression and yellowness of leaf. It is considered that the certification and/or pre-estimation of carbonization during storage may be possible by applying the regression equation.

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찬물 흘려대기 논의 수온 분포에 따른 벼의 엽 전개 일수 및 주간엽수와 출수일수의 품종간 차이 (Varietal Differences in Days Required to Leaf Expansion, Leaf Number on Main Culm, and Days to Heading of Rice under Cold Water Flow System)

  • 윤성호;윤종선;유길림;박창기;정근식
    • 한국작물학회지
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    • 제36권3호
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    • pp.214-219
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    • 1991
  • 관계수온에 따른 벼 품종들의 출수일수, 주간엽 전개 소요일수, 주간총엽수 등을 조사하여 수온과 벼 품종들의 출수특성과의 관계를 구명하고자, 삼강벼 등 12개 품종을 공시하고, 찬물계속 흘려대기를 실시하여 동일 포장 내에서 수온의 차이를 둔 벼 내냉검정포에서 시험을 수행한 결과를 요약하면 다응과 같다. 1. 담수심을 5 cm로하여 찬물계속흘려대기를 실시할 때 관계수 정체시간은 3 시간 이었으며, 포장 내의 수온은 찬물유입구로부터 배수고를 향하여 거리가 밀어질수록 상승되었다. 대체로 기온이 높아짐에 따라 수온도 높아지는 경향이었고, 배수구 쪽의 수온은 벼의 영양생장기에는 기온보다 높았지만, 생식성장기에는 낮았다 2. 수온 상승에 따라서 주간엽의 전개속도는 빨라지는 경향이었으며, 품종별로는 복광벼, 상풍벼, YR3486-16-2 등은 민감하였으나 Janack, 밀양4002 등은 다소 둔감한 편이었다 3. 영양생장기에 비하여 생식성장기에 1엽전개 소요일수가 두드러지게 늘어난 품종은 Janack, Paro-white 등이 었 다. 4. 1엽전개 소요일수의 품종간 차이는 수온이 높았던 영양생장기보다 상대적으로 수온이 낮았던 생식성장기에 켰다 5. 수온이 비슷한 조건일 때 수온의 차이에 의한 전체 공시품종의 평균 1엽전개소요일수의 영양생장기와 생식생장기의 생육단계간 차이는 인정되지 않았으며, 수온 13$^{\circ}C$-23$^{\circ}C$ 범위에서는 1$^{\circ}C$ 상승에 따라 1.3 일만큼 감소하는 것으로 추정 되었다. 6. 수온에 따른 주간총엽수의 증감은 품종간에 차이가 있었다. 수온이 상승됨에 따라 1 엽이 증가된 품종은 복광벼, 광명벼, China 988, YR3486-16 등이었고, 주간총엽수의 변화가 없었던 품종은 소백벼, Paro-white, 상풍벼, 풍산벼, 삼강벼, 밀양4002 등이었다 7. Janack 품종은 수온의 상승에 따라 주간총엽수가 증가되면서, 출수일수도 늘어났지만, 그밖의 품종들은 수온 차이에 의한 주간총엽수의 변화와는 관계없이 수온 상승에 따라 출수일수가 단축되었는데, 그 정도는 품종마다 달랐다.

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취나물류의 물질생산과 광합성특성에 관한 연구 II. 수분스트레스하에서 고온 및 저온처리가 취나물류의 광합성속도에 미치는 영향 (Study on Matter Production and Phothsynthetic Characteristics in Wild Vegetable(Chwinamul))

  • 조동하
    • 한국자원식물학회지
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    • 제11권3호
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    • pp.307-314
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    • 1998
  • The response of water stree under high and low temperatures, was shown differently according to the longer the suspension period of water supply. Leaf photosynthetic rate(LPS), leaf water potential(WP), relative leaf water content and relative soil water content were lower. At the higher temperatures, the percentate of reduction in LPS and WP was greater than at low temperatures. It is suggested that evaporation rate should be higher in the high temperature than the lower temperature. Also leaf water potential was lower at high temperature than at low temperature. After the 9 th day of treatment , LSP was remarkably reduced at high temperature, but the reduction of LPS was not significant at low temperature. Solidago virga-aurea var. asiatic that maintained LPS of 3rd day after treatment was more strong than other varieties at low temperatures. The silting and curling of leaves were observed symptoms of stress on the 9th day at the both temperatures. The leaves of aster scaber and Ligularia fischeri turned red on the 9th day after treatment at low temperature.

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흑구온도를 이용한 천궁 엽온 예측 모델 개발 (Developing a Model for Estimating Leaf Temperature of Cnidium officinale Makino Based on Black Globe Temperature)

  • 서영진;남효훈;장원철;이부용
    • 한국약용작물학회지
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    • 제26권6호
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    • pp.447-454
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    • 2018
  • Background: The leaf temperature ($T_{LEAF}$) is one of the most important physical parameters governing water and carbon flux, including evapotranspiration, photosynthesis and respiration. Cnidium officinale is one of the important folk medicines for counteracting a variety of diseases, and is particularly used as a traditional medicinal crop in the treatment of female genital inflammatory diseases. In this study, we developed a model to estimate $T_{Leaf}$ of Cnidium officinale Makino based on black globe temperature ($T_{BGT}$). Methods and Results: This study was performed from April to July 2018 in field characterized by a valley and alluvial fan topography. Databases of $T_{LEAF}$ were curated by infrared thermometry, along with meteorological instruments, including a thermometer, a pyranometer, and an anemometer. Linear regression analysis and Student's t-test were performed to evaluate the performance of the model and significance of the parameters. The correlation coefficient between observed $T_{LEAF}$ and calculated $T_{BGT}$ obtained using an equation, developed to predict $T_{LEAF}$ based on $T_{BGT}$ was very high ($r^2=0.9500$, p < 0.0001). There was a positive relationship between $T_{BGT}$ and solar radiation ($r^2=0.8556$, p < 0.0001), but a negative relationship between $T_{BGT}$ and wind speed ($r^2=0.9707$, p < 0.0001). These results imply that heat exchange in leaves seems to be mainly controlled by solar radiation and wind speed. The correlation coefficient between actual and estimated $T_{BGT}$ was 0.9710 (p < 0.0001). Conclusions: The developed model can be used to accurately estimate the $T_{Leaf}$ of Cnidium officinale Makino and has the potential to become a practical alternative to assessing cold and heat stress.

열영상을 이용한 작물 생장 감시 -영양분 스트레스 분석- (Plant Growth Monitoring Using Thermography -Analysis of nutrient stress-)

  • 류관희;김기영;채희연
    • Journal of Biosystems Engineering
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    • 제25권4호
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    • pp.293-300
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    • 2000
  • Automated greenhouse production system often require crop growth monitoring involving accurate quantification of plant physiological properties. Conventional methods are usually burdensome, inaccurate, and harmful to crops. A thermal image analysis system can accomplish rapid and accurate measurements of physiological-property changes of stressed crops. In this research a thermal imaging system was used to measure the leaf-temperature changes of several crops according to nutrient stresses. Thermal images were obtained from lettuce, cucumber, and pepper plants. Plants were placed in growth chamber to provide relatively constant growth environment. Results showed that there were significant differences in the temperature of stressed plants and non-stressed plants. In a case of the both N deficiency and excess, the leaf temperatures of cucumber were $2^{\circ}C$ lower than controlled temperature. The leaf temperature of cucumber was $2^{\circ}C$ lower than controlled temperature only when it was under N excess stress. For the potassium deficiency or excess stress, the leaf temperaures of cucumber and hot pepper were $2^{\circ}C$ lower than controls, respectively. The phosphorous deficiency stress dropped the leaf temperatures of cucumber and hot pepper $2^{\circ}C$ and $1.5^{\circ}C$ below than controls. However, the leaf temperature of lettuce did not change. It was possible to detect the changes in leaf temperature by infrared thermography when subjected to nutrition stress. Since the changes in leaf temperatures were different each other for plants and kinds of stresses, however, it is necessary to add a nutrient measurement system to a plant-growth monitoring system using thermography.

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지상부 노화별 인삼의 엽과 근의 광합성 및 호흡 (Photosynthesis and Respiration of Ginseng Leaf and Root in Relation to Senescence of Aerial Part)

  • 박훈;이명구;이종률
    • Journal of Ginseng Research
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    • 제10권2호
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    • pp.180-186
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    • 1986
  • Photosynthesis and respiration of leaf and root of field grown Panax ginseng were investigated according to aerial part sensecence. No apparent photosynthesis activity was detected in senescenced leaf(less than 0.7mg total chlorophyll/g FW) and leaf dark respiration was consistent relation with senescence. Leaf respiratory Q$_{10}$ consistently increased with senscence. Root respiration and Q$_{10}$ tended to decrease with aerial part senescence only in the range of optimum temperature of leaf growth. Apparent photosynthesis or respiration of leaf was negatively or positively correlated, respectively with the increase of air temperature. Root respiration with temperature was well accordance with Arrhenius plot which was not consistent with aerial part senescence. Accelerated senescence may be recommendable for better root yield unless any reserve in stem or leaves contributes to root through translocation.

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Effects of Weather Conditions on Sunburn in Stalk Curing of Burley Tobacco

  • Bae, Seong Kook;Jo, Chun Joon
    • 한국연초학회지
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    • 제22권2호
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    • pp.138-142
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    • 2000
  • The effects of stalk cutting time and environmental factors such as air temperature, leaf temperature, solar radiation and leaf moisture content during harvesting and curing in burley tobacco(Nicotiana tabacum L.) on weight loss of fresh stalks and sunburning in leaves were investigated at Chonju Experiment Station, Korea Ginseng & Tobacco Research Institute in 1996 and 1997. Twelve to fifteen percent of the fresh weight was lost in 3 to 4 hours after stalk-cutting, and sunburned leaves could be observed in case of stalk cutting between 11:00 and 15:00 O'clock on a clear sunny day, when the air temperature was 34 to 35$^{\circ}C$, leaf temperature 52 to 54$^{\circ}C$, and solar radiation 700 to 940 w/$m^2$. The leaves exposed to this weather condition were sunburned within 1 hour after stalk cutting. But low temperature (below $25^{\circ}C$) with high solar radiation(above 700w/m2) or high temperature(above 3$0^{\circ}C$) with low solar radiation (below 600w$m^2$) did not induce the sunburn damage in leaves. As the leaf temperature and leaf moisture content were higher, the sunburned leaves increased. The leaves at the higher stalk position were more easily sunburned than those at the lower. This result indicates that the immature leaves with higher chlorophyll content might be more susceptible to sunburning.

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越冬 중 노루발의 水分포텐셜, 致死溫度 및 炭水化物量의 變化 (Changes in Leaf Water Potential, Lethal Temperature and Carbohydrate Content of Wintergreen (Pyrola japonica Klenze) during Overwintering)

  • Ryu, Beungtae;Joon-Ho Kim
    • The Korean Journal of Ecology
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    • 제13권1호
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    • pp.59-66
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    • 1990
  • Changes in water potential, lethal temperature and carbohydrate content in the leaves of wintergreen (Pyrola japonica) during overwintering were investigated. Leaf water potential was kept at -2 bars in the tender stage before October, decreased to -46 bars in the dormancy stage and increased to -2 bars again after dehardening Lethal temperatures of the leaf tissue were $-7^{\circ}C$ in the tender stage and $-7^{\circ}C$ in the dormancy stage, but did not recover up to that of the tender stage during dehardeding. Peak of soluble sugar content coincided with the nadir of the leaf water potential. There were close relationships among daily minimum air-temperature, leaf water potential and lethal temperature in changing patterns during overwintering.

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Phenological Studies of Deciduous Trees in the Cool Temperate Region of Japan

  • Jun, Kala;Hayashi, Ichiroku
    • Journal of Ecology and Environment
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    • 제31권3호
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    • pp.193-200
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    • 2008
  • We obtained quantitative information on leaf unfolding and leaf shedding by observing 45 species of cool temperate deciduous trees in an arboretum over 5 growing seasons. These trees were in leaf (the foliage period) for 207 days on average after 1 April; 50% of leaves had been shed by 192 days after 1 April. Duration from the start of leaf unfolding to 50% leaf shedding was 157 days on average. Leaf unfolding began 35 days on average after 1 April. For leaf unfolding to begin, a$ 51^{\circ}C{\cdot}day$ of cumulated daily mean air temperature above $5^{\circ}C$ from 1 January (modified Kira's warmth index) was needed. Fifty-nine days elapsed between initiation and the final stage of leaf unfolding. The period of net photosynthetic assimilation was 157 days. The species with succeeding- type leaf unfolding associated with the anemochore seed type dominated the early stage of succession, while the species with flush-type leaf unfolding tended to dominate the late stage of succession. Few species were found in regions where late frosts occur after the day when the cumulative temperature for leaf unfolding is achieved. Biological characteristics include time of leaf unfolding, which affects the life history of each species, so that each species occupies its own niche in the stand. We conclude that that leaf phenology, such as timing of leaf unfolding and leaf shedding, is one of the components of each species' ecological characteristics.

일장 및 온도처리가 관상용 Nicotiana species의 개화에 미치는 영향 (Effects of Photoperiod and Temperature on Flowering Responses of Ornamental Nicotiana species)

  • 구한서;김정환;이용득
    • 한국연초학회지
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    • 제11권2호
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    • pp.127-134
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    • 1989
  • Several growth characteristics of two ornamental tobacco species, Nicotiana sanderae and N. affinis, were investigated in this study. Also effect of temperature and daylength on the flowering of the tobacco plants were evaluated to obtain basic information on breeding and cultivation. 1. The plants were great in high temperature-long day at the early stage and in low temperature-short day at the late stage of plant growth, for both Nicotana species. At the early growth stage the leaf length N. sanderae was great in high temperature-long day, and that of N. affinis was great in high temperature-short day period, while at the late stage of the plant growth the leaf lengths were more significantly effected by the temperature rather than daylength. Leaf width and leaf shape index were less sensitive to the conditions. 2. For both of the species, the total number of tobacco leaves not much influenced by the temperature and daylength. 3. There were no significant differences for budding and flowering period between the two species, both of which were sensitive to temperature and daylength with more influence by daylength than temperature. 4. Number of floral stalks, number of flower and flowering period were not much influenced by temperature and daylength; however, N. affinis had 2 more floral stalks, 31 more flowers, and 6 day longer flowering period than N. sanderae.

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