• Title/Summary/Keyword: Low temperature treatment

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Effect of Low Night-time Temperature during Seedling Stage on Growth of Spring Chinese Cabbage (육묘기 야간 저온이 봄배추의 생육에 미치는 영향)

  • Lee, Jun-Gu;Lee, Ji-Weon;Park, Suh-Yung;Jang, Yoon-Ah;Oh, Sang-Seok;Seo, Tae-Cheol;Yoon, Hyeong-Kwon;Um, Young-Cheol
    • Journal of Bio-Environment Control
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    • v.20 no.4
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    • pp.326-332
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    • 2011
  • The growth and bolting characteristics of spring Chinese cabbage cultivars at two night-time temperature treatments such as $5^{\circ}C$ and $10^{\circ}C$ during seedling stage were investigated to establish a safe environmental management strategy for raising seedlings. The low night-time temperature treatments were applied at 5, 10, and 15 days after sawing and the treatment durations were 5, 10, and 15 days in each of treatment beginning. The growth of seedlings in all the tested cultivars were linearly reduced as the treatment duration was extended and no symptoms of bolting were found. The reduction rate in seedling growth of 'Chunkwang' reached to 59.3% at most by 15 days of $5^{\circ}C$ treatment when it be compared to that of control. However, no symptoms of bolting were shown in the treatments of two night-time temperatures until the harvest at 90 days after sawing, indicating that the vernalization effect by low night-time temperature could be mitigated by subsequent day-time optimal temperature management. This study showed that the major spring Chinese cabbage cultivars require more ultimate level of low night-time temperature treatment for the vernalization than this study. It is also supposed that the optimal day-time temperature management can reduce or delay the rate of bolting, even if the seedlings were exposed to short-term low temperature below $5^{\circ}C$ during night-time.

Preparation of Zirconia Nanocrystalline Powder by the Hydrothemal Treatment at low Temperature (수열법에 의한 저온 결정형 지르코니아 나노 분말의 제조)

  • Noh, Hee-Jin;Lee, Jong-Kook;Seo, Dong-Seok;Hwang, Kyu-Hong
    • Journal of the Korean Ceramic Society
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    • v.39 no.3
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    • pp.308-314
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    • 2002
  • The nanocrystalline zirconia powder was synthesized from the zirconium hydroxide precipitate by hydrothermal process with the reaction temperature range 100∼250$^{\circ}$C, reaction time 1∼48 hours and additive concentration 1, 5 N NaOH solutions. The lower hydrothermal treatment temperature, the inner spherical tetragonal zirconia was synthesized. The fraction of monoclinic phase zirconia with rod shape increased with increasing the hydrothermal treatment temperature. As the concentration of the NaOH solution increases, the synthesized particle in breadth and length increased; breadth and length ratio decreased. In the case of the low concentration of NaOH solution, however, the particle length became relatively larger than its breadth resulting in the rod-shaped particles with bigger aspect ratio.

Physiological Characteristics and Yield of Onion Affected by Rapid Temperature Changes (급변온도 변이에 따른 양파의 생리적 특성 및 수량 변화)

  • Lee, Hyeong-Jin;Han, Hyo-Shim;Chon, Sang-Uk;Kim, Dong-Kwan;Kwon, Hyun Sook;Lee, Kyung Dong
    • Korean Journal of Environmental Agriculture
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    • v.33 no.4
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    • pp.364-371
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    • 2014
  • BACKGROUND: To evaluate the impact of rapid temperature change at spring and the early summer seasons in climate change, we have investigated the physiological response and yield of onion in a greenhouse with thermostat control system. METHODS AND RESULTS: Seedlings of onion(cv. Sunshine) were planted on October 30, 2012 and harvested on May 30, 2013. The used treatments(March-April-May) for a rapid temperature change were T0(control): $6.0-10.4-17.2^{\circ}C$, T1: $6.0-5.4(-5)-17.2^{\circ}C$, T2: $6.0-10.4-22.2(+5)^{\circ}C$ and T3: $6.0-5.4(-5)-22.2(+5)^{\circ}C$. Total yields of bulb within the temperature change as high temperature treatment T2 and control treatment T0 were increased significantly(p<0.05), as compared to the low temperature treatment T1. Low temperature conditions significantly (p<0.05) reduced plant height, SPAD reading, crude protein and fiber etc., as compared to the TO and T2. CONCLUSION: The rapid temperature changes were highly affected by low temperature than high temperature. These results suggest that rapid climate change of future could need systematic standard model for physiological characteristics and yields of onion.

Effect of Immature Rhizome Productivity according to Harvest Times-based Treatment Method for Seed Production of Gastrodia elata (천마 종자 생산을 위한 수확시기별 처리방법에 따른 자마 생산력 효과)

  • Kim, Chang Su;Kim, Hyo Jin;Seo, Sang Young;Kim, Hee Jun;Lee, Wang Hyu
    • Korean Journal of Plant Resources
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    • v.31 no.4
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    • pp.372-377
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    • 2018
  • This study was investigated the effect of immature rhizome production according to harvest times-based treatment method for seed production of Gastrodia elata. The results revealed that when the tuber weight of G. elata harvested in spring (GEHS) was ${\geq}100g$, the rate of artificial fertilization, protocorm formation, and immature rhizome formation was 90.9%-94.8%, 3.1%-5.4%, and 10.1%-15.3%, respectively. When G. elata harvested in fall (GEHF) was treated at a low temperature for 4 weeks or more, the rate of artificial fertilization, protocorm formation, and immature rhizome formation was 70.4%-87.6%, 2.2%-2.6%, 8.7%-9.5%, respectively. Therefore, to produce seeds and immature rhizomes, GEHS must have tubers of more than 100 g, whereas GEHF requires breaking dormancy by low-temperature treatment for 4 weeks or more. Compared with those of GEHS, the rate of artificial fertilization, protocorm formation, and immature rhizome formation was lower in GEHF; however, it was higher than those in the natural germination state. Thus, it can be expected that G. elata can be produced throughout the year by ensuring that the seeds and immature rhizomes of G. elata are produced using a constant tuber weight and by breaking dormancy with low temperature treatment.

The Study on the Denuded Zone Formation of Czochralski-grown Single Crystal Silicon Wafer (I) (Czochralski 법으로 성장시킨 단결정 Silicon Wafer에서의 표면 무결함층(Denuded Zone) 형성에 관한 연구(I))

  • 김승현;양두영;김창은;이홍림
    • Journal of the Korean Ceramic Society
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    • v.28 no.6
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    • pp.495-501
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    • 1991
  • This study is intended to make defect-free region, denuded zone at the silicon wafer surface for semiconductor device substrates. In this experiment, initial oxygen concentration of starting material CZ-grown silicon wafer, various heat treatment combinations, denuding ambient and the amounts of oxygen reduction were measured, and then denuded zone (DZ) formation and depth were investigated. In Low/High anneal (DZ formation could be achieved), the optimum temperature for Low anneal was 700$^{\circ}C$∼750$^{\circ}C$. In case of High anneal, with the time increased, DZ depth was increased at 1000$^{\circ}C$, 1150$^{\circ}C$ respectively, but on the contrary, DZ depth was decreased at low temperature 900$^{\circ}C$. As well, out-diffusion time below 2 hours was unsuitable for effective Gettering technique even though the temperature was high, and DZ formation could be achieved when initial oxygen concentration was only above 14 ppm in silicon wafer.

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Surface Characterization of Low Temperature Plasma Treated Wool Fiber - The Effect of the Nature of Gas-

  • Kan, C.W.;Chan, K.;Yuen, C.W.M.
    • Fibers and Polymers
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    • v.5 no.1
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    • pp.52-58
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    • 2004
  • Previous investigation results revealed that after the Low Temperature Plasma (LTP) treatment, the hydrophilicity of wool fiber was improved significantly. Such improvement enhances the wool dyeing and finishing processes which might be due to the changes of the wool surface to a more reactive one. In this paper, wool fibers were treated with LTP with different gases, namely, oxygen, nitrogen and gas mixture (25 % hydrogen/75 % nitrogen). Investigations showed that chemical composition of wool fiber surface varied differently with the different plasma gas used. The surface chemical composition of the different LTP-treated wool fibers was evaluated with different characterization methods, namely FTIR-ATR, XPS and saturated adsorption value. The experimental results were thoroughly discussed.

Improvement of Device Characteristic on Solution-Processed InGaZnO Thin-Film-Transistor (TFTs) using Microwave Irradiation

  • Moon, Sung-Wan;Cho, Won-Ju
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.15 no.2
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    • pp.249-254
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    • 2015
  • Solution-derived amorphous indium-gallium-zinc oxide (a-IGZO) thin-film-transistor (TFTs) were developed using a microwave irradiation treatment at low process temperature below $300^{\circ}C$. Compared to conventional furnace-annealing, the a-IGZO TFTs annealed by microwave irradiation exhibited better electrical characteristics in terms of field effect mobility, SS, and on/off current ratio, although the annealing temperature of microwave irradiation is much lower than that of furnace annealing. The microwave irradiated TFTs showed a smaller $V_{th}$ shift under the positive gate bias stress (PGBS) and negative gate bias stress (NGBS) tests owing to a lower ratio of oxygen vacancies, surface absorbed oxygen molecules, and reduced interface trapping in a-IGZO. Therefore, microwave irradiation is very promising to low-temperature process.

Effect of Low Temperature Plasma and DCCA treatment on the Dyeing Properties of Wool Fabric (DCCA 처리와 저온플라즈마 처리가 양모직물의 염색성에 미치는 영향)

  • Jung, Young-Jin
    • Textile Coloration and Finishing
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    • v.20 no.4
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    • pp.53-59
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    • 2008
  • For the modification of wool surface, wool fabrics treated with oxygen low-temperature plasma(LTP) and dichloroisocyanuric acid(DCCA) were dyed with milling type acid dye. The difference of dyeing properties on modified and control wool fabric were investigated. DCCA treated wool showed that saturation dye uptake and dyeing desorption ratio were higher than LTP treated wool. Dyeing transition temperatures of DCCA and LTP treated wool fabrics were 20$^{\circ}C$ degree lower than control wool fabric. In light color fastness test, DCCA treated wool fabric was 1 grade lower than LTP or control wool fabric.

Low Temperature Dyeing Process by Intercellular diffusion through Cell Membrane Complex Modification of Wool. - Technology based on CSIRO and ICI (양모의 저온 염색 소개 - Sirolan LTD Process from ICI)

  • 윤일남
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2001.11a
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    • pp.3-11
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    • 2001
  • Fundamental studies at the CSIRO division of Wool technology and ICI on the diffusion of dyes into wool〔1,2〕have let to development of a new approach to wool dyeing. In this method, the cell membrane complex of wool is modified before dyeing by treatment under mildly alkaline conditions with a special chemicals. Wool pretreated with ethoxylated quaternary ammonium salt has an increased rate of dyebath exhaustion and dye penetration early in the dyeing cycle. This enables the treated material to be dyed below the boil for a similar time to the conventional cycle. This technique can be used on untreated and shrinkresist-treated wool and wool/nylon blends. In addition to good macro-levelness and excellent coverage of tippiness, the low temperature dyeing process give higher exhaustion levels of dyestuffs and insect-resist agent and hence cleaner effluent liquors, compared with conventional dyeing process. Low Temperature Dyeing process cause significantly less fiber damage than conventional way. The reduction in damage is reflected in improved processing performance of the dyed wool.

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Improvement of Surface Properties of Ti-6A1-4V Alloy by Low Pressure Carburizing (저압 침탄에 의한 Ti-6Al-4V 합금의 표면 특성 개선)

  • Kim, J.H.;Park, J.D.;Kim, S.W.
    • Journal of the Korean Society for Heat Treatment
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    • v.16 no.4
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    • pp.191-196
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    • 2003
  • For improvement of the wear performance of Ti alloy, vacuum-carburizing technique was tried for the first time using propane atmosphere. During the low pressure carburizing carbide was formed at the surface and carbon transfer was occurred from the carbide to the matrix. It was found that: (i) surface hardness increased with the reduction of operating pressure and time; (ii) optimum hardness distribution could be obtained with the proper choice of temperature and carbon flux control; and, (iii) case depth was largely influenced not by time but by temperature. The two steps process was recommended for obtaining thick case depth and high surface hardness of Ti alloy. For the low oxygen partial pressure, it was necessary to introduce additional CO gas to the atmosphere.Grain boundary oxidation and non-uniformity could be prevented.