• Title/Summary/Keyword: heating temperature and time

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Simulation Experiment of PEMFC Using Insulation Vessel at Low Temperature Region (저온영역에서 단열용기를 이용한 연료전지 모의 실험)

  • Jo, In-Su;Kwon, Oh-Jung;Kim, Yu;Hyun, Deok-Su;Park, Chang-Kwon;Oh, Byeong-Soo
    • Transactions of the Korean hydrogen and new energy society
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    • v.19 no.5
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    • pp.403-409
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    • 2008
  • Polymer electrolyte membrane fuel cell (PEMFC) is very interesting power source due to high power density, simple construction and operation at low temperature. But it has problems such as high cost, improvement of performance, effect of temperature and initial start at low temperature. These problems can be approached to be solved by using experiment and mathematical method which are general principles for analysis and optimization of control system for heat and hydrogen detecting management. In this paper, insulation vessel and control system for stable operation of fuel cell at low temperature were developed for experiment. The constant temperature capability and the heating time at sub-zero temperatures with insulation control system were studied by using a heating bar of 60W class. PEMFC stack which was made by 4 cells with $50\;mc^2$ active area in each cell is a thermal source. Times which take to reach constant temperature by the state of insulation vacuum were measured at variable environment temperatures. The test was performed at two conditions: heating mode and cooling mode. Constant temperature capability was better at lower environment temperature and vacuum pressure. The results of this experiment could be used as basis data about stable operation of fuel cell stack in low temperature zone.

Synthesis of Periodic Mesoporous Organosilica by Microwave Heating

  • Yoon, Sang-Soon;Son, Won-Jin;Biswas, Kalidas;Ahn, Wha-Seung
    • Bulletin of the Korean Chemical Society
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    • v.29 no.3
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    • pp.609-614
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    • 2008
  • A periodic mesoporous organosilica material was synthesized by microwave heating (PMO-M) using 1,2-bis(trimethoxysilyl)ethane as a precursor in a cationic surfactant solution, and textural properties were compared with those of the product produced by conventional convection heating (PMO-C). These synthesized materials were characterized using XRD, TEM/SEM, N2 adsorption isotherm, 29Si and 13C NMR, and TGA, which confirmed their good structural orders and clear arrangements of uniform 3D-channels. Synthesis time was reduced from 21 h in PMO-C to 2-4 h in PMO-M. PMO-M was made of spherical particles of 1.5-2.2 m m size, whereas PMO-C was made of decaoctahedron-shaped particles of ca. 8.0 m m size. Effect of synthesis temperature, time, and heating mode on the PMO particle morphology was examined. The particle size of PMO-M could be controlled by changing the heating rate by adjusting microwave power level. PMO-M demonstrated improved separation of selected organic compounds compared to PMO-C in a reversed phase HPLC experiment. Ti-grafted PMO-M also resulted in higher conversion in liquid phase cyclohexene epoxidation than by Ti-PMO-C.

Modeling of Winter Time Apartment Heating Load in District Heating System Using Reduced LS-SVM (Reduced LS-SVM을 이용한 지역난방 동절기 공동주택 난방부하의 모델링)

  • Park, Young Chil
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.27 no.6
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    • pp.283-292
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    • 2015
  • A model of apartment heating load in a district heating system could be useful in the management and utilization of energy resources, since it could predict energy usage and so could assist in the efficient use of energy resources. The heating load in a district heating system varies in a highly nonlinear manner and is subject to many different factors, such as heating area, number of people living in that complex, and ambient temperature. Thus there are few published papers with accurate models of heating load, especially in domestic literature. This work is concerned with the modeling of apartment heating load in a district heating system in winter, using the reduced least square support vector machine (LS-SVM), and with the purpose of using the model to predict heating energy usage in domestic city area. We collected 23,856 pieces of data on heating energy usage over a 12-week period in winter, from 12 heat exchangers in five apartments. Half of the collected data were used to construct the heating load model, and the other half were used to test the model's accuracy. The model was able to predict the heating energy usage pattern rather accurately. It could also estimate the usage of heating energy within of mean absolute percentage error. This implies that the model prediction accuracy needs to be improved further, but it still could be considered as an acceptable model if we consider the nonlinearity and uncertainty of apartment heating energy usage in a district heating system.

The Survival Level of Microorganisms Contaminated on Pork Depending on the Time and Temperature of Heating, and Thickness of Pork (조리시 가열 시간, 온도 및 돈육 두께가 돈육에 오염된 미생물 수준에 미치는 영향)

  • Kim, Myo-Young;Lee, Hyun-Seung;Kim, Yun-Ji;Lee, Jong-Kyung;Oh, Se-Wook;Song, Yang-Hoon
    • Korean Journal of Food Science and Technology
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    • v.38 no.3
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    • pp.456-459
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    • 2006
  • Effects of pork thickness (5 and 7 mm), heating temperature (190 and $220^{\circ}C$) and time (40-180 sec), and flipping interval (10 and 30 sec) during cooking against survival levels of general bacteria and pathogenic microorganisms in pork were investigated. Under same heating temperature and time, 10 sec interval of flipping was more effective in sterilizing bacteria than 30 sec interval. Bacteria was not detected in 5-mm thick pork cooked for 80 sec at $190^{\circ}C$ with 10 sec flipping interval, and 120 sec heating at $190^{\circ}C$ and 30 sec flipping interval. Bacteria were not detected in most 7-mm thick pork cooked for 100 sec at $190^{\circ}C$ with 10 sec flipping interval, and 180 sec heating at $190^{\circ}C$ and 30 sec interval. Bacteria were not detected in most 5- and 7-mm thick pork cooked for 80 sec at $220^{\circ}C$ with 10 sec flipping interval, and 120 sec heating with 30 sec interval.

A Study on Reductive Furnace for Copper Annealing Using Catalytic Combustion (촉매연소를 이용한 동 열처리용 환원로에 관한 연구)

  • Jeong, Nam-Jo;Kang, Sung-Kyu;Song, Kwang-Sup;Cho, Sung-June;Yu, Sang-Phil;Ryou, In-Su
    • 한국연소학회:학술대회논문집
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    • 2001.11a
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    • pp.83-89
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    • 2001
  • Most technologies of reduction process used in the heat treatment of existent metal products are related to metals applied to bolts and parts of automobiles, and nonmetal such as copper. Heating conditions and reduction gases produced in above processes depend on types of products to be treated thermally but heating systems employ electricity commonly and the reduction gases are separated into additional production equipment and a gas dryer and inefficiently provided into the system. Electrical heating system has the advantage of convenient temperature-control but is not economical because of disadvantages of high electricity-running cost and extra installation cost of a transformer. Accordingly, development of the system which has economical heating mode in which provision of reduction gas and heating conditions are unified is necessary for improvement of economy and efficiency in current reduction processes. This study aimed to develop a new advanced heat treatment furnace using catalytic combustion. thereby minimizing the cost during heating, supplying heat and reductive gas at the same time and controlling operating condition freely by changing electrical heating system to heating system by the gas combustion and regeneration of wasted heat.

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A Study on Snow Melting System for the Anti-freezing Testing Road (시험선로 결빙방지를 위한 융설시스템에 관한 연구)

  • Han, K.I.;Lee, A.H.;Cho, D.H.
    • Journal of Power System Engineering
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    • v.10 no.1
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    • pp.34-40
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    • 2006
  • The snow melting system by electric heating wires which is adopted in this study is a part of road facilities to keep surface temperature of the road higher than freezing point of water for melting the snow accumulated on it. The system is designed to increase traffic safety and capacity. The electric heating wires are buried under paved road at a certain depth and operated automatically and manually. Design theory, amount of heating, and installation standard vary according to economic situation, weather condition, and installation place where the system applies. It is tried to figure out that the appropriate range of required heat capacity and installation depth and intervals for solving snowdrifts and freezing problems with the minimum electric power consumption. The most important factors to design the system are calculation of heating capacity depending on weather condition and depth and interval of the electric heating wires depending on air condition respectively. The study were performed under the range of the air temperatures($-2^{\circ}C,\;-5^{\circ}C,\;-8^{\circ}C$), the intervals of the electric heating wires(70mm, 100mm, 125mm), and the installation depths(50mm, 70mm, 100mm). The ready made commercial program package was used to verify the experimental results.

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Effect of Heating Temperature, Time and Protein Concentration on the Gel Properties and Heat Stability of a Mixed System of Pork Myofibrillar and Plasma Proteins (가열온도, 가열시간, 단백질농도가 혈장단백질과 근원섬유단백질 혼합물의 gel 특성 및 열안정성에 미치는 영향)

  • Kim, Cheon-Jei;Han, Eui-Su;Ko, Won-Sik;Choi, Do-Young;Lee, Chi-Ho;Joung, Ku-Young;Choe, Byung-Kyu
    • Korean Journal of Food Science and Technology
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    • v.25 no.3
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    • pp.295-298
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    • 1993
  • This study was carried out to investigate the effects of heating temperature, heating time and protein concentration on the gel properties and heat stability of a mixed system of pork plasma and myofibrillar to increase the utility of porcine blood as protein resources of the food industry, especially meat processing industry. The solubility of plasma protein and mixture (plasma + myofibrillar protein) decreased significantly at $70^{\circ}C\;to\;90^{\circ}C$ when heating temperature rised, whereas myofibrillar protein decreased slightly at $40^{\circ}C\;to\;60^{\circ}C$, and the gel strength and the turbidity of those increased significantly at these heating temperatures. The solubility of plasma protein and mixture decreased when the heating time increased at $75^{\circ}C$, whereas the gel strength and turbidity increased, and the solubility, the gel strength and the turbidity of myofibrillar protein showed no changes.

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Study on COP Variations with the duration of Ground Source Heat Pump Systems Operation (지열히트펌프의 작동시간 경과에 따른 COP 변화에 대한 연구)

  • Lee, Yonggyu;Baek, Namchoon;Yoon, Eungsang
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.198.2-198.2
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    • 2010
  • In this study, the COP variation with the duration of Ground Source Heat Pump (GSHP) systems operation was analyzed by experiment. This experimental facility was installed in residential house as a back-up device of solar thermal heating system. The capacity of heat pump is 2.5 kW with a vertical bore hole of 150m depth. The COP of GSHP is varied, depending on the ground temperature which is used as a heat source. The ground heat source temperature influencing heating COP is the soil or rock temperature which adjoin with geo-source heat exchanger. This temperature is decreased rapidly according to the operation duration of heat pump. As a result, COP of GSHP is decreased to 3 in one hour of continuous operation time.

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Paeparation and Properties of Epoxy Copolymers Containing Oxime-urethane Groups as Photobase Generators

  • Chae, Gyu Ho;Song, Hye Bong;Seon, Ho Yong;Jang, Ji Yeong
    • Bulletin of the Korean Chemical Society
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    • v.21 no.7
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    • pp.690-696
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    • 2000
  • Epoxy copolymers containing oxime urethane groups were prepared by the polymerization of glycidyl methacrylate and N-[5-(benzophenoneoximinocarbonylamino)pentanyl]maleimide (BOPM). Their physical properties were characterized by GPC, DSC and TGA analyses. Photochemical changes of the copolymers were studied by UV, IR spectroscopy, and contact angle measurements. A photoinduced cross-linking reaction in copolymer films was observed by measuring the insoluble fraction. Irradiation of the copolymers at 254 nm UV light leads to the formation of pendant amino groups by photodissociation of the oxime-urethane groups. Treatment of the amino groups with HCl resulted in the formation of ammonium salts, which changed the polymer surface to be hydrophilic. An insoluble fraction of the copolymers increased with irradiation time, heating time, and heating temperature. Cross-linking of the epoxy resin effectively catalyzed by the photogenerated pendant amines upon heating.

Development of the Sample Pretreatment Technique using Microwave for Analysis of Insecticide Imidacloprid Residues (마이크로파를 이용한 잔류 살충제 Imidacloprid 분석용 시료전처리 기술개발)

  • Ahn, S.Y.;Cho, H.K.;Lee, E.Y.
    • Journal of Biosystems Engineering
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    • v.32 no.2 s.121
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    • pp.121-129
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    • 2007
  • This study was conducted to elucidate extraction efficiency by microwave technique in comparison with sonication technique for extraction of insecticide residue in pear. In the analysis of the extraction efficiency of microwave for a pear spiked with imidacloprid, the extraction efficiency by microwave power of 300 W with extraction temperature of $80^{\circ}C$, heating time of 1 to 3 minute was shown to be similar with the extraction time 20 minutes by sonication. The optimal condition. in consideration of economical condition and treatment time, for microwave extraction of imidacloprid in the pear were 300 watts of power supply, $100^{\circ}C$ of extraction temperature, 1 minute of heating time and 10 mL of acetone volume. A new microwave vessel was developed to rapidly process the sample of the insecticide imidacloprid residues in the pear. This vessel was designed to include a reaction chamber and a filtration equipment, and a gathering chamber. The system could curtail a pretreatment time to 21 minutes than sonication and 7.9 minutes than the previous microwave vessel.