• Title/Summary/Keyword: 수분 전달

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진공조건에 따른 Parylene 코팅박막의 투명도 평가

  • Lee, Su-Min;Jo, Gyu-Seok;Lee, Ji-Yun;Lee, Yun-Jin;Heo, Seung-Uk;Nam, Sang-Hui
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.297-297
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    • 2012
  • Parylene 코팅은 다결정인 고분자 유기물에 열을 가하여 기화시켜 진공상태에서 피사체를 코팅하는 것으로 마이크로 두께 단위의 유전체 증착하는 것이다. Parylene 코팅은 주로 Display를 비롯한 태양전지, 반도체 등에서 다양한 산업분야에서 이용되며, 이 때 외부로부터 침투하는 수분을 방지하고, 전기적 절연 및 불순물로부터 피사체를 보호하여 기계적인 안정성을 목적으로 사용된다. Display와 태양전지는 빛을 이용하는 분야로써 Parylene을 투과하여 들어오는 빛의 전달효율에 따른 영향이 크게 고려되어진다. 빛의 전달효율을 높이기 위해서는 Parylene의 높은 투명도가 중요한 요소로 작용한다. 본 연구에서는 Parylene 코팅 박막의 투명도 상승을 위해 증착 시 다양한 진공조건으로 실험을 진행하였다. Parylene 코팅 시, 진공도에 따른 투명도를 평가하기 위해 Substrate로는(100%)투과율을 가지는 재질의 glass를 이용하였다. Parylene 종류로는 반도체분야에 주로 이용되는 C-type의 Parylene Polymer 사용하였다. 증착 조건으로는 $7{\sim}8{\times}10^{-2}$ Torr, $4{\sim}6{\times}10^{-2}$ Torr, $2{\sim}3{\times}10^{-2}$ Torr의 각각 다른 진공 조건에서 120분간 증착시켜 Parylene 코팅막을 형성하였다. 또한 높은 투습방지력을 가짐과 동시에 고투명도 유지에 대해 신뢰성평가를 하기위해 각 조건별로 1회, 3회, 5회 반복 증착하였다. 제작된 각 시편의 투명도 측정을 위해 광도계(DX-100, TAKEMURA)를 이용하여 빛의 투과율을 관찰하였다. 그 결과 진공도 $2{\sim}3{\times}10^{-2}$ Torr, $4{\sim}6{\times}10^{-2}$ Torr, $7{\sim}8{\times}10^{-2}$ Torr순의 시편이 높은 투과율을 나타내었으며, 그 중 $2{\sim}3{\times}10^{-2}$ Torr의 1회 증착 한 시편이(97%)로 가장 높은 투과율을 나타내었다. 반대로 $7{\sim}8{\times}10^{-2}$ Torr의 5회 증착 한 시편이(78%)로 가장 낮은 투과율을 보였다. 따라서 진공도가 높을수록 투명도가 상승하며, 증착횟수가 늘어날수록 투명도가 감소하는 것을 알 수 있었다. 본 연구의 결과로 Parylene 코팅의 진공도에 따른 투명도를 평가함으로써 Parylene 코팅 증착조건 최적화를 위한 기초자료로 이용될 것이라 사료된다. 또한 후속 연구로써 substrate의 온도조절과 시료량의 조절이 이루어진다면 좀 더 효율적으로 최적화된 박막형성이 가능할 것이라 판단된다.

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Application of Membranes for Biological Waste Gas Treatment Processes (생물학적 폐가스 처리공정 내 멤브레인 활용)

  • Lee, Sang-hun
    • Membrane Journal
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    • v.31 no.5
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    • pp.327-332
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    • 2021
  • The use of membranes for MBRWG (Membrane Bioreactor for Waste Gas) treatment can provide highly selective separation of a waste gas stream followed by effective biological removal. MBRWG have several potential advantages, among which the most distinctive one is separation of gas and liquid phases at each side of membrane potentially allowing the optimal biomass control toward effective biodegradation of target gases as well as biofilm activation. This advantage becomes especially favorable for removal of hydrophobic toxic gases, such as xylene, by MBRWG systems, because the mass transfer, the toxicity, and thereby the biodegradation of hydrophobic gas treatment requires sensitive handling of liquid stream and water control near biofilm. Among various membranes for MBRWG treatment, PDMS-hollow fiber membranes provide the high gas mass transfer. Despite lower specific surface areas, capillary type membranes are also applied current MBRWG studies. In addition to the main application of membranes as biofilm supporter in MBRWG systems, there can be another application of membranes in a posterior process for removal of residual gases or dusts emitted from conventional biological waste gas treatment processes.

Analysis of Changes in Photosynthetic Ability, Photosystem II Activity, and Canopy Temperature Factor in Response to Drought S tress on Native Prunus maximowiczii and Prunus serrulate (자생 산개벚나무, 잔털벚나무의 건조 스트레스에 따른 광합성 및 광계II 활성, 엽온 인자 변화 분석)

  • Jin, Eon-Ju;Yoon, Jun-Hyuck;Bae, Eun-Ji
    • Journal of Korean Society of Forest Science
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    • v.111 no.3
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    • pp.405-417
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    • 2022
  • The purpose of this study was to describe the photosynthetic features of Prunus maximowiczii and Prunus serrulate Lindl. var. pubescens (Makino) Nakai in response to drought stress. Specifically, we studied the effects of drought on photosynthetic ability and photosystem II activity. Drought stress (DS) was induced by cutting the water supply for 30 days. DS decreased the moisture contents in the soil, and between the 10th and 12th days of DS, both species had 10% or less of x., After the 15th day of DS, it was less than 5%, which is a condition for disease to start. We observed a remarkable decrease of maximum photosynthesis rate starting from 10th day of DS; the light compensation point was also remarkable. Dark respiration and net apparent quantum yield decreased significantly on the 15th day of DS, and then increased on the 20th day. In addition, the stomatal transpiration rate of P. maximowiczii decreased significantly on the15th day of DS, and then increased on the 20th day. Water use efficiency increased on the 15th day of DS, and then decreased on the 20th day. The stomatal transpiration rate of P. serrulate decreased significantly on the 20th day of DS, and then increased afterward, while its water use efficiency increased on the 20th day of DS, and then decreased afterward. These results indicate that the closure of stoma prevented water loss, resulting in a temporary increase of water use efficiency. Chlorophyll fluorescence analysis detected remarkable decreases in the functional index (PIABS) and energy transfer efficiency in P. maximowiczii after the 15th day of DS. Meanwhile, photosystem II activity decreased in P. serrulate after 20 days of DS. In addition, Ts-Ta, PIABS, DIO/RC, ETO/RC followed similar trends as those of the soil moisture content and photosynthetic properties, indicating that they can be used as useful variables in predicting DS in trees.

Effect of Hypotonic and Hypertonic Solution on Brining Process for Pork Loin Cube: Mass Transfer Kinetics (돼지고기 등심의 염지공정에서 소금농도의 영향: 물질전달 동역학을 중심으로)

  • Park, Min;Lee, Nak Hun;In, Ye-Won;Oh, Sang-Yup;Cho, Hyung-Yong
    • Food Engineering Progress
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    • v.23 no.1
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    • pp.7-15
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    • 2019
  • The impregnation of solid foods into the surrounding hypotonic or hypertonic solution was explored as a method to infuse NaCl in pork loin cube without altering its matrix. Mass transfer kinetics using a diffusive model as the mathematical model for moisture gain/loss and salt gain and the resulting textural properties were studied for the surrounding solutions of NaCl 2.5, 5.0, 10.0 and 15% (w/w). It was possible to access the effects of brine concentration on the direction of the resulting water flow, quantify water and salt transfer, and confirm tenderization effect by salt infusion. For brine concentrations up to 10% it was verified that meat samples gained water, while for processes with 15% concentration, pork loin cubes lost water. The effective diffusion coefficients of salt ranged from 2.43×10-9 to 3.53×10-9 m2/s, while for the values of water ranged from 1.22×10-9 to 1.88×10-9 m2/s. The diffusive model was able to represent well salt gain rates using a single parameter, i.e. an effective diffusion coefficient of salt through the meat. However, it was not possible to find a characteristic effective diffusion coefficient for water transfer. Within the range of experimental conditions studied, salt-impregnated samples by 5% (w/w) brine were shown with minimum hardness, chewiness and shear force.

Evaluation Method for the Water Transport Properties of Sweat Absorbent Fabrics - Water Vapour Transport in the of Human-Clothing-Environment System - (첨단 흡수속건소재의 수분전달 특성 평가방법에 관한 연구 - 인체-의복-환경 System에서의 투습성 평가 -)

  • Kim, Eun Ae;Barker, Roger L.
    • Journal of the Korean Society of Clothing and Textiles
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    • v.17 no.2
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    • pp.329-338
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    • 1993
  • The purpose of this study was to design an instrument to simulate the Human-Clothing-Environment system and evaluate the water vapour transport properties of sweat absorbent PET fabrics. The instrument was composed of sweat generating part, clothing part which can simulate clothing layers, and enviromental part. As specimens, sweat absorbent PET, regular PET, cotton, nylon and acrylics fabrics were included. For the water vapour transport(WVT), relative humidities and temperatures were measured by film type humidity sensors and thermocouples, respectively. Water vapour pressures were calculated with measured RH's and temperatures. For the liquid water transport, wickability and demand wettability were measured. Results showed that there was a difference in terms of water vapour transport mechanism depending on the fiber type ; sweat absorbent PET showed higher WVT at the transient period then equilibrated, whereas other fabrics showed lower WVT at the transient period then increased continuously. These differences are expected to affect to the difference in the comfort properties of clothings. Sweat absorbent PET showed higher demand wettability and wickability than other fabrics. Wide application of the instrument was also suggested.

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Heat and Mass Transfer Characteristics of LiCl Aqueous Solution for a Plate Heat Exchanger Type Dehumidifier (판형 열교환기식 제습기에서 LiCl 수용액의 열 및 물질전달 특성)

  • Jeon, Dong-Soon;Lee, Hae-Seung;Kim, Seon-Chang;Kim, Young-Lyoul
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.24 no.1
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    • pp.16-22
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    • 2012
  • Experimental investigations were carried out to examine the heat and mass transfer characteristics of LiCl aqueous solution for a plate heat exchanger type dehumidifier. Cooling dehumidification was adopted vertical type heat exchanger. Also non woven fabric is attached surface of the heat exchanger for spreadability of LiCl aqueous solution. Mass flow-rate of LiCl aqueous solution and concentration were selected as experimental conditions. Also, In this study, the effects of relative humidity of process air and velocity were investigated experimentally. As a result of heat transfer coefficient and mass transfer coefficient of were increased film reynolds number increased. heat transfer coefficient and mass transfer coefficient of LiCl aqueous solution were 0.14~0.24 kW/$m2^{\circ}C$ and $1.3{\times}10-63{\sim}6.2{\times}10-6$ m/s respectively.

The study on the physiological response and comfort in wearing sportswear in Raniy environments (강우환경 하에서의 스포츠웨어 착용시 인체생리반응 및 쾌적감)

  • 권오경;김진아
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 2001.05a
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    • pp.194-199
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    • 2001
  • 쾌적한 스포츠웨어는 기능성에 있어서 자연환경의 변화조건과 인체의 운동 및 활동에 맞추어 열절달 및 수분전달 등을 적절히 조절할 수 있어야 한다. 이에 본 연구에서는 일반환경조건 및 강우환경조건하에서의 형상기억 투습방수직물 소재의 스포츠웨어 착용에 따른 인체생리반응 및 쾌적감을 규명하기 위하여 스포츠웨어를 제작하여, 인공기후실에서 환경조건변화에 따른 온열생리학적 특성 및 주관적 감각을 측정, 그 특성을 비교, 고찰하였다. 평균피부온은 강우환경조건에서 온도가 낮게, 변동폭이 많게 나타났다. 변화경향을 운동부하를 기점으로 온도의 상승이 나타났고, 운동 2단계에 가장 높은 온도를 나타냈으며, 이후 감소하였다. 직장온은 일반환경조건에 비해 강우환경조건에서 온도의 미세한 상승을 보였다. 의복내 기후는 두 조건 모두에서 가슴부위보다 등부위의 온·습도의 변동폭이 크게 나타났고, 강우환경조건에서의 의복내 온도를 제외하고는 모두 등부위의 온·습도가 높게 나타났다. 최고 혈압은 운동의 강도에 따라 비례하여 상승하고, 최저 혈압에는 큰 영향없이 나타났으며, 변화경향은 의복내 온도의 경향과 역으로 나타났다. 평균혈압은 일반환경조건에서 6.9mmHg 높게 나타났다. 심박수는 일반환경조건에서 4.4beats/min 높게 나타났다. 강우환경조건의 주관적 감각의 평가에서, 신체에 직접 가해지는 빗물 등으로 인해 불쾌감이 증가하였고, 운동 후에는 일반환경조건과 달리 냉감이 증가하였으며, 습윤감은 최고치에 달하였다.

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The Effect of Geometrical Structure on the Moisture Transport Properties of Nonwoven Batting Materials (부직포 충전재의 구조적 특성이 수분전달 특성에 미치는 영향-단층구조와 이층구조 부직포의 비교-)

  • 김희숙;나미희
    • Journal of the Korean Society of Clothing and Textiles
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    • v.24 no.6
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    • pp.810-818
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    • 2000
  • The purpose of this study was to analyze the effect of geometrical structure on the moisture transport properties of nonwoven batting materials. Two types of nonwovens were used such as single and double layered nonwovens. Steady and dynamic state water vapor transport properties were measured by absorption, evaporation and cobaltous chloride method respectively. The results of this study were as follows: 1) Geometrical structure affected water vapor evaporation, but there were no differences between single and double layered nonwovens in moisture absorption. Thickness and air permeability were influencing factor on water vapor transport rate. 2) Directionality of double layered nonwoven was observed both in steady and dynamic state moisture transport. There were differences between upper and lower layer of double layered nonwoven both in moisture absorption rate and color change by cobaltous chloride method. 3) In dynamic state of water vapor transport rate, single layered nonwoven reached more rapidly at the established relative humidity. It was confirmed that geometrical structure affected water vapor evaporation and hydrophilicity of fiber affected moisture absorption because there were much more water vapor transport rate by evaporation than absorption within the same period of time.

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Modeling of Drying Cylinders in Paper Plants (제지공장 가열 실린더의 모델링)

  • Gwak, Gi-Yeong;Yeo, Yeong-Gu;Kim, Yeong-Gon;Choe, Gyeong-Seok;Gang, Hong
    • Proceedings of the Korea Technical Association of the Pulp and Paper Industry Conference
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    • 2003.11a
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    • pp.249-271
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    • 2003
  • The purpose of the present study is to identify the drying cylinder model in paper plants and to analyze characteristics of process responses for changes in input variables. The model developed in this work is based on actual plant operation data and the steam pressure applied to the cylinder behaves as one the main variables. It is found that heat transfer coefficients from the condensate to the canvas could be represented as empirical relations based on heat conductivities and operation date. The effectiveness of the cylinder model is demonstrated by the measured moisture contents and web temperature. Using transfer functions derived from the cylinder model stability of the drying process is analyzed.

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A Study on the Effect of Fiber Type on the Water Vapor Transport Properties (섬유의 종류와 조합에 따른 직물의 수분전달 특성에 관한 연구)

  • Na Me Hee;Kim Eun Ae
    • Journal of the Korean Society of Clothing and Textiles
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    • v.14 no.3 s.35
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    • pp.229-240
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    • 1990
  • The purpose of this study was to investigate the effect of hydrophilicity of the fiber on the water vapor transport properties of the fabric by using double layered fabrics of natural and synthetic fibers such as cotton, wool, nylon, dacron, orlon and polypropylene. Wickability and absorption rate were measured to determine the absorbancy of the fabrics. Dynamic and steady state water vapor transport properties were measured by cobaltous chloride method and evaporation method, respectively. Absorption was in the order of orlon> cotton > wool > nylon > polypropylene > dacron. Dynamic surface wetness of synthetic fabrics were faster than that of natural fabrics. For the double layered fabrics, higher water vapor transport was resulted when the natural fabric was exposed to lower vapor pressure and synthetic fabric was exposed to higher vapor pressure than when the fabrics were layered the other way around. Opposite result was obtained for orlon, which suggested that when the fabric of high absorbancy is exposed to the environment and lower absorbancy is to the skin, higher water vapor transpont could be resulted.

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