• Title/Summary/Keyword: far-infrared ray emissivity

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Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property (원적외선 방출 특성을 갖는 나노 웹의 제조 및 원적외선 방사 특성에 관한 연구)

  • Hong, So-Ya;Lee, Chang-Hwan;Kim, Joo-Yong
    • Textile Coloration and Finishing
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    • v.22 no.2
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    • pp.118-122
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    • 2010
  • The interest in textile which has far-infrared ray emissive property has been increased in the field of biophysics and medicine. In this study, far-infrared ray emissive polyurethane nano-web was obtained using electrospinning of polyurethane(PU) solution mixed with ceramics powder and far-infrared ray emissive properties of nano-web were evaluated by measuring far-infrared ray emission power and emissivity(%). To investigate the influence of concentration of ceramics powder in PU solution and temperature for far-infrared ray emissive properties, far-infrared ray emissivity was measured at varied temperature using various nano-web including varied concentration of ceramics powder. Polyurethane nano-web was characterized by SEM to observe the deposition of ceramics powder on polyurethane nano-web surface. The far-infrared ray emissivity was increased with the concentration of ceramics powder in the nano-web. The far-infrared ray emission power was enhanced with increasing temperature of the samples; however, far-infrared ray emissivity was decreased with increasing temperature because the increase of emission power of ceramic containing nano-web was lower than the emission power of black body one.

Far Infrared Emissivity of Wood Material - Comparing the Three Heat Transfer Modes of Wood Box and Aluminum Box

  • Lee, Hwa-Hyoung;Bender, Donald A.
    • Journal of the Korean Wood Science and Technology
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    • v.37 no.5
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    • pp.440-450
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    • 2009
  • In case of wood flooring, the high emissivity would be one of the most important properties especially as the cover material of underfloor heating system. The FIR (Far Infrared) materials such as wood emit FIR energy by heating, which has been used as the medical therapy such as dry sauna. This research investigated the emissivity and the emission power of wood composites by comparing the amount of the three heat transfer modes transferred by infrared radiation which came from the increased temperature of the bottom board of the plywood box by the heater. The results showed the value of radiation mode was the highest mode for the plywood box, and the convection mode was the main mode for the aluminum box. The rate of convection was 81.8% in the aluminum box and 48.2% in the plywood box, respectively. In case of the rate of radiation, the aluminum box showed only 15.4% and the plywood box showed 51%. The emissivity and the emission power of birch plywood showed the same values as those of wood. The amount of energy required for the temperature rising of water within vial in the aluminum box and in the plywood box were 3.32 kJ and 6.70 kJ respectively, which showed that the vial temperature of the plywood box was two times higher than that of the aluminum box.

Far Infrared Radiation Characteristics of Germanium Compounds (게르마늄 화합물의 원적외선 방사특성)

  • Lee, Hyun-Kyung;Lee, Kyung-Mee
    • Applied Chemistry for Engineering
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    • v.17 no.6
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    • pp.597-603
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    • 2006
  • In order to study the effects of $GeO_{2}$ contents in $XSiO_{2}{\cdot}YGeO_{2}$ and $XSiO_{2}{\cdot}YNa_{2}O{\cdot}ZGeO_{2}$ compounds on far infrared ray radiation, we investigated the sample of $XSiO_{2}{\cdot}YGeO_{2}$ and $XSiO_{2}{\cdot}YNa_{2}O{\cdot}ZGeO_{2}$ using TG-DTA, XRD, FT-IR spectrophotometer and FT-IR spectrometer. The far infrared ray emissivity and emission power were increased with the increase of $GeO_{2}$ contents in $XSiO_{2}{\cdot}YGeO_{2}$ and $XSiO_{2}{\cdot}YNa_{2}O{\cdot}ZGeO_{2}$ compounds. The far infrared ray emissivity and emission power of $XSiO_2{\cdot}YGeO_2$ compounds were higher than those of $XSiO_{2}{\cdot}YNa_{2}O{\cdot}ZGeO_{2}$ compounds.

Far Infra Red Emissivity of Five Korean Wood Species (한국산 5개 수종의 원적외선 방사율)

  • Lee, Hwa Hyoung
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.1 s.129
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    • pp.17-20
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    • 2005
  • This research was carried out to examine the FIR (far-infrared rays) emissivity and emission power of five Korean wood species for proving wood as an amenity material. Wood turned out excellent as FIR material with 90~91% emissivity in the range of $5{\sim}20{\mu}m$ at $40^{\circ}C$. No difference was identified in the FIR emissivity and emission power between hardwood and softwood, diffuse porous wood and ring porous wood, and high-density wood and low-density wood respectively.

Formaldehyde Deodorization Effect and Far-Infrared Emission Characteristics of Ceramics Prepared with Sawdust, Risk Husk, and Charcoal: Effect of Material Mixing Ratio

  • HWANG, Jung-Woo;OH, Seung-Won
    • Journal of the Korean Wood Science and Technology
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    • v.50 no.2
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    • pp.104-112
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    • 2022
  • Indoor air quality is a very important environmental factor in modern society. However, air pollutants generated from various interior construction materials significantly affect the human body, including formaldehyde (HCHO) and volatile organic compounds that threaten public health by deteriorating indoor air quality. Effective in removing these harmful substances are porous materials, such as woodceramics. In this study, charcoal, a porous material, was added to rice husk, an agricultural by-product, and sawdust generated during the sawing process to prepare boards and ceramics at different mixing ratios, and the HCHO deodorization performance and far-infrared emission characteristics were measured. As the mixing ratio of charcoal increased, the deodorization rate of the boards and ceramics tended to increase. Overall, the deodorization rate was measured to be 80% to 90%, indicating that the boards and ceramics prepared with charcoal are suitable to be used for the purpose of deodorization. The effect of the material mixing ratio on far-infrared emissivity and emission power was insignificant.

Optimization of sintering process of the far-infrared radiation ceramic (원적외선 방사 세라믹의 소결공정 최적화)

  • Park, Jae Hwa;Kim, Hyun Mi;Kang, Hyo Sang;Choi, Jae Sang;Choi, Bong Geun;Nam, Ki Woong;Nam, Han Woo;Shim, Kwang Bo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.26 no.1
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    • pp.28-34
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    • 2016
  • Far-infrared radiation ceramic is an attractive material that provides thermal therapy by permeating the infrared rays into the deep inside of the human skin. Therefore, it is currently used for thermal therapy devices, thermal mat, heating equipment and so on. This work aims to optimize the sintering process of the far-infrared radiation ceramic with the process parameters of temperature and time. A variety of characterization tools have been used to investigate the optimal sintering condition of far-infrared radiation. The phase of far-infrared radiation ceramic was characterized by using X-ray diffraction (XRD) and microstructure of fracture surface was studied by scanning electron microscopy (SEM). The FT-IR was also performed to measure the far-infrared emissivity.

Emission of Far-infrared Ray in Packaging Paper

  • Lee, Ji-Young;Kim, Chul-Hwan;Jung, Ho-Gyeong;Shin, Tae-Gi;Seo, Jeong-Min;Lee, Young-Rok
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.40 no.5
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    • pp.47-52
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    • 2008
  • The far-infrared ray (FIR) has been applied to various fields such as medical therapy, kitchen utensils, bath supplies, and so on. The FIR-emitting agent was used to make functional paperboards to have freshness-maintaining ability. The FIR-emitting agent was diluted with different concentrations at 0.5% starch solution, and the FIR-emitting solutions were coated on paperboards, i.e., liner. The more the concentration of the FIR radiating agent increased at 0.5% cationic starch solution, the higher FIR emissivity and emission power of paperboards increased. The corrugated boxes made of paperboards coated by the FIR-radiating agents at over 5% dilution concentration endowed mandarin oranges in the boxes with greater antimicrobial activity than those in boxes made of paperboards coated by the agent at below 5% concentration. In addition, it was ascertained that treatment of the FIR agents rarely affected strength properties of paperboards.

Effects of Temperature and Surface Roughness of Zinc on the Far-Infrared Ray Emissivity (아연의 가열온도와 표면 거칠기가 원적외선 복사량에 미치는 영향)

  • 장충근;임진석;김원사
    • Journal of the Mineralogical Society of Korea
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    • v.12 no.2
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    • pp.96-100
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    • 1999
  • Effects of surface conditions (temperature and roughness) of test specimens, when measuring emissive power of far-infrared ray, have been investigated using FT-IR spectrometer. Element metal zinc (Zn) was selected in this study as representative specimen of materials consisting of simple element. The zinc specimens were heated to four temperatures, i.e., 333K, 353K, .373K, and also their surface was finished with SiC abrasive papers of 100, 220, 360, 400, 600, 800, and 1000 mesh in size. The results shows that the emissive power (W/㎡) of the far-infrared ray increases with temperature for a given roughness and its relationship may be expressed by the following equations: Yη=1.0=0.142$.$T-0.937 for η=1.0, and Yη=10=0.016$.$T-1.286 for η=10. The emissive power is also known to increase with surface roughness for a given temperature. Their relationship can be represented by the following equations: YT=313K=0.234$.$$\ell$n(η)+3.53, at 313K, YT=353K=0.234$.$$\ell$n(η)+4.02 at 353K and YT=393K=0.243$.$$\ell$n(η)+4.62 at 393K.

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Characteristics of Bottom Ash Generated from Coal Fired Power Plants' Bottom Ash as an Eco-friendly Bio-composite Material - Focusing on Far Infrared Ray, Antibacteria, Antifungus, Deodorization, Aridity and Humidity - (친환경 바이오 혼합소재로서 화력발전소 유연탄 Bottom ash의 특성 연구 - 원적외선, 항균, 항곰팡이, 탈취, 조습 등을 중심으로 -)

  • Lee, Jong Gyu;Yeo, Woon Ho
    • Journal of the Korea Organic Resources Recycling Association
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    • v.25 no.4
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    • pp.51-60
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    • 2017
  • Bottom ash(BA) from coal-fired power plants is burnt and remaining ash at high temperature. Since the BA is baked at high temperature, it is considered to be the same function as the elvan. Nowadays, the demand for mortar with far infrared rays, antibacteria, antifungus, deodorization, aridity and humidity function is increasing as the materials such as Hwangtoh(yellow soil) and elvan rather than general mortar. As a result of comparing the functionality of eco-friendly bio BA mortar with that of general mortar, the far infrared ray emissivity is about $0.02{\times}10^2W/m^2$ more and the deodorization function is about 26% or more. Even in the case of humidity control, BA motors showed about 1.8 times higher than general mortar, and more than 10% higher than the "good" standards of moisture absorption and damp proofing construction materials established by the Ministry of Land, Transport and Maritime Affairs.

The photo-removal Characteristic of NOx by photocatalyst/scoria/loess concrete (광촉매가 첨가된 스코리아/황토 콘크리트의 NOx 제거 특성)

  • Ko, Seong-Hyun;Lee, Jae-Hoon;Hong, Chong-Hyun;Ryu, Soong-Phil;Kim, Moon-Hoon;Moon, Kyung-Jong
    • Proceedings of the Korea Concrete Institute Conference
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    • 2006.05b
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    • pp.593-596
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    • 2006
  • The environment-friendly building material, photocatalyst/scoria/loess concrete, was prepared using scoria and loess (which have merits as building materials) and photocatalyst (which has the functions to compose the environmental contaminants and of self cleaning). In order to apply this material as a building material, the compressive and flexible strengths, and water absorptivity (which have been set by Korea Industrial Standard) were measured. In order to know the environment-friendly characteristics of this material, several tests, such as, the tests of emissivity and emission power of far infrared ray and acoustic absorptivity, antibacterial test for Escherichia coli and Pseudomonas aeruginosa, antifungal test for mixed fungal strains, and deodorization test of ammonia were carried out. Moreover, the removal characteristics of NOx, and formaldehyde (HCHO) by photocatalyst/scoria/loess concrete were examined as the following different parameters: the removal characteristics of these contaminants with the substitution ratio and the kind of photocatalyst, light source, UV intensity of sunlight, relative humidity, intial NOx concentration.

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