• Title/Summary/Keyword: 유리피막

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Developing a Study on the Extracting Method of Laminated Glass Fiber from FRP Boats (폐FRP 선박으로부터 섬유보강재 추출공정 개선 연구)

  • Yoon, Koo-Young
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.12 no.1
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    • pp.23-28
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    • 2009
  • There is several ways of recycling methods for waste FRP boats. The main one is mechanical recycling that is one of the simple and technically proven methods. It recently has been reported that FRP can be recycled by separating into laminated glass fiber layers instead of crushing into powder. Even though the mechanical recycling is a good way for the eligibility of laminated glass fiber reinforced material, the system should have another option which can collect resin of FRP. Because the resin is still very useful renewable energy source, that cannot be discarded, But FRP is made up of laminated glass fiber(roving cloth layer) which is fire retardant substances and very hard to break into each layer. Due to the high cost of fossil energy the waste plastics should be regenerated to the source of renewable energy. Laminated glass fiber which is recyclable in a very limited way, is currently a serious barrier to waste FRP boat regenerating. This study is to propose a new extracting method which is efficient and environment friendly FRP waste regenerating system. The recycled glass fiber which is obtained by the separation of the roving layer from FRP waste has been found to be useful for concrete(FRC) products or concrete(FRC) structures as fiber reinforced material. And it can be successively applied to renewable energy applications using the waste resins of FRP residue without laminated glass fiber.

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Comparison of Characteristics of Electrodeposited Lithium Electrodes Under Various Electroplating Conditions (다양한 전착조건에서 제작된 리튬 전극의 특성 연구)

  • Lim, Rana;Lee, Minhee;Kim, Jeom-Soo
    • Journal of the Korean Electrochemical Society
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    • v.22 no.3
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    • pp.128-137
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    • 2019
  • A lithium is the lightest metal on the earth. It has some attractive characteristics as a negative electrode material such as a low reduction potential (-3.04 V vs. SHE) and a high theoretical capacity ($3,860mAh\;g^{-1}$). Therefore, it has been studied as a next generation anode material for high energy lithium batteries. The thin lithium electrode is required to maximize the efficiency and energy density of the battery, but the physical roll-press method has a limitation in manufacturing thin lithium. In this study, thin lithium electrode was fabricated by electrodeposition under various conditions such as compositions of electrolytes and the current density. Deposited lithium showed strong relationship between process condition and its characteristics. The concentration of electrolyte affects to the shape of deposited lithium particle. As the concentration increases, the shape of particle changes from a sharp edged long one to a rounded lump. The former shape is favorable for suppressing dendrite formation and the elec-trode shows good stripping efficiency of 92.68% (3M LiFSI in DME, $0.4mA\;cm^{-2}$). The shape of deposited particle also affected by the applied current density. When the amount of current applied gets larger the shape changes to the sharp edged long one like the case of the low concentration electrolyte. The combination of salts and solvents, 1.5M LiFSI + 1.5M LiTFSI in DME : DOL [1 : 1 vol%] (Du-Co), was applied to the electrolyte for the lithium deposition. The lithium electrode obtained from this electrolyte composition shows the best stripping efficiency (97.26%) and the stable reversibility. This is presumed to be due to the stability of the surface film induced by the Li-F component and the DOL effect of providing film flexibility.

Effects of Electroacupuncture on the Alteration of Inflammation-related Proteins and Glycoconjugates in the Ankle Joint of Complete Freund's Adjuvant-injected Rats (전침이 Complete Freund's Adjuvant를 주사한 흰쥐의 거퇴관절내 염증관련 단백질 및 복합당질 변화에 미치는 연구)

  • Park, In-Bum;Yoon, Hyun-Min;Jang, Kyung-Jun;Kim, Cheol-Hong;Min, Young-Kwang;Song, Choon-Ho;Ahn, Chang-Beohm
    • Journal of Acupuncture Research
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    • v.25 no.2
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    • pp.105-117
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    • 2008
  • 목적 : 만성 염증성 질환에 대한 전침효과를 알아보기 위해 complete Freund's adjuvant(CFA) 유발 관절염 모델의 거퇴 관절 내 염증관련 단백질 및 복합당질의 변화를 살펴보았다. 방법 : Sprague-Dawley계 흰쥐의 족부에 CFA를 주사한 다음 3일 간격으로 2Hz, 15Hz 및 120Hz 전침자극을 주며 부종 형성여부를 plethysmometer로 측정하여 판정하였으며 30일째 거퇴관절을 취하여 4% paraformaldehyde에 고정하고 EDTA용액에서 탈회시켜 파라핀연속 절편을 얻어 $NF-{\kappa}B$를 비롯한 5종의 염증관련 단백질의 발현 및 복합당질 변화를 살펴보았다. 결과 : 관절연골 내 면역반응 중 연골기질은 반응이 없거나 약하고 연골세포는 $NF-{\kappa}Bp65$, $I-{\kappa}B{\alpha}$, iNOS 반응이 강하며 특히 유리연골층에서 더 현저하였으나 염증 및 전침자극에 따른 변화는 없었다. 관절낭에서 면역반응을 살펴보면 염증유발시 활액세포의 면역반응세포는 $I-{\kappa}B{\alpha}$가 감소한 반면 iNOS, $IL-1{\beta}$는 증가하며 특히 iNOS 증가가 현저하였으며 전침자극에 의해 iNOS 가 감소하였다. 활액막조직에서 모든 면역반응이 증가하며 특히 $NF-{\kappa}Bp65$, $I-{\kappa}B{\alpha}$, iNOS 반응이 현저한데 전침자극에 의해 $IL-1{\beta}$를 제외한 모든 반응이 감소하였다. 복합당질 염색성은 CFA를 주사한 염증유발 흰쥐군이 정상군에 비해 감소하였다. 관절연골 중 구역간질의 중성복합당질 및 연골세포피막의 산성복합당질이 현저히 감소하였다 Lectin반응도 DBA을 제외한 모든 발현이 염증유발시 감소하였다. 그러나 전침처리에 의해 정상군과 유사한 염색성과 lectin반응을 유지하였다. 특히 구역간질의 중성복합당질과 연골세포의 sWGA와 RCA-1 반응이 현저하였다. 결론 : 만성 염증성 동물모델의 거퇴 관절 내 염증관련 단백질은 관절연골보다 관절낭에서, 복합당질의 변화는 관절연골에서 큰 변화를 보였으며 전침의 자극에 의해 이들 변화가 억제되는 것을 알 수 있다. 이상의 결과로 보아 전침처치는 염증관련 단백질 발현 및 복합당질의 변화 억제를 통해 만성 관절염 질환에 효과적임을 알 수 있다.

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Hydration Reaction of Non-Sintering Cement Using Inorganic Industrial Waste as Activator (무기계 산업폐기물을 자극제로 이용한 비소성 시멘트의 수화반응)

  • Mun, Kyoung-Ju;Lee, Chol-Woong;So, Seung-Young;Soh, Yang-Seob
    • Journal of the Korea Concrete Institute
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    • v.18 no.2 s.92
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    • pp.267-274
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    • 2006
  • Greenhouse gas reduction will be highlighted as the most pending question in the cement industry in future because the production of Portland cement not only consumes limestone, clay, coal, and electricity, but also release waste gases such as $CO_2,\;SO_3$, and NOX, which can contribute to the greenhouse effect and acid rain. To meet the increase of cement demand and simultaneously comply with the Kyoto Protocol, cement that gives less $CO_2$ discharge should be urgently developed. This study aims to manufacture non-sintering cement(NSC) by adding phosphogypsum(PG) and waste lime(WL) to granulated blast furnace slag(GBFS) as sulfate and alkali activators. This study also Investigates the hydration reaction of NSC through analysis of scanning electron microscopy(SEM), X-ray diffraction(XRD), differential thermal analysis(DTA), and pH. Results obtained from analysis of the hydrate have shown that the glassy films of GBFS are destroyed by the activation of alkali and sulfate, ions eluted from the inside of GBFS react with PG and produce ettringite, and consequently the remaining component in GBFS slowly produced C-5-H(I) gel. Here, PG is considered not only to play the role of simple activator, but also to work as a binder reacting with GBFS.

Histological Observations and Comparison of the Resistance to Polyhedrosis Viruses in Various Varieties of the Silkworm, Bombyx mori L., fed on Artificial Diet (가잠의 인공사료육에 있어서 다각체 바이러스에 대한 품종별 저항성 및 조직학적 관찰)

  • Gang, Seok-U;Im, Jong-Seong;Son, Hae-Ryong
    • Journal of Sericultural and Entomological Science
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    • v.27 no.2
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    • pp.20-27
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    • 1985
  • This study was carried out to investigate the histological changes after the infection of nuclear and cytoplasmic polyhedrosis viruses(NPV, CPV) and the resistance to the viruses in various varieties of the silkworm fed on artificial diet. The results obtained were as follows; Among four varieties of silkworm tested, Jam 107$\times$Jam 108 was more resistant than the other varieties tested and Jam 119$\times$Jam 120 was the most resistant to CPV. In case of peroral infection with NPV, Jam 107$\times$Jam 108 showed lower mortality than the remained varieties in low concentration (104/ml). However, all varieties showed high mortality as the concentration of viruses was increased. With infection of CPV, the varieties showed high mortality at the concentration of 107 and 108/ml, while Jam 119$\times$Jam 120 showed the lowest mortality at virus concentration of 104/ml. The fat bodies, epidermal cells and tracheal epithelial cells showed high susceptibility to NPV to break the cells completely and liberate the debris to the body cavity. The CPV infected only the cylindrical cells of mid-gut and formed polyhedrons. In some cells, CPV was liberated to gastral cavity. In the electrophoretic pattern of hemolymph protein of silkworm larvae infected with NPV, bands were dimmed and disappeared as symptom aggravated after infection. Electrophoretic pattern of homolymph proteins of silkworm larvae infected with CPV showed no numerical difference at the later stage of infection, and one or two bands was observed along with lowering the concentrations.

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Roles of i-SiC Buffer Layer in Amorphous p-SiC/i-SiC/i-Si/n-Si Thin Film Solar Cells (비정질 p-SiC/i-SiC/i-Si/n-Si 박막 태양전지에서 i-SiC 완충층의 역할)

  • Kim, Hyun-Chul;Shin, Hyuck-Jae;Lee, Jae-Shin
    • Korean Journal of Materials Research
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    • v.9 no.12
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    • pp.1155-1159
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    • 1999
  • Thin film solar cells on a glass/$SnO_2$ substrate with p-SiC/i-Si/n-Si heterojunction structures were fabricated using a plasma-enhanced chemical-vapor deposition system. The photovoltaic properties of the solar cells were examined with varying the gas phase composition, x=$CH_4/\;(SiH_4+CH_4)$, during the deposition of the p-SiC layer. In the range of x=0~0.4, the efficiency of solar cell increased because of the increased band gap of the p-SiC window layer. Further increase in the gas phase composition, however, led to a decrease in the cell efficiency probably due to in the increased composition mismatch at the p-SiC/i-Si layers. As a result, the efficiency of a glass/$SnO_2$/p-SiC/i-SiC/i-Si/n-Si/Ag thin film solar cell with $1cm^2$ area was 8.6% ($V_{oc}$=0.85V, $J_{sc}$=16.42mA/$cm^2$, FF=0.615) under 100mW/$cm^2$ light intensity.

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Characteristics and Genesis of Terrace Soils in Yeongnam Area -IV: Soil micromorphological features (영남지역(嶺南地域)에 분포(分布)된 단구지토양(段丘地土壤)의 특성(特性)과 생성연구(生成硏究) -제(第) 4 보(報) : 토양미세형태학적(土壤微細形態學的) 특성(特性))

  • Jung, Yeun-Tae;Shin, Jae-Sung;No, Yeong-Pal
    • Korean Journal of Soil Science and Fertilizer
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    • v.19 no.3
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    • pp.205-210
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    • 1986
  • A soil micromorphological study of clayey terrace soils in Yeongnam area was carried out to investigate the soil genetic features and to distinguish the soil parent materials. Dominant plasmic fabrics in the terrace soils were vosepic, mosepic, insepic, and masepic of sepic fabrics but the Geugrag and Upyeong in Yeongil sequence have an asepic fabrics. Embedded grain cutans in the terrace soils were characterized by having porphyroskelic related distribution. Among pedological features of the B horizons of the terrace soils, the argillic cutans of ferriargillans and glaebules of manganiferrous concretions were the dominant in mineralogical composition, and the papules are abundant in the most terrace soils indicating that the soils are generally old. The substrata of the Bancheon in Yeongcheon and Upyeong in Yeongil area were so different from the terrace deposits in plasmic fabrics that these soils were believed to be composed of bisequum profiles. Because of having the free grain cutans, it was considered that the substrata of Bancheon in Yeongcheon and Upyeong in Yeongil area might have a period of soil formation before deposition of the terrace materials.

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Development of Immediate Face Lifting Technology for Reducing Wrinkles by Using Film-Forming Agent (피막 형성제를 이용한 즉각 리프팅 기술 개발)

  • Jun, Ji hyun;Ko, Eun ah;Han, Sang Gun;Kang, Hakhee
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.44 no.3
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    • pp.211-218
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    • 2018
  • Instant face lifting cosmetics contain various film forming agents for stretching the wrinkles on the skin surface. But, most of the film-forming polymers have sticky feels. And they are easily scrubbed out when skin is rubbed on. In this study, we focused on the influence of sodium silicate that has rapid film forming effect on skin surface and immediate wrinkle reducing effect. Sodium silicate, also known as water glass or soluble glass, is a compound containing sodium oxide and silica. Sodium silicate is a white powder that is readily soluble in water, producing an alkaline solution. Sodium silicate is stable in neutral and alkaline solutions. The sodium silicate solution hardens by drying in air and rapidly forms a thin film. When the solution is applied to the skin, the fine membrane coating is formed by water evaporation and ionic bond re-formation. It also makes the strong siloxane (Si-O) bonding on the skin surface. When these fixation properties are applied to cosmetics, they can give remarkable skin tightening effect. The sodium silicate solution can provide the lifting effect by forming a film on skin at a proper concentration. But, skin irritation may be caused with too high concentration of sodium silicate. We studied a desirable range of the sodium silicate concentration and combination with other fixatives for skin care formulation that has no sticky feels and no scrubbing out phenomenon. Immediate lifting gel was developed by using sodium silicate and various thickening systems. Among of the various thickeners, aluminum magnesium silicate showed the best compatibility with sodium silicate for rapid lifting effect. This instant physical lifting gel was confirmed as a low stimulating formula by skin clinical test.