• 제목/요약/키워드: carbon effect

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전기화학 프로세스에 의한 Carbon 특성 (Electric Properties of Carbon Using Electrochemical Process)

  • 이상헌
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 추계학술대회 논문집 Vol.19
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    • pp.388-389
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    • 2006
  • Electro-deposition of carbon film on silicon substrate in methanol solution was carried out with various current density, solution temperature and electrode spacing between anode and cathode. The carbon films with smooth surface morphology and high electrical resistance were formed when the distance between electrode was relatively wider. The electrical resistance of the carbon films were independent of both current density and solution temperature.

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논토양에서 퇴비시용 및 경운이 토양탄소 축적과 안정화에 미치는 영향 (Effect of Compost and Tillage on Soil Carbon Sequestration and Stability in Paddy Soil)

  • 홍창오;강점순;신현무;조재환;서정민
    • 한국환경과학회지
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    • 제22권11호
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    • pp.1509-1517
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    • 2013
  • So far, most studies associated with soil carbon sequestration have been focused on long term aspect. However, information regarding soil carbon sequestration in short term aspect is limited. This study was conducted to determine changes of soil organic carbon content and stability of carbon in response to compost application rate and tillage management during rice growing season(150 days) in short term aspect. Under pot experiment condition, compost was mixed with an arable soil at rates corresponding to 0, 6, 12, and 24 Mg/ha. To determine effect of tillage on soil carbon sequestration, till and no-till treatments were set up in soils amended with application rate of 12 Mg/ha. Compost application and tillage management did not significantly affect soil organic carbon(SOC) content in soil at harvest time. Bulk density of soil was not changed significantly with compost application and tillage management. These might result from short duration of experiment. While hot water extractable organic carbon(HWEOC) content decreased with compost application, humic substances(HS) increased. Below ground biomass of rice increased with application of compost and till operation. From the above results, continuos application of compost and reduce tillage might improve increase in soil organic carbon content and stability of carbon in long term aspect.

가황시스템 변화가 가황고무의 점탄성적 특성에 미치는 효과 (The Effect of Cure System for the Viscoelastic Properties of Vulcanized Rubber)

  • 박남국;이석
    • Elastomers and Composites
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    • 제34권1호
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    • pp.11-19
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    • 1999
  • 카본블랙 첨가량, 촉진제에 대한 황 함량비에 따른 가황고무의 점탄성 특성을 반발탄성, 저장 및 손실 모듈러스, tan ${\delta}$를 통하여 고찰하였다. 반발탄성은 촉진제에 대한 황 함량비가 낮을수록, 배합고무중 카본-블랙의 체적분율이 낮을수록 높게 나타났다. 저장 모듈러스는 카본블랙 첨가량과 변형이 증가할수록 감소하였으나, 가황시스템과는 무관하게 나타났다. 특히 카본블랙 첨가량이 낮은 수준 ($40{\sim}50phr$)에서는 변형이 3% 이상에서, 첨가량이 높은 수준(60phr 이상)에서는 변형이 6% 이상에서 일정한 저장 모듈러스를 보이고 있어 입자간에 형성되는 망상구조는 6% 이상의 변형에서 파괴됨을 알 수 있다. 손실 모듈러스는 카본블랙 첨가량이 낮은 수준에서는 별다른 영향이 없으나, 높은 수준에서는 1% 변형에서 최대값을 보인 후 완만히 감소하였다. Tan ${\delta}$는 가황시스템에 대한 의존성은 약하나 카본블랙 첨가량 및 변형이 증가함에 따라 증가하였으나, 카본블랙 첨가량에 관계없이 2% 변형에서 최대값을 나타내었다.

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Effect of Inherent Anatomy of Plant Fibers on the Morphology of Carbon Synthesized from Them and Their Hydrogen Absorption Capacity

  • Sharon, Madhuri;Sharon, Maheshwar
    • Carbon letters
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    • 제13권3호
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    • pp.161-166
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    • 2012
  • Carbon materials were synthesized by pyrolysis from fibers of Corn-straw (Zea mays), Rice-straw (Oryza sativa), Jute-straw (Corchorus capsularis) Bamboo (Bombax bambusa), Bagass (Saccharum officinarum), Cotton (Bombax malabaricum), and Coconut (Cocos nucifera); these materials were characterized by scanning electron microscope, X-ray diffraction (XRD), and Raman spectra. All carbon materials are micro sized with large pores or channel like morphology. The unique complex spongy, porous and channel like structure of Carbon shows a lot of similarity with the original anatomy of the plant fibers used as precursor. Waxy contents like tyloses and pits present on fiber tracheids that were seen in the inherent anatomy disappear after pyrolysis and only the carbon skeleton remained; XRD analysis shows that carbon shows the development of a (002) plane, with the exception of carbon obtained from bamboo, which shows a very crystalline character. Raman studies of all carbon materials showed the presence of G- and D-bands of almost equal intensities, suggesting the presence of graphitic carbon as well as a disordered graphitic structure. Carbon materials possessing lesser density, larger surface area, more graphitic with less of an $sp^3$ carbon contribution, and having pore sizes around $10{\mu}m$ favor hydrogen adsorption. Carbon materials synthesized from bagass meet these requirements most effectively, followed by cotton fiber, which was more effective than the carbon synthesized from the other plant fibers.

Effects of oil absorption on the wear behaviors of carbon/epoxy woven composites

  • Lee, Jae-H.;Lee, Jae-S.;Rhee, Kyong-Y.
    • Carbon letters
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    • 제12권4호
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    • pp.249-251
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    • 2011
  • Carbon/epoxy woven composites are prominent wear-resistant materials due to the strength, stiffness, and thermal conductivity of carbon fabric. In this study, the effect of oilabsorption on the wear behaviors of carbon/epoxy woven composites was investigated. Wear tests were performed on dry and fully oil-absorbed carbon/epoxy woven composites. The worn surfaces of the test specimens were examined via scanning electron microscopy to investigate the wear mechanisms of oil-absorbed carbon/epoxy woven composites. It was found that the oil absorption rate was 0.14% when the carbon/epoxy woven composites were fully saturated. In addition, the wear properties of the carbon/epoxy woven composites were found to be affected by oilabsorption. Specifically, the friction coefficients of dry and oil-absorbed carbon/epoxy woven composites were 0.25-0.30 and 0.55-0.6, respectively. The wear loss of the oilabsorbed carbon/epoxy woven composites was $3.52{\times}10^{-2}\;cm^3$, while that of the dry carbon/epoxy woven composites was $3.52{\times}10^{-2}\;cm^3$. SEM results revealed that the higher friction coefficient and wear loss of the oil-absorbed carbon/epoxy woven composites can be attributed to the existence of broken and randomly dispersed fibers due to the weak adhesion forces between the carbon fibers and the epoxy matrix.

이압요법이 흡연 남자대학생의 흡연량, 흡연욕구, 호기 일산화탄소에 미치는 효과 (Effect of Auricular Acupressure Therapy on Decreasing Smoking rates, Desire for Smoking, and Exhaled Carbon Monoxide in Male College Students)

  • 권오윤;송정희;박경숙
    • 재활간호학회지
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    • 제18권2호
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    • pp.88-97
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    • 2015
  • Purpose: This study was conducted to investigate the effect of auricular acupressure therapy on decreasing smoking rates, desire for smoking, and exhaled carbon monoxide in male college students. Methods: The quasi-experimental, nonequivalent control group pretest-posttest design was used in this study. The participants (n=56) were assigned to the experimental group (n=29) that received auricular acupressure therapy or the control group (n=27) that received placebo therapy. The therapy was applied for 5 days followed by 1 or 2 days of rest. The therapy was repeated 2 times. To identify the effect of the experimental treatments, assessments of smoking rates, desire for smoking and exhaled carbon monoxide were measured. Data were analyzed using $x^2$ test, Fisher's exact test, t-test and Repeated measure ANOVA with the SPSS version 21.0 program. Results: The experimental group showed significantly lower smoking rates (t=6.60, p<.001), desire for smoking (t=3.37, p=.002) and exhaled carbon monoxide levels (t=6.22, p<.001) after application of the therapy. Significant group${\times}$time interaction effect was found in exhaled carbon monoxide levels between the experimental group and the control group (F=8.73, p=.001). Conclusion: Auricular acupressure therapy was considered to likely be useful as a therapeutic intervention for smoking cessation in male young adults.

MODELLING STUDY OF THE EFFECT OF CHEMICAL ADDITIVES ON SOOT PRECURSORS REDUCTION

  • Park, J.K.
    • International Journal of Automotive Technology
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    • 제7권4호
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    • pp.501-508
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    • 2006
  • The effect of chemical additives, such as dimethyl ether(DME), ethanol, carbon disulfide on the soot formation were examined numerically. ill this study, the Frenklach soot mechanism was used as a base mechanism to predict the soot formation in the ethane flame. The combination of Westbrook's DME mechanism, Marinov's ethanol mechanism, and chemical kinetic mechanism for hydrogen sulfide and carbon disulfide flames was made with the base mechanism because the DME, ethanol, $CS_2$ additives are added into the ethane fuel. CHEMKIN code was used as a numerical analysis software to simulate the effect of chemical additives on reduction of the polycyclic aromatic hydrocarbons(PAH's) which are soot precursors. From the numerical results it is observed that addition of DME, ethanol and $CS_2$ into ethane fuel can reduce PAH species significantly. That means theses additives can reduce soot formation significantly. Results also strongly suggest suppression of soot formation by these additives to be mainly a chemical effect. Hand OH radicals may be the key species to the reduction of PAH species for additives.

Investigations of Temperature Effect on the Conduction Mechanism of Electrical Conductivity of Copolymer/Carbon Black Composite

  • El Hasnaoui, M.;Kreit, L.;Costa, L.C.;Achour, M.E.
    • Applied Microscopy
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    • 제47권3호
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    • pp.121-125
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    • 2017
  • This study deals the prediction of temperature effect on low-frequency dispersion of alternating current (AC) conductivity spectra of composite materials based on copolymer reinforced with carbon black (CB) particles. A sample of ethylene butylacrylate loaded with 13% of CB particles were prepared and investigated using the impedance spectroscopy representation in the frequency range from 40 Hz to 0.1 MHz and temperature range from $20^{\circ}C$ to $125^{\circ}C$. The dielectric constant, ${\varepsilon}^{\prime}$, and dielectric losses, ${\varepsilon}^{{\prime}{\prime}}$, were found to decrease with increasing frequency. The frequency dependence of the AC conductivity follows the universal power law with a large deviation in the high frequency region, the positive temperature coefficient in resistivity effect has been observed below the melting temperature which makes this composite potentially remarkable for industrial applications.