• 제목/요약/키워드: secondary ions

검색결과 224건 처리시간 0.026초

Na/Al 비와 양생온도가 지오폴리머의 백화억제에 미치는 영향 (Influence of Na/Al Ratio and Curing Temperature of Geopolymers on Efflorescence Reduction)

  • 김병관;허예은;전철민;이수정
    • 자원리싸이클링
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    • 제27권6호
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    • pp.59-67
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    • 2018
  • 백화는 시멘트 콘크리트의 표면에 흰 가루 물질이 생성되는 것으로 이 현상은 지오폴리머에서도 나타난다. 지오폴리머의 백화는 알칼리 자극제의 나트륨과 대기 중 이산화탄소가 반응하여 나트륨 탄산염 물질이 지오폴리머 표면에 나타나 발생한다. 본 연구에서는 비산재 기반 지오폴리머의 Na/Al 비를 조절하거나 양생온도와 가열 양생 기간을 변화시켰을 때 2차 백화를 억제할 수 있는지 검토하였다. 지오폴리머의 28일 압축강도는 Na/Al 비가 0.8인 시료보다 Na/Al 비가 1.0인 시료에서 높게 나타났으며, 양생온도가 높고 가열 양생 기간이 길수록 강도는 높게 나타났다. 한편 백화는 Na/Al 비가 1.0인 시료의 경우 양생온도가 높고 가열 양생 기간이 길수록 적게 나타났다. Na/Al 비가 0.8인 시료에서는 Na/Al 비가 1.0인 시료에서 보다 백화가 더 빠르게 나타났다. 비산재 기반 지오폴리머의 2차 백화 발생을 억제하기 위해서는 Na/Al 비를 1.0으로 유지하는 것과 양생온도를 높이고 가열 양생 시간을 길게 하는 것이 유리할 것으로 생각된다.

침지형 한외여과 막공법과 역삼투 공법을 이용한 하.폐수처리 (Wastewater Treatment Using Ultrafiltration (UF) and Reverse Osmosis (RO) Process)

  • 최희정;박연종;이승목
    • 대한환경공학회지
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    • 제34권10호
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    • pp.678-683
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    • 2012
  • 세계적인 물부족을 해결하는 대안 중의 하나는 하수 재이용이다. 본 연구는 A시의 하수를 UF와 RO 공법으로 처리하여 인근지역의 공업용수로 재사용이 가능한지의 여부를 확인하고자 하였다. A시의 하수를 UF와 RO로 처리한 결과 Na, Mg, Cl, Ca, Mn, $PO_4$, $SO_4$ 등은 원수 대비 97% 이상의 높은 처리 효율을 보였으나, $NH_4$-N, TN, $NO_3$-N, BOD등의 영양염류는 각각 35.71%, 85.21%, 87.05% 그리고 56%로 상대적으로 낮은 제거율을 보였다. 그러나 영양염류는 원수 자체의 함유량이 소량 이여서 하수 처리수 공업용수 재이용수질 권고 기준을 만족하는데 문제가 없었다. 그 외의 측정항목 또한 하수 처리수 공업용수 재이용수질 권고 기준을 만족하여 인근지역의 공업용수로 재사용에는 문제가 없을 것으로 예상된다.

Corrosion effects on mechanical behavior of steel fiber reinforced concrete, including fibers from recycled tires

  • Ansari, Mokhtar;Safiey, Amir
    • Computers and Concrete
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    • 제26권4호
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    • pp.367-375
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    • 2020
  • Today, the use of special technologies in the admixture of concrete has made tremendous progress, but the problem that has always existed in the construction of concrete members is the brittleness and lack of loading bearing after cracking, which leads to reduced strength and energy absorption. One of the best ways to fix this is to reinforce the concrete with steel fibers. Steel fibers also control cracks due to dry shrinkage, reduce structural crack width, and improve impact resistance. In this study, recycled steel fibers from worn tires have been used in the manufacture of concrete samples, the secondary benefits of which are the reduction of environmental pollution. One of the disadvantages of steel fiber reinforced concrete is the corrosion of steel fibers and their deterioration in harsh environments such as coastal areas. Corrosion caused by chlorine ions in metal fibers causes deterioration and early decommissioning of structures in corrosive environments. In this study, the effect of the dosage of steel fibers (dosages of 15, 30, and 45 kg of fibers per cubic meter of concrete) and aspect ratio of fibers (aspect ratio of 25 and 50) on compressive and flexural strength of concrete samples are investigated. In the following, the effect of fiber corrosion on the results of the mechanical properties of concrete samples is examined. The results show that the increase in fiber causes a relative increase in compressive strength, and a significant increase in flexural strength, and corrosion of steel fibers without reducing workability reduces compressive strength and flexural strength by up to 6 to 11%, respectively.

Applications of Ar Gas Cluster Ion Beam Sputtering to Ta2O5 thin films on SiO2/Si (100)

  • Park, Chanae;Chae, HongChol;Kang, Hee Jae
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.119-119
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    • 2015
  • Ion beam sputtering has been widely used in Secondary Ion Mass Spectrometry (SIMS), X-ray Photoelectron Spectroscopy (XPS), and Auger Electron Spectroscopy (AES) for depth profile or surface cleaning. However, mainly due to severe matrix effects such as surface composition change from its original composition and damage of the surface generated by ion beam bombardment, conventional sputtering skills using mono-atomic primary ions with energy ranging from a few hundred to a thousand volts are not sufficient for the practical surface analysis of next-generation organic/inorganic device materials characterization. Therefore, minimization of the surface matrix effects caused by the ion beam sputtering is one of the key factors in surface analysis. In this work, the electronic structure of a $Ta_2O_5$ thin film on $SiO_2/Si$ (100) after Ar Gas Cluster Ion Beam (GCIB) sputtering was investigated using X-ray photoemission spectroscopy and compared with those obtained via mono-atomic Ar ion beam sputtering. The Ar ion sputtering had a great deal of influence on the electronic structure of the oxide thin film. Ar GCIB sputtering without sample rotation also affected the electronic structure of the oxide thin film. However, Ar GCIB sputtering during sample rotation did not exhibit any significant transition of the electronic structure of the $Ta_2O_5$ thin films. Our results showed that Ar GCIB can be useful for potential applications of oxide materials with sample rotation.

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유리/실리콘 기판 직접 접합에서의 세정과 열처리 효과 (Effects of Wafer Cleaning and Heat Treatment in Glass/Silicon Wafer Direct Bonding)

  • 민홍석;주영창;송오성
    • 한국전기전자재료학회논문지
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    • 제15권6호
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    • pp.479-485
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    • 2002
  • We have investigated the effects of various wafers cleaning on glass/Si bonding using 4 inch Pyrex glass wafers and 4 inch silicon wafers. The various wafer cleaning methods were examined; SPM(sulfuric-peroxide mixture, $H_2SO_4:H_2O_2$ = 4 : 1, $120^{\circ}C$), RCA(company name, $NH_4OH:H_2O_2:H_2O$ = 1 : 1 : 5, $80^{\circ}C$), and combinations of those. The best room temperature bonding result was achieved when wafers were cleaned by SPM followed by RCA cleaning. The minimum increase in surface roughness measured by AFM(atomic force microscope) confirmed such results. During successive heat treatments, the bonding strength was improved with increased annealing temperatures up to $400^{\circ}C$, but debonding was observed at $450^{\circ}C$. The difference in thermal expansion coefficients between glass and Si wafer led debonding. When annealed at fixed temperatures(300 and $400^{\circ}C$), bonding strength was enhanced until 28 hours, but then decreased for further anneal. To find the cause of decrease in bonding strength in excessively long annealing time, the ion distribution at Si surface was investigated using SIMS(secondary ion mass spectrometry). tons such as sodium, which had been existed only in glass before annealing, were found at Si surface for long annealed samples. Decrease in bonding strength can be caused by the diffused sodium ions to pass the glass/si interface. Therefore, maximum bonding strength can be achieved when the cleaning procedure and the ion concentrations at interface are optimized in glass/Si wafer direct bonding.

하드 디스크 드라이브 회전수 변화가 드라이브 내 나노 오염 입자 발생에 미치는 영향 (Effect of Disk Rotational Speed on Contamination Nano Particles Generated in a Hard Disk Drive)

  • 이대영;황정호;배귀남
    • 대한기계학회논문집B
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    • 제28권8호
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    • pp.976-983
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    • 2004
  • In high-density hard disk drives, the slider should be made to fly close to the magnetic recording disk to generate better signal resolution and at an increasingly high velocity to achieve better data rate. The slider disk interaction in CSS (contact-start-stop) mode is an important source of particle generation. Contamination particles in the hard disk drive can cause serious problems including slider crash and thermal asperities. We investigated the number and the sizes of particles generated in the hard disk drive, operating at increasing disk rotational speeds, in the CSS mode. CNC (condensation nucleus counter) and PSS (particle size selector) were used for this investigation. In addition, we examined the particle components by using SEM (scanning electron microscopes), AES (auger electron spectroscopy), and TOF-SIMS (time of flight-secondary ions mass spectrometry). The increasing disk rotational speed directly affected the particle generation by slider disk interaction. The number of particles that were generated increased with the disk rotational speed. The particle generation rate increased rapidly at motor speeds above 8000 rpm. This increase may be due to the increased slider disk interaction. Particle sizes ranged from 14 to 200 nm. The particles generated by slider disk interaction came from the lubricant on the disk, coating layer of the disk, and also slider surface.

Pilot 규모의 경사판 침전지 시험을 통한 국내 석탄광산배수내 부유물질의 지구화학적 반응특성 및 조정영향 (Geochemical Reaction Processes and Controls on the Coal Mine Drainage using Pilot-scale Inclined Clarifiers)

  • 이상훈;오민아;이재영;권은혜;김도영;김덕민
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권7호
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    • pp.73-80
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    • 2013
  • Fine suspended solids from coal mine drainage were treated in the treating plant, using two different pilot-scale inclined clarifiers: radial and lamella types. Suspended solids in the mine drainage were monitored along with other geochemical factors, and metal contents. Fe and Mn are the main chemical components in the drainage, which exist predominantly as total metal forms, whereas dissolved portion is negligible. The raw mine drainage is subject to physical and chemical treatment using $CaCO_3$ and NaOH, therefore the suspended solids are thought to be composed of Fe and Mn precipitates, possibly $Fe(OH)_3$, along with carbonate precipitates. The elemental composition of precipitates are confirmed by SEM-EDS analysis. As nearly all the dissolved ions were precipitated in the primary process by $CaCO_3$, no further aeration or prolonged oxygenation are of necessity in this plant. Adoption of inclined clarifier proved to be effective in treating fine suspended solids in the current plant. Successful application of the inclined clarifier will also be beneficial to improve the current treating process by excluding the current application of chemical agent in the first stage. The final effluents from the pilot plant meet the national standards and the low dissolved Fe and Mn contents are expected not to cause secondary precipitation after discharge.

2010년 서울에서 관측한 황사와 연무사례의 물리, 화학, 광학적 특성비교 (Physical, Chemical and Optical Properties of an Asian Dust and Haze Episodes Observed at Seoul in 2010)

  • 송승주;김정은;임은하;차주완;김준
    • 한국대기환경학회지
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    • 제31권2호
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    • pp.131-142
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    • 2015
  • This study investigated physicochemical and optical characteristics for three episodes of Asian dust, stagnant haze and long-range transport haze and for one clean day. $PM_{10}$ mass concentration during Asian dust and two haze days was increased by 2~9 times compared to that of clean episode. During Asian dust episode, coarse particle concentration was increased and the mass concentration of calcium in a coarse mode ($1.8{\sim}10{\mu}m$) was $5.4{\mu}g/m^3$ which was 7 times higher than that of clean episode. The calcium was presented as a form of $CaCO_3$ in a coarse mode. During the two haze episodes, fine particle (< $1.8{\mu}m$) concentration was increased and secondary inorganic pollutants such as sulfate, ammonium and nitrate composed of 90% of the total ions. $(NH_4)_2SO_4$ and $NH_4NO_3$ were dominant in a fine mode for stagnant haze episode. But they were the most dominant form in both fine mode and coarse mode for long-range transport haze episode. According to the optical properties for each episode (Asian dust, stagnant haze and long-range transport haze) were classified as dust, black carbon and mixture, respectively.

Novel Naphthalene Based Lariat-Type Crown Ethers Using Direct Single Electron Transfer Photochemical Strategy

  • Park, Hea Jung;Sung, Nam Kyung;Kim, Su Rhan;Ahn, So Hyun;Yoon, Ung Chan;Cho, Dae Won;Mariano, Patrick S.
    • Bulletin of the Korean Chemical Society
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    • 제34권12호
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    • pp.3681-3689
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    • 2013
  • This study explored a direct SET-photochemical strategy to construct a new family of thioene conjugated-naphthalamide fluorophore based lariat-crown ethers which show strong binding properties towards heavy metal ions. Irradiations of designed nitrogen branched (trimethylsilyl)methylthio-terminated polyethylenoxy-tethered naphthalimides in acidic methanol solutions have led to highly efficient photocyclization reactions to generate naphthalamide based lariat type thiadiazacrown ethers directly in chemo- and regio-selective manners which undergo very facile secondary dehydration reactions during separation processes to produce their corresponding amidoenethio ether cyclic products tethered with electron donating diethyleneoxy- and diethyenethio-side arm chains. Fluorescence and metal cation binding properties of the lariat type enamidothio products were examined. The photocyclized amidoenethio products, thioene conjugated naphthalamide fluorophore containing lariat-thiadiazacrowns exhibited strong fluorescence emissions in region of 330-450 nm along with intramolecular exciplex emissions in region of 450-560 nm with their maxima at 508 nm. Divalent cation $Hg^{2+}$ and $Pb^{2+}$ showed strong binding to sulfur atom(s) in side arm chain and atoms in enethiadiazacrown ether rings which led to significant enhancement of fluorescence from its chromophore singlet excited state and concomitant quenching of exciplex emission. The dual fluorescence emission responses towards divalent cations might provide a new guide for design and development of fluorescence sensors for detecting those metals.

A Study on the Electrode Characteristics of Hypo-Stoichiometric Zr-based Hydrogen Storage Alloys

  • Lee, Sang-Min;Kim, Seoung-Hoe;Lee, Jai-Young
    • 한국수소및신에너지학회논문집
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    • 제10권4호
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    • pp.197-210
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    • 1999
  • The hydrogen storage performance and electrochemical properties of $Zr_{1-X}Ti_X(Mn_{0.2}V_{0.2}Ni_{0.6})_{1.8}$(X=0.0, 0.2, 0.4, 0.6) alloys are investigated. The relationship between discharge performance and alloy characteristics such as P-C-T characteristics and crystallographic parameters is also discussed. All of these alloys are found to have mainly a C14-type Laves phase structure by X-ray diffraction analysis. As the mole fraction of Ti in the alloy increases, the reversible hydrogen storage capacity decreases while the equilibrium hydrogen pressure of alloy increases. Furthermore, the discharge capacity shows a maxima behavior and the rate-capability is increased, but the cycling durability is rapidly degraded with increasing Ti content in the alloy. In order to analyze the above phenomena, the phase distribution, surface composition, and dissolution amount of alloy constituting elements are examined by S.E.M., A.E.S. and I.C.P. respectively. The decrease of secondary phase amount with increasing Ti content in the alloy explains that the micro-galvanic corrosion by multiphase formation is little related with the degradation of the alloys. The analysis of surface composition shows that the rapid degradation of Ti-substituted Zr base alloy electrode is due to the growth of oxygen penetration layer. After comparing the radii of atoms and ions in the electrolyte, it is clear that the electrode surface becomes more porous, and that is the source of growth of oxygen penetration layer while accelerating the dissolution of alloy constituting elements with increasing Ti content. Consequently, the rapid degradation (fast growth of the oxygen-penetrated layer) with increasing Ti substitution in Zr-based alloy is ascribed to the formation of porous surface oxide through which the oxygen atom and hydroxyl ion with relatively large radius can easily transport into the electrode surface.

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