• 제목/요약/키워드: average pore diameter

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초음파를 적용한 PET 직물의 알칼리 가수분해에 관한 연구(II) - 기공특성과 올리고머 분석 - (A Study on the Alkali Hydrolysis of PET fabrics with Ultrasonic Application(II)- Surface Porosity and Oligomer Analysis -)

  • 김삼수;서말용;박성우;윤태희;이승구;허만우
    • 한국염색가공학회지
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    • 제14권6호
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    • pp.305-312
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    • 2002
  • In order to give a silk-like touch to PET fabrics, the PET fabrics were treated with NaOH alkaline solution in various conditions. In alkaline treatment, the liquor flow type pilot weight reduction apparatus with magnetostrictive ultrasonic transducer was used for the study. The effects of ultrasonic application, treatment time and temperature at NaOH 4% and 6"A solution on the decomposition rate of PET fabrics. From the results of the decomposition rate of PET fabrics, the qualitative and quantitative analysis of oligomer after decomposition of PET fabrics carried out by the HPLC. On the other hand, the surface pore characteristics of decomposition PET fabrics measured by porosimetery. The pore characteristics on the surface of treated PET fiber depended on the decomposition rate and did not depend on the ultrasonic cavitation. The pore diameter of alkaline untreated PET fiber were 15A and those of treated PET fibers were 5~6$\AA$ at the maximum pore volume. The average pore sizes of fiber before and after treatment were 141 h and 160h, respectively. Total amount of oligomer of the untreated PET fibers were 1.70wt% and 67.7% of total oligomer occupied with PET cyclic trimer and PET cyclic tetramer. Total amount of oligomer of fiber with 26.9% and 48.0% of weight loss without ultrasonic application were 1.78wt% and 1.79wt%, respectively. Also total amount oligomer of fibers which were reduced 27.7% and 48.2% of weight loss with ultrasonic application were 1.74wt%. This result showed that the removal rate of oligomer in the process of alkaline hydrolysis with ultrasonic higher than that of without ultrasonic application.tion.

Structural and Optical Properties of Porous Silicon Prepared by Electrochemical Etching

  • Lee, Jeong-Seok;Cho, Nam-Hee
    • 한국세라믹학회지
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    • 제39권2호
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    • pp.109-112
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    • 2002
  • The structural and optical features of Porous Silicon(PS) were investigated; the porous silicon was prepared by electrochemical etching of silicon wafers in HF solution. The morphologies and Photoluminescece(PL) features of the PS were investigated in terms of etching time, current density and aging conditions. The average pore diameter and pore depth were determined by current density and etching time, respectively. As-prepared PS exhibited the maximum PL peak at the wavelength of ∼ 450 nm. The degree of deviation from as-prepared PS during aging treatment seemed to depend on the microstructure as well as morphology of the PS. It is found that etching current density played an important role on the microstructural features of the PS.

Microwave-enhanced gasification of sewage sludge waste

  • Chun, Young Nam;Song, Hee Gaen
    • Environmental Engineering Research
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    • 제24권4호
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    • pp.591-599
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    • 2019
  • To convert sewage sludge to energy, drying-gasification characteristics during microwave heating were studied. During the gasification of carbon dioxide, the main products were gas, followed by char, and tar in terms of the amount. The main components of the producer gas were carbon monoxide and hydrogen including a small amount of methane and light hydrocarbons. They showed a sufficient heating value as a fuel. The generated tar is gravimetric tar, which is total tar. As light tars, benzene (light aromatic tar) was a major light tar. Naphthalene, anthracene, and pyrene (light polycyclic aromatic hydrocarbon tars) were also generated, but in relatively small amounts. Ammonia and hydrogen cyanide (precursor for NOx) were generated from thermal decomposition of tar containing protein and nitrogen in sewage sludge. In the case of sludge char, its average pore diameter was small, but specific area, pore volume, and adsorption amounts were relatively large, resulting in superior adsorption characteristics.

전류세기의 변화에 따른 DBR 다공성 실리콘의 광학적 특성 (Optical Characterization of DBR Porous Silicon by Changing of Applied Current Density)

  • 최태은;박재현
    • 통합자연과학논문집
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    • 제2권2호
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    • pp.82-85
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    • 2009
  • Distributed Bragg reflector (DBR) porous silicon (PSi) was generated by an electrochemical etching a bragg structure into a silicon wafer through electrode current in aqueous ethanolic HF solution. DBR PSi exhibiting unique reflectivity was successfully obtained by an electrochemical etching of silicon wafer using square current waveform. The multilayered photonic crystals of DBR PSi exhibited the reflection of a specific wavelength with high reflectivity in the optical reflectivity spectrum. In this work, we have developed a method to create refractive index in Si substrate through intensity of an electric current. The electrochemical process allows for precise control of the structural properties of DBR PSi such as thickness of the porous layer, porosity, and average pore diameter. The number of reflection peak of DBR PSi and its pore size increased as the intensity of electric current increased. This might be a demonstration for the fabrication of specific reflectors or filters.

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졸-겔 침지법에 의한 $SiO_2.ZrO_2$계 다공질 저반사 코팅막 제조 및 특성 (Preparation and Characterization of Porous Low Reflective Coating Films for $SiO_2.ZrO_2$ System by Sol-Gel Dip-Coating Method)

  • 김상진;한상목;신대용;김경남
    • 한국세라믹학회지
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    • 제34권7호
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    • pp.774-780
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    • 1997
  • Porous low reflective coating films of SiO2.ZrO2 system were prepared from the mixed alkoxide solutions of Zr(O-nC3H7)4 and partially prehydrolyzed TEOS by the sol-gel method using the dip-coating technique. In the case of 90SiO2.10ZrO2 porous coating films with HCl and H2O content was 0.3 mole and 4 mole, 378 m2/g of the specific surface area, 0.254 cm3/g of total pore volume, 30-50$\AA$ of average pore diameter. The transmittance of 90SiO2.10ZrO2 porous coated films was 95.38% at the wavelength of 550 nm, compared with the parent glass, the transmittance was increased with 4.38%.

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염화아연 약품활성화를 이용한 음식물쓰레기로부터 활성탄 제조 (Preparation of Activated Carbon from Wasted Food by Chemical Activation with Zinc Chloride)

  • 강화영;이영동;김세훈;박성봉;정재성;박상숙
    • 대한환경공학회지
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    • 제30권9호
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    • pp.900-906
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    • 2008
  • 활성탄을 제조하기 위하여 원료물질로서 음식물쓰레기를 이용하였다. 음식물쓰레기를 염화아연으로 약품활성화 하였다. 실험은 서로 다른 약품첨가비율(활성화제/음식물쓰레기), 활성화 온도, 그리고 활성화시간을 변수로 하여 수행하였다. 활성화물의 특성을 나타내기 위하여 요오드가와 메틸렌블루 가, BET 표면적, 세공 용적, 미세공 비율, 세공 직경, 수율 그리고 주사전자현미경 관찰을 수행하였다. 로터리 킬른 반응로를 이용하여 염화아연 함침비 1.0배인 시료를 500$^{\circ}C$에서 60분 동안 활성화하여 제조한 활성화물의 요오드가는 480 mg/g, 메틸렌블루 가는 95 mL/g, BET 표면적은 410 m$^2$/g, 세공 용적은 0.248 cm$^3$/g, 그리고 평균세공직경은 2.43 nm로 나타났다. 제조한 활성탄의 총 표면적중 미세공 면적 비율은 70.7%, 총 세공 용적 중 미세공 용적 비율은 53.2%를 나타냈다.

산 촉매가 물유리 기반 실리카 에어로겔의 기공구조에 미치는 영향 (Effect of Acid Catalyst Kinds on the Pore Structural Characteristics of Water Glass based Silica Aerogel)

  • 나하윤;정해누리;이규연;구양서;박형호
    • 마이크로전자및패키징학회지
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    • 제24권3호
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    • pp.13-18
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    • 2017
  • 물유리는 기존의 silicon alkoxide보다 훨씬 단가가 저렴하여 상업화에 유리하다는 장점을 나타낸다. 물유리 기반 실리카 에어로겔의 제조에서 산 촉매에 의한 중합 과정이 최종 미세 기공구조 특성에 상당한 영향을 끼치는데, 본 연구에서는 이러한 산 촉매의 종류와 양에 대한 물유리 기반 실리카 에어로겔의 비표면적, 기공 크기 분포 등 각 경우에 해당하는 물성 및 그에 따른 차이를 연구하였다. 최종 생성물의 물성을 통해 물유리 기반 실리카 에어로겔은 중합 반응에 관여하는 산 촉매의 종류와 농도, 몰수에 의해 영향을 받고, 특히 산 촉매의 몰수에 의한 영향이 몰 농도에 의한 영향보다 크게 작용함을 확인하였다. 기존 방식으로 4M 염산 촉매를 첨가할 경우 비표면적이 $394m^2/g$, 기공의 부피가 2.20 cc/g, 평균 기공 지름이 22.3 nm이며 기공률이 92.53%인 실리카 에어로겔을 합성할 수 있었다. 반면 4M의 황산 촉매를 적정량의 몰수인 73 mmol로 투입하여 최종 물유리 기반 실리카 에어로겔을 제조할 경우 비표면적은 $516m^2/g$, 기공의 부피는 3.10 cc/g, 평균 기공 지름은 24.1 nm, 기공률은 96.1%로, 기존의 산 촉매를 투입하여 만든 물유리 기반 실리카 에어로겔보다 전반적으로 기공구조의 특성이 향상됨을 확인하였다.

Structural and Electrical Properties of an Electrolyte-insulator-metal Device with Variations in the Surface Area of the Anodic Aluminum Oxide Template for pH Sensors

  • Kim, Yong-Jun;Lee, Sung-Gap;Yeo, Jin-Ho;Jo, Ye-Won
    • Journal of Electrical Engineering and Technology
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    • 제10권6호
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    • pp.2364-2367
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    • 2015
  • In this study, we fabricated an electrolyte-insulator-metal (EIM) device incorporating a high-k Al2O3 sensing membrane using a porous anodic aluminum oxide (AAO) through a two-step anodizing process for pH detection. The structural properties were observed by field-emission scanning electron microscopy (FE-SEM) and X-ray diffraction patterns (XRD). Electrochemical measurements taken consisted of capacitance-voltage (C-V), hysteresis voltage and drift rates. The average pore diameter and depth of the AAO membrane with a pore-widening time of 20 min were 123nm and 273.5nm, respectively. At a pore-widening time of 20 min, the EIM device using anodic aluminum oxide exhibited a high sensitivity (56mV/pH), hysteresis voltage (6.2mV) and drift rate (0.25mV/pH).

다공성 티타늄 임플란트의 담지물질 방출거동 (Release behavior of embedding materials on the porous Ti implants)

  • 김영훈;김남중
    • 대한치과기공학회지
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    • 제36권3호
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    • pp.179-184
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    • 2014
  • Purpose: This study was performed to investigate the release behavior of bioactive materials as a BMP-2 embedding on the porous titanium implant. Methods: Porous Ti implant samples were fabricated by sintering of spherical Ti powders in a high vacuum furnace. Specimens diameter and height were 4mm and 10mm. Embedding materials were used to stamp ink. Sectional images, porosity and release behavior of porous Ti implants were evaluated by scanning electron microscope(SEM), mercury porosimeter and UV-Vis-NIR spectrophotometer. Results: Internal pore structure was formed fully open pore. Average pore size and porosity were $8.993{\mu}m$ and 8.918%. Embedding materials were released continually and slowly. Conclusion: Porous Ti implant was fabricated successfully by sintering method. Particles are necking strongly each other and others portions were vacancy. Therefore bioactive materials will be able to embedding to porous Ti implants. If the development of the fusion implant of the bioactive material will be able to have the chance to several patients.

Carbon nanoballs: formation mechanism and electrochemical performance as an electrode material for the air cathode of a Li-air battery

  • Kang, Jun
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권8호
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    • pp.838-842
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    • 2015
  • The Li-air battery is a promising candidate for the most energy-dense electrochemical power source because it has 5 to 10 times greater energy storage capacity than that of Li-ion batteries. However, the Li-air cell performance falls short of the theoretical estimate, primarily because the discharge terminates well before the pore volume of the air electrode is completely filled with lithium oxides. Therefore, the structure of carbon used in the air electrode is a critical factor that affects the performance of Li-air batteries. In a previous study, we reported a new class of carbon nanomaterial, named carbon nanoballs (CNBs), consisting of highly mesoporous spheres. Structural characterization revealed that the synthesized CNBs have excellent a meso-macro hierarchical pore structure, with an average diameter greater than 10 nm and a total pore volume more than $1.00cm^3g^{-1}$. In this study, CNBs are applied in an actual Li-air battery to evaluate the electrochemical performance. The formation mechanism and electrochemical performance of the CNBs are discussed in detail.