• 제목/요약/키워드: post-heating

검색결과 151건 처리시간 0.028초

Axial compressive behavior of partially encased recycled aggregate concrete stub columns after exposure to high temperatures

  • Jiongfeng Liang;Wanjie Zou;Liuhaoxiang Wang;Wei Li
    • Steel and Composite Structures
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    • 제52권2호
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    • pp.121-134
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    • 2024
  • To investigate the compressive behavior of partially encased recycled aggregate concrete (PERAC) stub columns after exposed to elevated temperatures, 22 specimens were tested. The maximum temperature suffered, the replacement ratio of recycled coarse aggregate (RCA), the endurance time and the spacing between links were considered as the main parameters. It was found that the failure mode of post-heated PERAC columns generally matched that of traditional partially encased composite (PEC) columns, but the flange of specimens appeared premature buckling after undergoing the temperature of 400℃ and above. Additionally, the ultimate strength and ductility of the specimens deteriorated with the elevated temperatures and extended heating time. When 400℃< T ≤ 600℃, the strength reduction range is the largest, about 11% ~ 17%. The higher the replacement ratio of RCA, the lower the ultimate strength of specimens. At the temperature of 600℃, the ultimate strength of specimens with the RCA replacement ratio of 50% and 100% is 0.94 and 0.91 times than that of specimens without RCA, respectively. But the specimen with 50% replacement ratio of RCA showed the best ductility performance. And the bearing capacity and ductility of PERAC stub columns were changed for the better due to the application of links. When the RCA replacement ratio is 100%, the ultimate strength of specimens with the link spacing of 100 mm and 50 mm increased 14% and 25% than that of the specimen without links, respectively. Based on the results above, a formula for calculating the ultimate strength of PERAC stub columns after exposure to high temperatures was proposed.

New Approaches for Overcoming Current Issues of Plasma Sputtering Process During Organic-electronics Device Fabrication: Plasma Damage Free and Room Temperature Process for High Quality Metal Oxide Thin Film

  • Hong, Mun-Pyo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
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    • pp.100-101
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    • 2012
  • The plasma damage free and room temperature processedthin film deposition technology is essential for realization of various next generation organic microelectronic devices such as flexible AMOLED display, flexible OLED lighting, and organic photovoltaic cells because characteristics of fragile organic materials in the plasma process and low glass transition temperatures (Tg) of polymer substrate. In case of directly deposition of metal oxide thin films (including transparent conductive oxide (TCO) and amorphous oxide semiconductor (AOS)) on the organic layers, plasma damages against to the organic materials is fatal. This damage is believed to be originated mainly from high energy energetic particles during the sputtering process such as negative oxygen ions, reflected neutrals by reflection of plasma background gas at the target surface, sputtered atoms, bulk plasma ions, and secondary electrons. To solve this problem, we developed the NBAS (Neutral Beam Assisted Sputtering) process as a plasma damage free and room temperature processed sputtering technology. As a result, electro-optical properties of NBAS processed ITO thin film showed resistivity of $4.0{\times}10^{-4}{\Omega}{\cdot}m$ and high transmittance (>90% at 550 nm) with nano- crystalline structure at room temperature process. Furthermore, in the experiment result of directly deposition of TCO top anode on the inverted structure OLED cell, it is verified that NBAS TCO deposition process does not damages to the underlying organic layers. In case of deposition of transparent conductive oxide (TCO) thin film on the plastic polymer substrate, the room temperature processed sputtering coating of high quality TCO thin film is required. During the sputtering process with higher density plasma, the energetic particles contribute self supplying of activation & crystallization energy without any additional heating and post-annealing and forminga high quality TCO thin film. However, negative oxygen ions which generated from sputteringtarget surface by electron attachment are accelerated to high energy by induced cathode self-bias. Thus the high energy negative oxygen ions can lead to critical physical bombardment damages to forming oxide thin film and this effect does not recover in room temperature process without post thermal annealing. To salve the inherent limitation of plasma sputtering, we have been developed the Magnetic Field Shielded Sputtering (MFSS) process as the high quality oxide thin film deposition process at room temperature. The MFSS process is effectively eliminate or suppress the negative oxygen ions bombardment damage by the plasma limiter which composed permanent magnet array. As a result, electro-optical properties of MFSS processed ITO thin film (resistivity $3.9{\times}10^{-4}{\Omega}{\cdot}cm$, transmittance 95% at 550 nm) have approachedthose of a high temperature DC magnetron sputtering (DMS) ITO thin film were. Also, AOS (a-IGZO) TFTs fabricated by MFSS process without higher temperature post annealing showed very comparable electrical performance with those by DMS process with $400^{\circ}C$ post annealing. They are important to note that the bombardment of a negative oxygen ion which is accelerated by dc self-bias during rf sputtering could degrade the electrical performance of ITO electrodes and a-IGZO TFTs. Finally, we found that reduction of damage from the high energy negative oxygen ions bombardment drives improvement of crystalline structure in the ITO thin film and suppression of the sub-gab states in a-IGZO semiconductor thin film. For realization of organic flexible electronic devices based on plastic substrates, gas barrier coatings are required to prevent the permeation of water and oxygen because organic materials are highly susceptible to water and oxygen. In particular, high efficiency flexible AMOLEDs needs an extremely low water vapor transition rate (WVTR) of $1{\times}10^{-6}gm^{-2}day^{-1}$. The key factor in high quality inorganic gas barrier formation for achieving the very low WVTR required (under ${\sim}10^{-6}gm^{-2}day^{-1}$) is the suppression of nano-sized defect sites and gas diffusion pathways among the grain boundaries. For formation of high quality single inorganic gas barrier layer, we developed high density nano-structured Al2O3 single gas barrier layer usinga NBAS process. The NBAS process can continuously change crystalline structures from an amorphous phase to a nano- crystalline phase with various grain sizes in a single inorganic thin film. As a result, the water vapor transmission rates (WVTR) of the NBAS processed $Al_2O_3$ gas barrier film have improved order of magnitude compared with that of conventional $Al_2O_3$ layers made by the RF magnetron sputteringprocess under the same sputtering conditions; the WVTR of the NBAS processed $Al_2O_3$ gas barrier film was about $5{\times}10^{-6}g/m^2/day$ by just single layer.

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국소 진행성 직장암의 수술전 동시 화학방사선치료와 온열치료병합시 수술후 부작용 (Postoperative Complications after Preoperative Chemoradiotherapy Combined with Hyperthermia in Locally Advanced Rectal Cancer)

  • 예지원
    • 한국의학물리학회지:의학물리
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    • 제25권2호
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    • pp.89-94
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    • 2014
  • 국소 진행성 직장암 환자에서 수술 전 항암방사선동시요법으로 치료시 추가적인 고주파 온열치료 유무가 수술 후 부작용에 미치는 영향을 분석하였다. 1996년부터 2007년 사이, 본원에서 수술 전 항암방사선동시요법과 근치적 수술을 시행한 환자 205명을 대상으로 급, 만성부작용을 분석하였다. 총 방사선치료선량은 39.6 Gy에서 45 Gy였고 1회 내지 2회의 항암약물치료(5-fluorouracil, leucovorin)를 동시에 시행하였다. 88명의 환자가 주 2회, 8-MHz 고주파 온열치료기를 이용한 국소 온열치료를 시행하였다. 외과적 수술은 수술 전 치료 완결 후 4~6주 경과하여 시행하였다. 환자군의 나이 중앙값은 59세(18세~83세)이고 추적관찰기간 중앙값은 61개월(2개월~191개월)이었다. 전체 환자에서 5년 전체생존율과 무합병증 생존율은 77.4%와 73.7%였다. 각각의 조기 누출, 지연 누출, 연결부 협착, 누공, 소장폐쇄의 발생빈도는 1.0%, 2.9%, 1.5%, 5.9%, 그리고 17.1%였다. 온열치료는 모든 종류의 부작용을 증가시키지 않았다. 온열치료를 실시하지 않은 군과 온열치료군 간의 5년 무합병증 생존율은 71.8%와 76.3%였다(p=0.293). 온열치료는 수술전 항암방사선동시요법 후 근치적 수술을 시행하는 국소 진행 직장암 환자의 수술후 부작용을 증가시키지 않는다.

음식물류폐기물 처리시설에서의 악취발생 특성 및 관리방안 (The Characteristic and Management of Odor Emitted from Foodwaste Treatment Facility)

  • 유승성;김영두;이준연;차영섭;김은숙;전재식;선우영;엄석원;채영주
    • 환경영향평가
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    • 제21권3호
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    • pp.353-365
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    • 2012
  • This study is understanding characteristics and analyzing contributions of the odor causing compounds of complex-odor & major specified odor materials, and contribution analysis, caused pre-treatment facilities(input and storage) and post-treatment facilities(heating and drying). The target of this study is feeds-production-facilities, located in Seoul. The averaged complex-odor compounds on the boundary line is 21 times higher, and it is 15 times higher than emission standards. In cracking&collection(pre-treatment facilities), the concentration of compounds is 4,881 times, 2,080 times in drying, and 1,442 times in putting&storing facilities. Ammonia occupies the largest portion of the results of monitoring specified odor compounds in input&storage facilities, followed Acetaldehyde > Hydrogen sulfide > Methyl mercaptan. In cracking&collection, Ammonia also occupies most of odor compounds, followed Methyl mercaptan > Acetaldehyde > Dimethyl disulfide > Dimethyl sulfide > Hydrogen sulfide. Acetaldehyde > Methyl mercaptan in drying facilities. On the boundary line, however, the concentration of specified odor compounds stays below emission standards. The result of contribution analysis is that methyl mercaptan has the highest contribution in input & storage, as well as cracking&collection facilities, followed Acetaldehyde > Hydrogen sulfide > Dimethyl sulfide > Dimethyl disulfide. In the drying facilities, the contribution shows Methyl mercaptan > Acetaldehyde > i-Valeraldehyde and Butyraldehyde. Therefore, to decrease odor in foodwaste treatment facilities, proper prevention facilities need to be installed and operated, according to characteristics of individual odor compounds, based on monitored data.

Determination of Optimal Conditions of Pressure Toasting on Legume Seeds for Dairy Deed Industry : I. Effects of Pressure Toasting on Nutritive Values of Lupinus albus in Lactating Dairy Cows

  • Yu, P.;Goelema, J.O.;Tamminga, S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권8호
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    • pp.1205-1214
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    • 1999
  • Whole lupinus albus seeds were pressure toasted at temperatures of 100, 118 and $136^{\circ}C$ for 3, 7, 15 and 30 min to study rumen degradation and post-rumen digestion and to determine optimal heating conditions for the Dutch dairy feed industry. In sacco nylon bag and mobile bag techniques were employed for rumen and intestine incubations to determine ruminal degradation characteristics and intestinal digestion of crude protein (CP) in 4 lactation rumen cannulated and 4 lactating intestinal cannulated Dutch dairy cows fed 47% hay and 53% concentrate according to Dutch dairy requirements. Measured rumen degradation characteristics were soluble fraction (S), undegradable fraction (U), potentially degradable fraction (D), lag time (T0) and rate of degradation (Kd) of insoluble but degradable fraction. Percentage bypass feed protein (BCP), ruminal microbial protein synthesized based on available nitrogen (N_MP) and that based on available energy (E_MP), true protein supplied to the small intestine (TPSI), truly absorbed BCP (ABCP), absorbed microbial protein (AVP) in the small intestine, endogenous protein losses in the digestion (ENDP), true digested protein in the small intestine (TAP or DVE in Dutch) and degraded protein balance (PDB or OEB in Dutch) were totally evaluated using the new Dutch DVE/OEB System. Pressure toasting decreased (p<0.001) rumen degradability of CP. It reduced S (p<0.05) and Kd (p=0.06), increased D (p<0.05) and U (p<0.01) but did not alter T0 (p>0.05), thus resulting in dramatically increased BCP (p<0.001) with increasing time and temperature from 73.7 (raw) up to 182.5 g/kg DM ($136^{\circ}C/15min$). Although rumen microbial protein synthesized based on available energy (E_MP) was reduced, true protein (microbial and bypass feed protein) supplied to the small intestine (TPSI) was increased (p<0.001) from 153.1 (raw) to 247.6 g/kg DM ($136^{\circ}C/15min$). Due to digestibility of BCP in the intestine not changing (p>0.05) average 87.8%, the absorbed BCP increased (p<0.001) from 62.3 (raw) to 153.7 g/kg DM ($136^{\circ}C/15min$). Therefore DVE value of true digested protein in the small intestine was significantly increased (p<0.001) from 118.9 (raw) to 197.0 g/kg DM ($136^{\circ}C/15min$) and OEB value of degraded protein balance was significantly reduced (p<0.001) from 147.2 (raw) to 63.1 g/kg DM ($136^{\circ}C/15min$). It was concluded that pressure toasting was effective in shifting degradation of CP of lupinus albus from the rumen to small intestine without changing intestinal digestion. Further studies are required on the degradation and digestion of individual amino acids and on the damaging effects of processing on amino acids, especially the first limiting amino acids.

테크네슘-99엠 트리카보닐 시스테인의 제조 및 생물학적 특성 평가 (Preparation and biological evaluation of 99mTc tricarbonyl cysteine)

  • 장범수;박경배;윤효인
    • 대한수의학회지
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    • 제44권1호
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    • pp.15-21
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    • 2004
  • This paper describes the development of $^{99m}Tc$ tricarbonyl cysteine as potential renal function diagnostic radiopharmaceutical and evaluation of its biological characteristics using experimental animals. l-Cysteine was labeled efficiently with $^{99m}Tc$ tricarbonyl precursor $([^{99m}Tc(CO)_3(H_2O)_3)]^{+})$ under 30 min heating at ${75^{\circ}C}$. Labeling yield and stability were analyzed by high performance liquid chromatography (HPLC). The biodistribution property of $^{99m}Tc$ tricarbonyl cysteine in mice and its dynamic imaging profiles in rabbits were carried out. To investigate the excretion mechanism of $^{99m}Tc$ tricarbonyl cysteine, tubular transport inhibition test with probenecid was adopted. $^{99m}Tc$ tricarbonyl cysteine was obtained with a high labeling yield under the moderate condition. The results of biodistribution experiments of $^{99m}Tc$ tricarbonyl cysteine in ICR mice at 3 and 90 min provided that $^{99m}Tc$ tricarbonyl cysteine was very highly accumulated in the kidney and bladder, thereby almost 99% of $^{99m}Tc$ tricarbonyl cysteine was excreted within 90 min post injection. The same results were confirmed by the whole body dynamic images for 30 minutes and static images in rabbits at given time intervals after injection. Renogram of $^{99m}Tc$ tricarbonyl cysteine in rabbits showed that its $T_{max}$ and $T_{1/2}$ of $^{99m}Tc$ tricarbonyl cysteine were $2.33{\pm}0.56$ and $4.30{\pm}0.79$ min, respectively. The $T_{max}$ of $^{99m}Tc$ tricarbonyl cysteine with probenecid pretreatment was $2.30{\pm}0.17$ min, whereas $T_{1/2}$ of that with probenecid pretreatment was $17.0{\pm}32.47$ min. $T_{1/2}$ of $^{99m}Tc$ tricarbonyl cysteine with probenecid pretreatment was significantly different, as compared to the result without probenecid (p<0.0001). The results showed that the excretion of $^{99m}Tc$ tricarbonyl cysteine was extremely affected by probenecid. Therefore, $^{99m}Tc$ tricarbonyl cysteine was rapidly excreted from the kidney principally by the tubular secretion.

로타 오버레이 용접공정 개발 (Development of rotor overlay welding process)

  • 이경운;김동진;강성태
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2009년 추계학술발표대회
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    • pp.12-12
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    • 2009
  • 터빈에서 핵심부품인 로터는 블레이드를 원심 운동시키는 대형 단조강이며, 고압의 증기 조건에서 고속회전하며 고온에서 운전과 저온에서 과속시험 동안 높은 원심력을 받는다. 또한 기동/정지 천이 동안 열응력을 받기 때문에, 이러한 운전조건에 부합되는 소재로서는 높은 Creep 강도 및 피로강도를 가지는 CrMoV type의 강종이 사용되어져 왔다. 발전소의 대용량화 및 고온화에 따라 종래의 증기조건에서 사용되어져 왔던 1%CrMoV강은 내산화성 및 내부식성이 문제가 되어 더 이상 사용이 불가하며, 고온/고압하에서도 우수한 소재 특성을 가지는 12%Cr강의 사용이 필수적이다. 그러나 12%Cr강으로 제작되는 로타는 Cr 양이 높기 때문에 저널부에 Galling 또는 Scuffing 이라 불리는 부적절한 마모현상과 사용 중 소착이 발생하기 쉬운 단점이 있기 때문에, 저널부에 Cr 함유량 2~3% 이하의 저합금강을 오버레이 용접하여 육성하는 일체형 가공구조의 로타 저널부가 주목되어 왔다. 따라서 본 연구에서는 Large scale 로타가 용접 도중 급열 및 급냉이 되지 않으면서 균일한 온도로 일정 시간 유지할 수 있는 열관리 장치 개발, 최적 오버레이 용접조건 선정 및 용접부 건전성 시험 평가를 통하여 12%Cr 로타 저널부의 최적 오버레이 용접공정을 확립하고자 하였다. 용접 열관리 장치는 전기저항 가열방식을 적용하고 있으며 용접이 최종 완료되기 전까지 로타 제품 전체는 $93^{\circ}C$이상의 온도로 유지 되어져야 하며, 규정 용접후열처리 온도는 $650^{\circ}C{\pm}14^{\circ}C$ 이다. 또한 로타 오버레이 용접은 모재 Set up $\Rightarrow$ 용접예열 $\Rightarrow$ GTA용접 $\Rightarrow$ SA용접 $\Rightarrow$ 용접후열(Post heating) $\Rightarrow$ 용접후열처리(PWHT) $\Rightarrow$ 정삭가공 $\Rightarrow$ NDE(UT) 순으로 수행 되어진다 실제 로타의 1/3 Scale로 시험편을 제작하여, 오버레이 mockup 시험을 수행한 후 화학성분, 경도 분포, 인장강도, 충격인성 및 굽힘시험을 수행한 결과, 오버레이 용접에서 요구되어지는 용접 물성값을 만족하는 것으로 확인되었다. 또한 균열 등의 선형 결함이나 기공, 슬라그 혼입과 같은 결함은 관찰되지 않았으며, 용접 시 아크의 안정성과 슬라그의 박리성은 양호하였으며 비드의 외관도 미려하여 용접 작업성도 양호하였다.

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곡물냉각기의 개발 (Development of a New Commercial Grain Cooler)

  • 김동철;김의웅;금동혁;한종규
    • 한국식품저장유통학회지
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    • 제11권2호
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    • pp.250-256
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    • 2004
  • 국내의 기상조건 및 벼의 수확후 처리여건에 적합한 곡물냉각기를 개발하고, 냉각능력, 재열능력, 가열능력, 소요전력 및 성능계수 등의 성능을 측정하여 설계조건에 적합한지를 분석하였다. 그 결과를 요약하면 다음과 같다. 압축기 무부하전자변과, 재열기 및 증발기에 고온고압의 냉매가스를 공급하여 냉각능력을 0∼100%까지 제어할 수 있고, 온도 5$^{\circ}C$이상, 상대습도 54∼95%의 정온정습 공기를 발생할 수 있는 1일 최대 벼 200톤을 냉각할 수 있는 곡물냉각기를 개발하였다. 이 곡물냉각기의 최대냉각능력은 35,284㎉/hr, 송풍량 및 정압은 각각 120㎥/min, 279mmAq이었으며, 재열기를 통한 냉각공기의 최대 온도상승 및 상대습도의 저하범위는 각각 7.6∼8.6$^{\circ}C$, 34.5∼41.0%이었으며, 최대가열능력은 5.6$^{\circ}C$이었다. 또한, 최대 소요동력은 22.8㎾이었으나, 압축기의 무부하 전자변이 작동될 때는 총소요동력의 33.3%, 압축기 소요축동력의 44.7%가 절약되는 것으로 나타났으며, 제어조건에 따라 전체소요동력의 26.7~33.3%정도가 절약되는 것으로 나타났으며, 냉동시스템의 성능계수는 과냉각으로 인해 표준냉동사이클하에서의 4.0보다 높은 4.71이었으며, 전성능계수는 1.8로 나타났다.

세포 외 중성 단백질분해효소를 생산하는 Pichia anomala CO-1의 분리 동정 및 효소 특성 (Isolation of the Protease-producing Yeast Pichia anomala CO-1 and Characterization of Its Extracellular Neutral Protease)

  • 김지연
    • 생명과학회지
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    • 제29권10호
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    • pp.1126-1135
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    • 2019
  • 세포 외로 단백질분해효소를 생산하는 효모 균주 CO-1을 대나무 부산물에서 분리하였다. CO-1은 원형 또는 타원형($3.1-4.0{\times}3.8-4.4{\mu}m$)으로, 생장을 위한 최적 온도는 $30^{\circ}C$, 초기 pH는 4.0이었다. 그리고 최대 15.0% (w/v)의 NaCl과 9.0%(v/v)의 ethanol 농도에서 생장하였다. 형태적, 생리 생화학적 특성 및 18S rRNA 유전자 염기서열을 통한 계통분석을 이용하여 동정을 실시한 결과 Pichia anomala로 판명되었다. P. anomala CO-1 단백질분해효소를 부분 정제한 결과 수율은 7.2%였으며, 정제 전에 비해 약 14.6배 정제되었다. Zymogram으로 측정한 효소의 분자량은 약 30 kDa으로 확인되었다. 본 균주는 배지 중에 탄소원과 질소원, 무기염으로 1.0%(w/v) CMC와 1.0%(w/v) yeast extract, 0.3%(w/v) $MnSO_4$를 사용하였을 경우 가장 높은 단백질분해효소 활성을 나타내었다. P. anomala CO-1이 생산하는 단백질분해효소의 최적 활성 pH와 온도는 각각 7.0과 $30^{\circ}C$였다. 또한 본 효소는 pH 4.0-10.0에서 75%의 안정성을 나타내었으며, $65^{\circ}C$에서 1시간 가열하여도 60% 전후의 활성을 유지하였다. 균주의 효소 생산은 생육과 비례하였으며 대수증식기 후반에 최대의 효소 생산을 나타내었다.

졸-겔법으로 제조된 비정질의 텅스텐 산화물 박막과 황산 전해질 계면에서 일어나는 수소의 층간 반응에 대한 전기화학적 특성 (Electrochemical Characteristic on Hydrogen Intercalation into the Interface between Electrolyte of the 0.1N H2SO4and Amorphous Tungsten Oxides Thin Film Fabricated by Sol-Gel Method)

  • 강태혁;민병철;주재백;손태원;조원일
    • 공업화학
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    • 제7권6호
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    • pp.1078-1086
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    • 1996
  • 본 연구에서는 W-IPA(peroxo-polytungstic acid)를 출발 물질로 하는 졸 용액을 ITO(indium tin oxide)가 입혀진 유리판 위에 침적 도포(dip-coating) 방법으로 침적시키고, 이것을 겔화시킨 후에 열처리하여 전기 발색 소자 (electrochromic device, ECD)의 텅스텐 산화물 박막 전극을 만들어 이의 전기화학적인 특성을 고찰하였다. 가장 좋은 전기 화학적 특성을 나타내는 조건은 $2g/10mL(W-IPA/H_2O)$졸 용액에 15회 침적 도포하여 $230{\sim}240^{\circ}C$의 온도로 최종 열처리 한 텅스텐 산화물 박막 전극이었으며, 침적 횟수의 증가에 따라 산화 텅스텐 박막의 두께는 비례하여 증가하였고, 5회 침적 도포 이후에는 1회 침적 도포시 약 $60{\AA}$ 두께로 막이 생성됨을 알 수 있었다. 졸-겔법으로 제조된 텅스텐 산화물 박막 전극은 X-선 회절 분석에 의하여 비정질 구조, 주사 전자 현미경에 의하여 박막 표면은 균일한 것으로 조사되었다. 다중 순환 전류-전위 주사법에 의하여 작성된 전류-전위 곡선에 의하면 순환 횟수가 수백회 이상임에도 불구하고 소 발색은 뚜렷하게 나타났으나, 더욱 많은 순환 횟수에서는 전해질인 황산 수용액 중에서 텅스텐 산화물 박막의 박리 현상이 일어나 소 발색의 전류 밀도는 차츰 감소하였다. 전위 주사 속도를 변화시키면서 순환 전류-전위 주사법에 의하여 작성된 전류-전위 곡선으로부터 구한 전기화학적 특성 값을 이용하여 반응에 참여하는 수소 이온의 확산 계수를 구할 수 있었다.

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