• 제목/요약/키워드: Internal Hydrogen Pressure

검색결과 96건 처리시간 0.03초

급성 폐렴에 의한 패혈증 환자에서 Aminophylline이 혈중 호중구의 과산화물 음이온 유리에 미치는 영향 (The Effects of Aminophylline on the Superoxide Anion Generation of Neutrophils from Established Human Sepsis Caused by Acute Pneumonia)

  • 김용훈;박준영;차미경;이상무;김현태;어수택;정연태;박춘식
    • Tuberculosis and Respiratory Diseases
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    • 제40권1호
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    • pp.16-22
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    • 1993
  • 연구배경 : 호중구에 의한 인체내 방어기전으로서의 살균작용 또는 병리기전으로서의 세포독성반응은 호중구의 호흡폭발(respiratory burst)에 의한 과산화물음이온(superoxide anion) 등 각종 산소기의 유리에 크게 의존하고 있다. Theophylline은 adenosine에 길항적으로 작용하지만 이역시 호중구및 혈관내피세포의 cAMP농도를 상승시켜 호중구의 산소기유리및 부착성(adherence)을 억제하는 것으로 보고되고 있다. 그러나 이러한 결과는 정상인에게서 얻어진 말초 호중구나 실험적으로 패혈증상태가 유발된후로부터 수분내의 동물을 대상으로 얻어진 결과로써 이미 세균에 감염되어 수시간이 지나 폐혈증 증상을 보이는 환자에서의 연구는 국내외적으로 아직 보고된 바 없어 패혈증 증상용 보이는 급성폐렴환자에서 aminophylline(AMPH) 정주전후의 말초동맥혈 호중구에서의 과산화물 음이온유리 측정과 동맥혈 산소분압, 맥박 및 혈압을 비교하여 AMPH의 급성 폐렴 환자에게의 임상적 의의를 알아보고자 하였다. 방법 : 패혈증 증상을 보이는 폐렴 환자 11예를 대상으로 AMPH을 정주하기전 및 계속 정주후 60분후의 동맥혈 호중구 $2{\times}10^6/ml$를 분리, 사이토크롬 c 환원법으로 과산화물 음이온을 측정하고 또 각기의 말초호중구수의 변화 및 임상상태를 비교하여 다음의 결과를 얻었다. 호중구의 자극은 PMA 10 ${\mu}l/ml$로 유발하였다. 결과: 1) AMPH 정주 60분후의 AMPH 혈중 농도는 $8.8{\pm}0.6{\mu}g/ml$ 이었다. 2) AMPH 정주전의 과산화물 음이온은 안정상태의 호중구에서 $0.076{\pm}0.034$(OD) 로서 정주후에는 $0.013{\pm}0.004$(OD) 로 유의하게 감소하였다(P<0.05). 3) AMPH 정주전후의 호중구 자극상태에서의 과산화물 음이온은 각기 $0.177{\pm}0.044$(OD), $0.095{\pm}0.042$(OD) 로서 역시 AMPH 정주후 유의하게 감소하였다(p<0.01). 4) AMPH 정주전후의 말초호중구수와 혈압, 맥박 및 동맥혈산소분압은 양군간에 차이가 없었다. 결론: 1) 급성 폐렴환자에서의 AMPH 사용은 호중구의 호흡폭발을 감소시켜 방어기전으로서의 호중구의 역할을 억제할 것으로 생각되며 임상적으로 다장기 부전증의 증거가 없는 한 감염증세가 우세한 폐렴초기에는 가급적 사용을 억제하는 편이 좋으리라 사료된다. 2) AMPH 사용으로 인한 동맥혈산소분압은 호전은 기대할 수 없고 맥박의 상승 및 혈압의 감소경향이 있어 혈류동태가 불안정하거나 심혈관 질환이 있는 환자에서의 사용은 피해야 할 것으로 보인다.

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팜유(Plam Oil)의 탈산소 공정 중 운전 조건이 생성물의 조성에 미치는 영향 (Effects of reaction conditions on composition of the organic liquid product during the deoxygenation process of palm oil)

  • 김성탁;장정희;안민회;곽연수;한기보;정병훈;한정식;김재곤
    • 한국응용과학기술학회지
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    • 제35권3호
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    • pp.865-875
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    • 2018
  • 식물성 오일을 이용한 바이오 항공유의 제조공정에서 탈산소 반응의 적절한 운전조건 선정을 통한 생성물 물성 최적화는 최대의 바이오항공유 수율을 얻기 위해 필수적인 요소이다. 이에 따라 팜유의 탈산소화 반응이 1 wt.% $Pt/Al_2O_3$촉매가 장입된 내경이 1인치인 고정층 반응기에서 수행되었다. 업그레이딩 공정을 통하여 수송 연료로 활용될 수 있는 액체 생성물(organic liquid product)은 가스크로마토그래피 방법으로 그 조성을 분석하였다. 피드 내의 팜유/수소 비율과 수소 압력은 탈카르복실레이션과 수첨탈산소 반응에 영향을 주어 생성물의 조성 변화를 초래하였다. 반응 온도가 증가함에 따라 탈산소 생성물의 연속적 크래킹 반응이 촉진되어 $C_5{\sim}C_{14}$영역의 생성물 조성이 증가하였다. 본 연구의 결과는 팜유의 탈산소화 반응 특성의 이해 뿐 아니라 연속 공정인 수첨 업그레이딩 공정을 통한 바이오 항공유의 제조에 도움을 줄 수 있다.

The Effect of Barrel Vibration Intensity to the Plating Thickness Distribution

  • Lee, Jun-Ho;Roselle D. Llido
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 1999년도 추계학술발표회 초록집
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    • pp.15-15
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    • 1999
  • In chip plating, several parameters must be taken into consideration. Current density, solution concentration, pH, solution temperature, components volume, chip and media ratio, barrel geometrical shape were most likely found to have an effect to the process yields. The 3 types of barrels utilized in chip plating industry are the conventional rotating barrel. vibrational barrel (vibarrel), and the centrifugal type. Conventional rotating barrel is a close type and is commonly used. The components inside the barrel are circulated by the barrel's rotation at a horizontal axis. Process yield has known to have higher thickness deviation. The vibrational barrel is an open type which offers a wide exposure to electrolyte resulting to a stable thickness deviation. It rotates in a vertical axis coupled with multi-vibration action to facilitate mixed up and easy transportation of components, The centrifugal barrel has its plated work centrifugally compacted against the cathode ring for superior electrical contact with simultaneous rotary motion. This experiment has determined the effect of barrel vibration intensity to the plating thickness distribution. The procedures carried out in the experiment involved the overall plating process., cleaning, rinse, Nickel plating, Tin-Lead plating. Plating time was adjusted to meet the required specification. All other parameters were maintained constant. Two trials were performed to confirm the consistency of the result. The thickness data of the experiment conducted showed that the average mean value obtained from higher vibrational intensity is nearer to the standard mean. The distribution curve shown has a narrower specification limits and it has a reduced variation around the target value, Generally, intensity control in vi-barrel facilitates mixed up and easy transportation of components, However, it is desirable to maintain an optimum vibration intensity to prevent solution intrusion into the chips' internal electrode. A cathodic reaction can occur in the interface of the external and internal electrode. $2HD{\;}+{\;}e{\;}{\rightarrow}20H{\;}+{\;}H_2$ Hydrogen can penetrate into the body and create pressure which can cause cracks. At high intensity, the chip's motion becomes stronger, its contact between each other is delayed and so plating action is being controlled. However, the strong impact created by its collision can damage the external electrode's structure thereby resulting to bad plating condition. 1 lot of chip was divided into two equal partion. Each portion was loaded to the same barrel one after the other. Nickel plating and tin-lead plating was performed in the same station. Portion A maintained the normal barrel vibration intensity and portion B vibration intensity was increased two steps higher. All other parameters, current, solution condition were maintained constant. Generally, plating method find procedures were carried out in a best way to maintained the best plating condition. After plating, samples were taken out from each portion. molded and polished. Plating thickness was investigated for both. To check consistency of results. 2nd trial was done now using different lot of another characteristics.

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Aluminum Powder Metallurgy Current Status, Recent Research and Future Directions

  • Schaffer, Graham
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2001년도 추계학술강연 및 발표대회
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    • pp.7-7
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    • 2001
  • The increasing interest in light weight materials coupled to the need for cost -effective processing have combined to create a significant opportunity for aluminum P/M. particularly in the automotive industry in order to reduce fuel emissions and improve fuel economy at affordable prices. Additional potential markets for Al PIM parts include hand tools. Where moving parts against gravity represents a challenge; and office machinery, where reciprocating forces are important. Aluminum PIM adds light weight, high compressibility. low sintering temperatures. easy machinability and good corrosion resistance to all advantages of conventional iron bm;ed P/rv1. Current commercial alloys are pre-mixed of either the AI-Si-Mg or AL-Cu-Mg-Si type and contain 1.5% ethylene bis-stearamide as an internal lubricant. The powder is compacted in closed dies at pressure of 200-500Mpa and sintered in nitrogen at temperatures between $580~630^{\circ}C$ in continuous muffle furnace. For some applications no further processing is required. although most applications require one or more secondary operations such as sizing and finishing. These sccondary operations improve the dimension. properties or appearance of the finished part. Aluminum is often considered difficult to sinter because of the presence of a stable surface oxide film. Removal of the oxide in iron and copper based is usually achieved through the use of reducing atmospheres. such as hydrogen or dissociated ammonia. In aluminum. this occurs in the solid st,lte through the partial reduction of the aluminum by magncsium to form spinel. This exposcs the underlying metal and facilitates sintering. It has recently been shown that < 0.2% Mg is all that is required. It is noteworthy that most aluminum pre-mixes contain at least 0.5% Mg. The sintering of aluminum alloys can be further enhanced by selective microalloying. Just 100ppm pf tin chnnges the liquid phase sintering kinetics of the 2xxx alloys to produce a tensile strength of 375Mpa. an increilse of nearly 20% over the unmodified alloy. The ductility is unnffected. A similar but different effect occurs by the addition of 100 ppm of Pb to 7xxx alloys. The lend changes the wetting characteristics of the sintering liquid which serves to increase the tensile strength to 440 Mpa. a 40% increase over unmodified aIloys. Current research is predominantly aimed at the development of metal matrix composites. which have a high specific modulus. good wear resistance and a tailorable coefficient of thermal expnnsion. By controlling particle clustering and by engineering the ceramic/matrix interface in order to enhance sintering. very attractive properties can be achicved in the ns-sintered state. I\t an ils-sintered density ilpproaching 99%. these new experimental alloys hnve a modulus of 130 Gpa and an ultimate tensile strength of 212 Mpa in the T4 temper. In contest. unreinforcecl aluminum has a modulus of just 70 Gpa.

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THE CURRENT STATUS OF BIOMEDICAL ENGINEERING IN THE USA

  • Webster, John G.
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1992년도 춘계학술대회
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    • pp.27-47
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    • 1992
  • Engineers have developed new instruments that aid in diagnosis and therapy Ultrasonic imaging has provided a nondamaging method of imaging internal organs. A complex transducer emits ultrasonic waves at many angles and reconstructs a map of internal anatomy and also velocities of blood in vessels. Fast computed tomography permits reconstruction of the 3-dimensional anatomy and perfusion of the heart at 20-Hz rates. Positron emission tomography uses certain isotopes that produce positrons that react with electrons to simultaneously emit two gamma rays in opposite directions. It locates the region of origin by using a ring of discrete scintillation detectors, each in electronic coincidence with an opposing detector. In magnetic resonance imaging, the patient is placed in a very strong magnetic field. The precessing of the hydrogen atoms is perturbed by an interrogating field to yield two-dimensional images of soft tissue having exceptional clarity. As an alternative to radiology image processing, film archiving, and retrieval, picture archiving and communication systems (PACS) are being implemented. Images from computed radiography, magnetic resonance imaging (MRI), nuclear medicine, and ultrasound are digitized, transmitted, and stored in computers for retrieval at distributed work stations. In electrical impedance tomography, electrodes are placed around the thorax. 50-kHz current is injected between two electrodes and voltages are measured on all other electrodes. A computer processes the data to yield an image of the resistivity of a 2-dimensional slice of the thorax. During fetal monitoring, a corkscrew electrode is screwed into the fetal scalp to measure the fetal electrocardiogram. Correlations with uterine contractions yield information on the status of the fetus during delivery To measure cardiac output by thermodilution, cold saline is injected into the right atrium. A thermistor in the right pulmonary artery yields temperature measurements, from which we can calculate cardiac output. In impedance cardiography, we measure the changes in electrical impedance as the heart ejects blood into the arteries. Motion artifacts are large, so signal averaging is useful during monitoring. An intraarterial blood gas monitoring system permits monitoring in real time. Light is sent down optical fibers inserted into the radial artery, where it is absorbed by dyes, which reemit the light at a different wavelength. The emitted light travels up optical fibers where an external instrument determines O2, CO2, and pH. Therapeutic devices include the electrosurgical unit. A high-frequency electric arc is drawn between the knife and the tissue. The arc cuts and the heat coagulates, thus preventing blood loss. Hyperthermia has demonstrated antitumor effects in patients in whom all conventional modes of therapy have failed. Methods of raising tumor temperature include focused ultrasound, radio-frequency power through needles, or microwaves. When the heart stops pumping, we use the defibrillator to restore normal pumping. A brief, high-current pulse through the heart synchronizes all cardiac fibers to restore normal rhythm. When the cardiac rhythm is too slow, we implant the cardiac pacemaker. An electrode within the heart stimulates the cardiac muscle to contract at the normal rate. When the cardiac valves are narrowed or leak, we implant an artificial valve. Silicone rubber and Teflon are used for biocompatibility. Artificial hearts powered by pneumatic hoses have been implanted in humans. However, the quality of life gradually degrades, and death ensues. When kidney stones develop, lithotripsy is used. A spark creates a pressure wave, which is focused on the stone and fragments it. The pieces pass out normally. When kidneys fail, the blood is cleansed during hemodialysis. Urea passes through a porous membrane to a dialysate bath to lower its concentration in the blood. The blind are able to read by scanning the Optacon with their fingertips. A camera scans letters and converts them to an array of vibrating pins. The deaf are able to hear using a cochlear implant. A microphone detects sound and divides it into frequency bands. 22 electrodes within the cochlea stimulate the acoustic the acoustic nerve to provide sound patterns. For those who have lost muscle function in the limbs, researchers are implanting electrodes to stimulate the muscle. Sensors in the legs and arms feed back signals to a computer that coordinates the stimulators to provide limb motion. For those with high spinal cord injury, a puff and sip switch can control a computer and permit the disabled person operate the computer and communicate with the outside world.

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최근 불산 저장탱크에서의 가스 누출시 공정위험 및 결과영향 분석 (Study on the Consequence Effect Analysis & Process Hazard Review at Gas Release from Hydrogen Fluoride Storage Tank)

  • Ko, JaeSun
    • 한국재난정보학회 논문집
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    • 제9권4호
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    • pp.449-461
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    • 2013
  • 최근 발생한 경북 구미의 불산 누출 및 경남 울산의 염산 누출사고의 예와 같이 화학공장에서 발생되는 사고중대 부분은 저장탱크나 운송배관 및 플랜지호스 등의 손상에 의한 휘발성 유독성물질의 대량누출이며, 이 경우 누출된 지역의 자연환경과 대기 조건에 따른 유독성물질의 확산 거동이 인적, 물적 피해의 중요한 변수가 되기 때문에 위험성평가는 가장 중요한 관심 대상이 된다. 따라서 본 연구에서는 누출물질에 대한 대기 중 확산을 모사하기 위하여 불산 저장탱크에서 누출된 경우를 예제로 선택하여, 수치해석과 ALOHA(Areal Location of Hazardous Atmospheres)의 확산 시뮬레이션을 이용한 결과해석을 수행하였다. 먼저 공정위험분석으로 정성적 평가인 HAZOP(Hazard Operability) 결과를 살펴보면 첫째 공정흐름상(flow) 위험 요소로서 플렌지, 밸브와 호스의 균열 등 손상으로 인한 누출에 의한 운전지연 또는 독성가스누출 등이 발생할 수 있고, 둘째 온도, 압력, 부식으로부터는 화재, 질소공급과 압 그리고 탱크나 파이프 이음관의 내부 부식으로 인한 독성누출의 가능성이 높은 것으로 분석되었다. 다음 결과 영향분석 기법인 ALOHA를 운용한 결과를 살펴보면 Dense Gas Model에 대한 입력 자료값에 따라 미치는 결과 영향이 다소 차이가 있음을 발견하였으나 기상조건으로서 대기안정도 보다는 풍향 및 풍속이 가장 영향을 미치는 것으로 분석 되었다. 또한 풍속이 빠를수록 누출물질의 확산이 잘 일어났고, 수치해석결과인$LC_{50}$과 ALOHA의 AEGL-3(Acute Exposure Guidline Level)과 결과를 비교했을 때 확산길이는 다소 차이가 있지만 확산농도 측면에서는 액체와 증기누출인 경우에 있어서 거의 비슷한 결과를 보였다. 따라서 ALOHA 모델을 운영한 결과 각 시나리오별 경향은 상당히 일치함을 볼 수 있었다. 따라서 추후 수치해석과 확산모델링에 의한 예측농도를 국제적인 기준치인 IDLH(Immediately Dangerous to Life and Health), ERPG(Emergency Response Planning Guideline), AEGL(Acute Exposure Guidline Level)과 비교 함 으로서 독성 가스의 대한 완충거리를 결정 할 수 있고, 이와 같은 연구방법은 유독성물질 누출에 따른 위험성평가를 보다 효율적으로 수행하는데 도움을 줄 것이며, 지역사회 비상대응체계 수립 시 적절하게 활용할 수 있을 것이다.