• 제목/요약/키워드: Nitrous oxide

검색결과 314건 처리시간 0.03초

Miniature J-T cryocooler using argon and nitrous oxide mixture

  • Hwang, Gyu-Wan;Jeong, Sang-Kwon
    • 한국초전도ㆍ저온공학회논문지
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    • 제10권4호
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    • pp.38-42
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    • 2008
  • Miniature J-T cryocooler using nitrogen or argon has been widely adopted in cooling infrared sensor for space/military application and cryosurgery. Argon or nitrogen, however, has relatively low specific cooling power compared to nitrous oxide, but the ultimate operating temperature is much lower than nitrous oxide. On the other hand, nitrous oxide has large specific cooling power, but the operating temperature is limited to its boiling point (>183K). To compromise the different characteristics of these gases, the performance of miniature J-T cryocooler using argon and nitrous oxide mixture is investigated in this paper. Three different compositions of mixture (25/75, 50/50, and 75/25 molar fraction) are blended and tested. The results are compared with the experiments of pure argon and pure nitrous oxide. The experimental results show some encouraging potentiality of mixed refrigerant J-T cryocooler. The critical clogging problem, however, was observed with argon and nitrous oxide mixture, and the lowest achievable temperature with this mixture was limited to the freezing point of nitrous oxide. The paper discusses detailed clogging process of the mixture and suggests an alternative.

밭토양에서 폐쇄형 자동 챔버법으로 측정한 아산화질소 농도에 대한 측정 불확도 (Measurement Uncertainty of Nitrous Oxide Concentrations from a Upland Soil Measured by an Automated Open Closed Chamber Method)

  • 주옥정;강남구;임갑준
    • 한국환경농학회지
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    • 제39권3호
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    • pp.237-245
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    • 2020
  • BACKGROUND: The closed chamber method is the most commonly used for measuring greenhouse gas emissions from upland fields. This method has the advantages of being simple, easily available and economical. However, uncertainty estimation is essential for accurate assessment of greenhouse gas emissions and verification of emission reductions. The nitrous oxide emissions from upland field is very important for the nitrogen budget in the agriculture sectors. Although assessment of uncertainty components affecting nitrous oxide emission from upland field is necessary to take account of dispersion characteristics, research on these uncertainty components is very rare to date. This study aims at elucidation of influencing factors on measurement uncertainty of nitrous oxide concentrations measured by an automated open closed chamber method from upland field. METHODS AND RESULTS: The nitrous oxide sampling system is located in the upland field in Gyeonggi-do Agricultural Research and Extension Services (37°13'22"N, 127°02'22"E). The primary measurement uncertainty components influencing nitrous oxide concentrations (influencing factors) investigated in this research are repeatability, reproducibility and calibration in the aspects of nitrous oxide sampling and analytical instrumentation. The magnitudes of the relative standard uncertainty of each influencing factor are quantified and compared. CONCLUSION: Results of this study show what influencing factors are more important in determination of nitrous oxide concentrations measured using the automated open closed chambers located in the monitoring site. Quantifying the measurement uncertainty of the nitrous oxide concentrations in this study would contribute to improving measurement quality of nitrous oxide fluxes.

돈분 액비의 아산화질소 발생 저감 효과 검정 (Verification of the Effect of Liquefied Pig Manure on Reducing Nitrous Oxide Generation)

  • 이평호;백지현;구연종
    • 한국환경농학회지
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    • 제42권4호
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    • pp.418-426
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    • 2023
  • This study focused on nitrous oxide, a major greenhouse gas produced in agricultural settings through bacterial nitrogen oxidation in aerobic soil. Nitrogen fertilizer in farmland is identified as a primary source of nitrous oxide. The importance of reducing excess nitrogen in soil to mitigate nitrous oxide production is well-known. The study investigated the use of liquefied pig manure as an alternative to urea fertilizer in conventional agriculture. Results showed a more than two-fold reduction in nitrous oxide emissions in pepper cultivation areas with liquefied pig manure compared to that with urea fertilizer. The population of Nitrosospira, a nitrous oxide-producing bacterium, decreased by over 10% with liquefied pig manure. Additionally, nirK and nosZ, which are related to the denitrification process, significantly increased in the urea fertilizer group, whereas levels in the liquefied pig manure group resembled those with no nitrogen treatment. In conclusion, the experiment confirmed that liquefied pig manure can serve as an eco-friendly nitrogen fertilizer, significantly reducing nitrous oxide production, a major contributor to the atmospheric greenhouse effect.

Nitrous Oxide를 이용한 흡입진정 (Inhalation Sedation with Nitrous Oxide in Dental Treatment)

  • 윤형배
    • 대한치과마취과학회지
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    • 제2권1호
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    • pp.1-6
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    • 2002
  • The usage of nitrous oxide is increased for the anxious patient to dental treatment. There are two methods to induce the sedation during dental treatment. One is sedation with drugs the other no need of drugs. We discussed here about sedation with drugs. The methods of drug administration are oral, intramuscular, intravenous, inhalation. The method of oral administration of drugs are convenient to patient and doctor but poor controllability. Intramuscular method is a parenteral technique that maintains several advantages over the enteral technique. However its pales in comparison to other parenteral technique. Intravenous method represents most effective method of ensuring predictable and adequate sedation in all patients. But it has inability to reverse the action of drugs after they have been injected except some drugs (e.g., narcotics and benzodiazepine). A variety of gaseous agents may be administered by inhalation to produce sedation. In dental practice, the inhalation administration of gas means use of nitrous oxide. There are many advantages of nitrous oxide administration. First, very short latent period and rapid onset of drug action which lead to possible titration of drug concentration. With nitrous oxide, clinical effects may become noticeable as quickly as 15 to 30 seconds after inhalation. Recovery from inhalation sedation is also quite rapid. In out patient dental practice rapid recovery is very important because it permit to discharge the patient without escort and the patient return to their ordinary life without limit. To success the conscious sedation with nitrous oxide, the administrator should be keep the mind that always titration of nitrous oxide concentration during induction and treatment. Careful observation need during treatment to prevent oversedation because the adequate nitrous oxide concentration to patients changed by environmental stress. Always begins with 100% oxygen and ends with 100% oxygen to prevent diffusion hypoxia which rare in clinical practice.

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Nitrous oxide splurge in a tertiary health care center and its environmental impact: No more laughing stock

  • Amit Sharma;GD Puri;Rajeev Chauhan;Ankur Luthra;Gauri Khurana;Amarjyoti Hazarika;Shyam Charan Meena
    • Journal of Dental Anesthesia and Pain Medicine
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    • 제24권1호
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    • pp.67-73
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    • 2024
  • Background: Nitrous oxide has been an integral part of surgical anesthesia for many years in the developed world and is still used in developing countries such as India. The other main concerns in low-resource countries are the lack of an advanced anesthesia gas-scavenging system and modular surgical theatres. As a greenhouse gas that has been present in the atmosphere for more than 100 years and damages the ozone layer, nitrous oxide is three times worse than sevoflurane. Here, we conducted an observational study to quantify the annual nitrous oxide consumption and its environmental impact in terms of carbon dioxide equivalence in one of busiest tertiary health care and research centers in Northern India. Methods: Data related to nitrous oxide expenditure' from the operation theatre and manifold complex of our tertiary care hospital and research center from 2018 to 2021 were collected monthly and analyzed. The outcomes were extracted from our observational study, which was approved by our institutional ethics board (INT/IEC/2017/1372 Dated 25.11.2017) and registered prospectively under the Central Registry (CTRI/2018/07/014745 Dated 05.07.2018). Results: The annual nitrous oxide consumption in our tertiary care hospital was 22,081.00, 22,904.00, 17,456.00, and 18,392.00 m3 (cubic meters) in 2018, 2019, 2020, and 2021, respectively. This indicates that the environmental impact of nitrous oxide (in terms of CO2 equivalents) from our hospital in 2018, 2019, 2020, and 2021 was 13,016.64, 13,287.82, 10,289.94, and 10,841.24 tons, respectively. Conclusion: This huge amount of nitrous oxide splurge is no longer a matter of laughter, and serious efforts should be made at every central and peripheral health center level to reduce it.

아산화질소 촉매 분해 특성 연구 (Study on the Characteristics of Nitrous Oxide Catalytic Decomposition)

  • 용승주;박대일;김태규
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
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    • pp.58-61
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    • 2009
  • 추진제로써 아산화질소를 활용하기 위해 아산화질소의 촉매 분해 특성에 대한 연구를 수행하였다. 아산화질소를 분해하기 위해 Ru와 Pt 촉매를 $Al_2O_3$ 지지체에 함침법을 이용하여 담지하였고, 관형 반응기를 사용하여 GHSV와 반응온도에 따른 아산화질소의 전환율을 측정하였다. GHSV는 낮을수록, 반응온도는 높을수록 전환율이 높았고, Ru/$Al_2O_3$ 촉매가 Pt/$Al_2O_3$ 촉매보다 우수한 성능을 보였다.

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아산화질소를 산화제로 사용하는 실험용 액체로켓의 폭발사례 및 안전사용방안 (Explosive Accidents and Safe Handling of an Experimental Liquid Rocket Engine Using Nitrous Oxide as Oxidizer)

  • 최송이;박석영;이동건;김도헌;구자예
    • 한국추진공학회지
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    • 제19권2호
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    • pp.46-54
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    • 2015
  • 아산화질소는 친환경적이고 비교적 안전하며 자발가압으로 공급될 수 있어서 다수의 액체로켓엔진 관련 연구기관 및 학교에서 산화제로 사용하고 있다. 그러나 본 연구실에서 에탄올 및 기체 아산화질소 추진제 조합을 이용한 연소시험 중 원인을 알 수 없는 폭발 현상이 다수 발생하였고, 본 논문에서는 분사기 내부에서의 아산화질소 분해 반응, 아산화질소 공급압력을 높이기 위한 탱크 가열에 따른 배관 내 아산화질소 재응축을 폭발현상의 원인으로 지목하고 해결책 및 안전한 아산화질소 산화제 사용방안을 제시하였다.

컴퓨터 시뮬레이션을 이용한 MLE 공법 하수처리장에서 최저 아산화질소 발생 운전 조건 파악 (Finding the operation conditions to minimize nitrous oxide emission from MLE configuration wastewater treatment plant using computer simulation program)

  • 한지수;김민철;이병희
    • 유기물자원화
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    • 제31권2호
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    • pp.19-38
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    • 2023
  • 하수처리장에서 생물학적 질소 제거를 위한 질산화, 탈질 과정 중 6대 온실가스 중 하나인 아산화질소가 발생한다. 이번 연구에서는 온실가스 발생량을 정량할 수 있는 컴퓨터 시뮬레이션 프로그램인 EQPS를 이용해 합류식 하수를 처리하는 MLE 공법 하수처리장의 내부반송유량, 수온 그리고 유입수의 일차침전지 by-pass %에 따라 아산화질소가 가장 적게 발생하는 운전 조건을 찾았다. 내부반송 유량은 유입 유량의 200 %이고, 생물반응조 수온이 20 ℃이고 일차침전지에서 생물반응조로 by-pass 되는 유입수가 15 %일 때 아산화질소 배출 계수가 가장 적은 조건임을 확인했다. 또한 깊은 수심에서 공기를 주입하는 심층폭기는 상대적으로 적은 공기공급을 필요로 하기 때문에 일반적인 폭기조에 비해 적은량의 아산화질소가 발생함을 확인하였다.

소아치과 환자의 깊은 진정시 호기가스 제거 방법에 따른 호흡대역에서 Nitrous Oxide 농도 변화 (THE NITROUS OXIDE CONCENTRATION IN BREATHING ZONE ACCORDING TO SCAVENGING METHODS DURING DEEP SEDATION OF PEDIATRIC DENTAL PATIENTS)

  • 이충원;윤형배
    • 대한소아치과학회지
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    • 제30권1호
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    • pp.124-131
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    • 2003
  • 최근 치과영역에서 아산화질소(Nitrous Oxide)를 이용한 의식하 진정과 필은 진정의 임상 적용이 증가함에 따라 수술실 또는 진료실 환경이 아산화질소로 오염될 수 있다. 비록 낮은 농도일지라도 장기간 아산화질소에 노출 시 자연유산의 증가, 기형아 출산 증가, 말초신경염 및 운동신경 장애 등과 같은 부작용을 초래하는 것으로 알려져 있다. 호흡시 흡입 공기의 구성성분의 변화를 줄 수 있는 구강 입구로부터 반경 12 inch 이내 영역인 호흡대역(Breathing zone)에서 아산화질소 농도는 치료자에게 영향을 주게된다. 소아 환자에게 주로 적용되는 깊은 진정시는 환자의 구호흡양에 따라서 호흡대역에서 아산화질소의 농도에 영향을 주게되므로, 깊은 진정시 구호흡의 증가 원인을 규명하기 위해 잉여가스 배출 방법을 달리하여 호흡대역에서 아산화질소 농도를 측정 비교하여 다음과 같은 결론을 얻었다. 1. 깊은 진정을 시행하는 경우 호흡대역에서 아산화질소의 농도는 공급 가스량 증가에 의한 비기도 저항 증가에 따라 증가하는 양상을 보였다. 호흡대역에서 아산화질소 농도 증가는 구호흡 증가에 의한 것이며 구호흡은 비기도 저항과 관계가 있다 할 수 있다. 즉 비기도 저항 증가는 구호흡의 한 요인이라 할 수 있다. 음압을 사용한 호기가스 배출장치를 사용하여도 NIOSH에서 권장하는 허용치에는 미치지 못하였고 이를 위해서는 팬이나 다른 제거 장치가 함께 사용되어야 한다. 2. 구강편도의 크기는 기도 저항이 적은 경우 즉 음압을 사용하여 호기가스 제거하는 경우 구호흡에 영향을 주었다.

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밭토양에서 챔버 위치와 작물체 유·무에 따른 아산화질소 배출량 차이 분석 (The Differences of Nitrous Oxide (N2O) Emissions as Crop Presence and Location of Gas Sampling Chambers in Upland)

  • 정현철;최은정;이종식;김건엽;소규호
    • 한국기후변화학회지
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    • 제7권4호
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    • pp.427-432
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    • 2016
  • Nitrous oxide is one of the main sources of greenhouse gases and its concentration has increased from 273 ppb in 1,750 to 315 ppb in 2005. Specially, nitrogen fertilizer used in agricultural soils is considered as an important source of atmospheric $N_2O$ emission. This study was conducted to estimate the difference of nitrous oxide emission as chamber position on furrow and ridge and crop existence in gas sampling chamber on upland. Four treatments used in this experiment were (1) no-fertilizer without crop in chamber on ridge, (2) fertilizer application without crop in chamber on ridge, (3) fertilizer application with crop in chamber on ridge, (4) fertilizer application without crop in chamber on ridge and furrow. Nitrous oxide emission at fertilizer application with crop in chamber on ridge were the highest while were the lowest at no-fertilizer without crop in chamber on ridge. There was no significant difference of nitrous oxide emission by chamber position, but total emission by crop existence in chamber was significant difference. Therefore, in order to estimate greenhouse gases emission using chamber method in upland, it should be considered in correlation with crop existence in chamber and characteristic changes like as the soil moisture, microbial flora by crop growth stage.