• 제목/요약/키워드: Nitrous oxide concentration

검색결과 60건 처리시간 0.026초

수술실 내의 아산화질소($N_2O$) 노출평가 (Finite Element Analysis on the Strength Safety of a Fuel Tank for Highly Compressed Gas Vehicle)

  • 백종배;엄민용
    • 한국가스학회지
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    • 제13권6호
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    • pp.34-38
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    • 2009
  • 마취가스로 사용되는 아산화질소($N_2O$)는 만성건강 잠재위험을 일으킬 수 있기 때문에 근무자를 보호하기 위해 아산화질소 노출을 감시하고 제어하는 것이 필요하다. 이 연구에서는 아산화질소 노출평가를 위해서 흡착제로는 molecular sieve 5A를 사용하였고 $7m{\ell}$ vial에 보관한 후 heating block에서 $100^{\circ}C$로 12시간 이상 가열하여 GC-ECD를 이용하여 분석, 평가하였다. GC-ECD에 의한 검량선 설명력계수($R^2$)는 0.9992이며 검출한계는 $0.96{\mu}g$/injection, 정량한계는 $3.21{\mu}g$/injection, 탈착효율은 평균 $94.78\;{\pm}\;4.50%$이다. 파과는 각 농도대비 10% 범주 내에 있었다. GC-ECD에 의한 $N_2O$의 수술 전과 수술 중의 노출평가에서는 수술 전의 평균농도는 5.12ppm이고 수술 중의 평균 농도는 42.33ppm으로 수술 중의 아산화질소의 농도가 높게 나타났고 중대한 차이가 있다(P<0.05). GC-ECD에 의한 $N_2O$의 근무자의 근무위치에 따른 노출 평가에서는 중대한 차이가 없고(P>0.005), 시료채취 법에서는 능동식 시료채취 법에서의 $N_2O$ 농도가 높게 나타났다(P<0.05).

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Effect of Mixed Treatment of Urea Fertilizer and Zeolite on Nitrous Oxide and Ammonia Emission in Upland Soil

  • Park, Jun-Hong;Park, Sang-Jo;Seo, Young-Jin;Kwon, Oh-Heun;Choi, Seong-Yong;Park, So-Deuk;Kim, Jang-Eok
    • 한국토양비료학회지
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    • 제47권5호
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    • pp.368-373
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    • 2014
  • Ammonia loss from urea significantly hinders efficient use of urea in agriculture. The level of nitrous oxide ($N_2O$) a long-lived greenhouse gas in atmosphere has increased mainly due to anthropogenic source, especially application of nitrogen fertilizers. There are reports in the literature showing that the addition of zeolite to N sources can improve the nitrogen use efficiency. This study was conducted to evaluate nitrous oxide ($N_2O$) and ammonia ($NH_3$) emission by mixed treatment of urea and zeolite in upland crop field. Urea fertilizer and zeolite were applied at different rates to study their effect on $N_2O$ emission during red pepper cultivation in upland soils. The $N_2O$ gas was collected by static closed chamber method and measured by gas chromatography. Ammonia concentration was analyzed by closed-dynamic air flow system method. The total $N_2O$ flux increased in proportion to the level of N application. Emission of $N_2O$ from the field increased from the plots applied with urea-zeolite mixture compared to urea alone. But urea-zeolite mixture treatment reduced about 30% of $NH_3$-N volatilization amounts. These results showed that the application of urea and zeolite mixture had a positive influence on reduction of $NH_3$ volatilization, but led to the increase in $N_2O$ emission in upland soils.

Effect of Ammonium Concentration on the Emission of $N_2O$ Under Oxygen-Limited Autotrophic Wastewater Nitrification

  • Kim, Dong-Jin;Kim, Yu-Ri
    • Journal of Microbiology and Biotechnology
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    • 제21권9호
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    • pp.988-994
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    • 2011
  • A significant amount of nitrous oxide ($N_2O$), which is one of the serious greenhouse gases, is emitted from nitrification and denitrification of wastewater. Batch wastewater nitrifications with enriched nitrifiers were carried out under oxygen-limited condition with synthetic (without organic carbon) and real wastewater (with organic carbon) in order to find out the effect of ammonium concentration on $N_2O$ emission. Cumulated $N_2O$-N emission reached 3.0, 5.7, 6.2, and 13.5 mg from 0.4 l of the synthetic wastewater with 50, 100, 200, and 500 mg/l ${NH_4}^+$-N, respectively, and 1.0 mg from the real wastewater with 125 mg/l ${NH_4}^+$-N. The results indicate that $N_2O$ emission increased with ammonium concentration and the load. The ammonium removal rate and nitrite concentration also increased $N_2O$ emission. Comparative analysis of $N_2O$ emission from synthetic and real wastewaters revealed that wastewater nitrification under oxygen-limited condition emitted more $N_2O$ than that of heterotrophic denitrification. Summarizing the results, it can be concluded that denitrification by autotrophic nitrifiers contributes significantly to the $N_2O$ emission from wastewater nitrification.

아산화질소 환원 세균 컨소시움의 특성 (Characterization of a Nitrous Oxide-reducing Bacterial Consortium)

  • 박형주;권지현;조경숙
    • 한국미생물·생명공학회지
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    • 제47권4호
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    • pp.630-638
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    • 2019
  • 아산화질소는 이산화탄소보다 약 310배 높은 지구온난화 지수를 갖는 주요 온실가스이다. 본 연구에서는 아산화질소 배출저감을 위해 고도처리슬러지를 접종원으로 이용하여 아산화질소 환원 컨소시움을 확보하였다. 이 컨소시움의 우점종은 Sulfurovum (17.95%), Geobacter (14.63%), Rectinema(11.45%)와 Chlorobium (8.24%)이었다. 아산화질소 환원 컨소시움의 활성에 미치는 C/N 비(mol·mol-1), 탄소원의 영향을 조사한 결과, C/N 비 6.3 및 아세트산을 탄소원으로 공급한 조건에서 최대 아산화질소 환원 활성을 나타냈다. 또한, 본 컨소시움의 3,000 ppm 이하의 아산화질소 농도 범위에서 아산화질소 농도가 증가할수록 환원속도도 증가하였다. 속도론적 해석 결과, 아산화질소 환원 컨소시움의 최대 아산화질소 환원 속도는 163.9 ㎍-N·g VSS-1·h-1이었다. 본 Consortium은 아산화질소를 N2로 환원하는데 관여를 nosZ 뿐만 아니라, 질산염을 아질산염으로 환원하는 narG, 아질산염을 일산화질소로 환원하는 nirK 유전자 및 일산화질소를 아산화질소를 환원하는 norB 유전자를 모두 보유하고 있었다. 이는 본 컨소시움은 아산화질소 제거 공정 뿐 만 아니라, 탈질공정에도 활용 가능한 유용한 미생물 자원임을 의미한다.

디젤엔진에서 배기가스 재순환 방법을 이용한 아산화질소의 배출률 저감 (Reduction of Nitrous Oxide Emission by EGR Method on Diesel Engine)

  • 유동훈
    • 동력기계공학회지
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    • 제19권3호
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    • pp.16-21
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    • 2015
  • Nitrous oxide($N_2O$) concentration in the atmosphere has been constantly increased by the human activities with industrial growth after the industrial revolution. One of factors to increase $N_2O$ concentration in the atmosphere is the $N_2O$ emission caused by the combustion of marine fuel. Especially, a sulfur component included in marine fuel oils is known as increasing the $N_2O$ formation in diesel combustion. Form this point of view, $N_2O$ emission from a ship is not negligible. On the other hand, Exhaust gas recirculation(EGR) that have thermal, chemical and dilution effect is effective method for reducing the NOx emission. In this study, an author investigated $N_2O$ reduction by using EGR on a direct injection diesel engine. The test engine was a 4-stroke diesel engine with maximum output of 12 kW at 2600rpm, and operating condition of the engine was a fixed load of 75%. The experimental oil was a blend-fuel that were adjusted with sulfur ratio of 3.5%, and EGR ratio of 0%, 10%, 20% and 30%. In conclusion, diesel fuel that contained 3.5% sulfur component increased $SO_2$ emission in exhaust gas, and increment of EGR ratio reduced NO emission. Moreover, $N_2O$ emission was decreased as over 50% at EGR ratio of 10% and reduced 100% at EGR ratio of 30% compared with $N_2O$ emission of 0% EGR ratio.

디젤엔진에 있어서 연료의 성분이 아산화질소 배출에 미치는 영향 (Effect of fuel component on nitrous oxide emission characteristics in diesel engine)

  • 유동훈
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권9호
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    • pp.1045-1050
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    • 2014
  • 아산화질소($N_2O$, Nitrous Oxide)는 이산화탄소($CO_2$, Carbon Oxide), 메탄($CH_4$, Metane)이어 세 번째로 지구온난화에 기여하는 물질로 알려져 있다. $N_2O$의 지구온난화 계수는 대기 중에서 안정하고, 성층권에서 광분해 된 후 이차적인 오염의 원인이 되기 때문에 $CO_2$의 310배에 이른다. $N_2O$의 생성에 대한 조사는 보일러와 같은 연속적인 연소를 갖는 동력원에 대하여 몇몇의 연구자들에 의한 보고가 있었다. 하지만, 디젤엔진에 있어서 연료의 성분이 $N_2O$ 배출에 미치는 영향에 대한 조사는 실시되어지지 않은 상태이다. 그러므로 본 연구에서는 디젤엔진에서 연료 중에 질소와 황 농도에 의해 변화되는 $N_2O$ 배출율에 대하여 조사하였다. 실험에 사용한 엔진은 12kW/2400rpm의 4행정 직접분사식 디젤엔진이고, 실험엔진의 운전조건은 75% 부하에서 이루어졌다. 연료 중의 질소와 황 농도는 Pyridine, Indole, Quinoline, Pyrrol, Propionitrile, Di-tert-butyl-disulfide의 6 종류 첨가제를 사용하여 증가시켰다. 결과에 의하면, 질소성분 0.3% 이하를 갖는 디젤연료는 첨가제의 종류와 농도와 관계없이 $N_2O$ 배출률에 영향을 미치지 않았다. 하지만, 연료 중 황 첨가제의 증가는 배기가스 중의 $N_2O$ 농도를 증가시켰다.

토양 시료 중 Atomic Absorption Spectrometry (AAS) 및 Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES)를 이용한 총 크롬 분석방법 비교 (Comparison of analytical methods for quantifying total chromium in soil using Atomic Absorption Spectrometer (AAS) and Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES))

  • 이홍길;김지인;변윤주;김현구;윤정기
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권6호
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    • pp.22-28
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    • 2017
  • The accuracy of analytical results in response to the use of different additives ($NH_4Cl$, KCl, $LaCl_3$) and oxidant gases was evaluated and compared by using Atomic Absorption Spectrometry (AAS). Identification of spectroscopic interferences and possible improvements in Inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES) analysis were also discussed. The average accuracies of total chromium using Certified Reference Materials (CRMs) were found to be 72.1~94.2% in air/acetylene flame condition by AAS, and they were improved to 100.5~110.5% when the oxidants was changed to nitrous oxide rather than adding the additives. The field samples showed similar trends to CRMs, but chromium concentrations were highly variable depending on analytical conditions. The average accuracies using CRMs were estimated to be 89.3~166.1% by ICP-AES, and improved to below 121.7% after eliminating iron interference. Field samples with low chromium and high iron concentration were measured to be > 30% lower in total chromium concentrations by ICP-AES than AAS in nitrous oxide/acetylene flame. Total chromium concentrations in soil could be analyzed with better accuracy under nitrous oxide/acetylene flame by AAS because it was more effective to increase the temperature of the flame than to eliminate the chemical interference for maximizing atomization of chromium. When using ICP-AES, interference substances, total chromium levels, and analytical conditions should be also considered.

소아환자에서 midazolam 정주 및 아산화질소 흡입진정법 하 치과치료의 특성 (Characteristics of Intravenous Midazolam Sedation with Nitrous Oxide in Pediatric Dental Treatment)

  • 김현태;송지수;현홍근;김영재;김정욱;장기택;이상훈;신터전
    • 대한소아치과학회지
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    • 제47권1호
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    • pp.53-61
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    • 2020
  • Midazolam은 단기 작용 benzodiazepine 계열의 약물로서 소아치과 영역의 진정치료에 널리 사용되고 있다. 하지만 소아환자의 치과치료시 정주진정법으로서의 midazolam의 임상적인 효과는 연구가 부족한 실정이다. 이번 연구에서는 소아환자의 치과치료시 midazolam 정주진정법 및 아산화질소 흡입진정법의 효과와 안정성에 대해 후향적인 분석을 시행하였다. Midazolam 정주 및 아산화질소 흡입진정법 하 치과치료를 시행한 115명(118례)를 대상으로 하였다. 인구통계학적 요소, 환자의 전신상태, 진정시간, midazolam 및 아산화질소의 용량, 진정법의 성공률에 대해 전자의무기록을 통해 조사하였다. 진정법은 행동조절을 목적으로 주로 사용되었다. 평균 진정 시간은 수술 치료의 경우 56.7분, 수복 치료의 경우 74.4분이었다. 정맥 내 midazolam의 초기 투여량은 0.051 ± 0.019 mg/kg이었다. 34건(28.8%)에서 치료 중 0.036 ± 0.057 mg/kg의 추가적인 midazolam의 투여를 시행하였다. 아산화질소의 농도는 40 - 50%로 유지되었다. 진정법의 성공률은 99%(n = 117)였다. 1 건의 증례에서 후두 경련이 발생하였고 이로 인한 치료 중단 후 환자는 benzodiazepine 길항제인 flumazenil으로 가역되었다. 이 연구에서는 아산화질소 흡입진정을 동반한 midazolam 정주진정법이 임상적으로 효과적인 것으로 나타났다. 성공적인 진정법을 위해서 모든 과정이 훈련받은 전문인력에 의해 시행되어야 하고 가이드라인을 바탕으로 한 적절한 환자 선택이 필요하다.

Effect of Nitrogen Application Rates on Nitrous Oxide Emission during Crop Cultivations in Upland Soil

  • Lee, Jong-Eun;Yun, Yeo-Uk;Choi, Moon-Tae;Jung, Suck-Kee;Nam, Yun-Gyu;Pramanik, Prabhat;Kim, Pil-Joo
    • 한국환경농학회지
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    • 제31권3호
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    • pp.205-211
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    • 2012
  • BACKGROUND: Generally, nitrogen (N) fertilization higher than the recommended dose is applied during vegetable cultivation to increase productivity. But higher N fertilization also increases the concentrations of nitrate ions and nitrous oxide in soil. In this experiment, the impact of N fertilization was studied on nitrous oxide ($N_2O$) emission to standardize the optimum fertilization level for minimizing $N_2O$ emission as well as increasing crop productivity. Herein, we developed $N_2O$ emission inventory for upland soil region during red pepper and Chinese milk vetch cultivation. METHODS AND RESULTS: Nitrogen fertilizers were applied at different rates to study their effect on $N_2O$ emission during red pepper and Chinese milk vetch cultivation. The gas samples were collected by static closed chamber method and $N_2O$ concentration was measured by gas chromatography. The total $N_2O$ flux was steadily increased due to increasing N fertilization level, though the overall pattern of $N_2O$ emission dynamics was same. Application of N fertilization higher than the recommended dose increased the values of both seasonal $N_2O$ flux (94.5% for Chinese cabbage and 30.7% for red pepper) and $N_2O$ emission per unit crop yield (77.9% for Chinese cabbage and 23.2% for red pepper). Nitrous oxide inventory revealed that the $N_2O$ emission due to unit amount of N application from short-duration vegetable field in fall (autumn) season (6.36 kg/ha) was almost 70% higher than that during summer season. CONCLUSION: Application of excess N-fertilizers increased seasonal $N_2O$ flux especially the $N_2O$ flux per unit yield during both Chinese cabbage and red pepper cultivation. This suggested that the higher N fertilization than the recommended dose actually facilitates $N_2O$ emission than boosting plant productivity. The $N_2O$ inventory for upland farming in temperate region like Korea revealed that $N_2O$ flux due to unit amount of N-fertilizer application for Chinese cabbage in fall (autumn) season was comparatively higher than that of summer vegetables like red pepper. Therefore, the judicious N fertilization following recommended dose is required to suppress $N_2O$ emission with high vegetable productivity in upland soils.