• 제목/요약/키워드: kerosene. diesel

검색결과 67건 처리시간 0.02초

분배성 추적자 시험법을 이용한 불균질 지반의 유류 오염도 평가 (The Evaluation of Petroleum Contamination in Heterogeneous Media Using Partitioning Tracer Method)

  • 김은협;이성수;박준범
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.1372-1377
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    • 2009
  • For the remediation of the subsurface contaminated by nonaqueous phase liquids(NAPLs), it is important to characterize the NAPL zone properly. Conventional characterization methods provide data at discrete points. To overcome the weak points of conventional characterization methods, the partitioning tracer method has been developed and studied. The average saturation of NAPL($S_n$), which is the representative and continuous saturation value within contaminated site, can be calculated by comparing the transport of the partitioning tracers to that of the conservative tracer in the partitioning tracer method. In this study, the application of the partitioning tracer method in heterogeneous media was investigated. To represent the heterogeneous condition of subsurface, a two-dimensional soil box was divided into four layers and each layer contained different sized soils. Soils in the soil box were contaminated by the mixture of kerosene and diesel, and partitioning tracer tests were conducted before and after the contamination using methanol as conservative tracer and 4-methyl-2-pentanol, 2-ethyl-1-butanol, and hexanol as partitioning tracers. The response curves of partitioning tracers from contaminated soils were separated and retarded in comparison with those from non-contaminated soils. The contamination of soils by NAPLs, therefore, can be detected by partitioning tracer method considering these retardations of tracers. From our experiment condition, the average saturation of NAPLs calculated by partitioning tracer method using the methanol as conservative tracer and hexanol as partitioning tracer showed the highest accuracy, though all results were underestimated. Further studies, therefore, were needed for improving the accuracy using the partitioning tracer test in heterogeneous media.

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복합유류 토양오염에 따른 유종 해석 (The Interpretation of Petroleum Species from Contaminated Soil by Complex Oil)

  • 임영관;김지연;김완식;이정민
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제24권1호
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    • pp.17-23
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    • 2019
  • Clean soil environment is of crucial importance to sustain lives of ecosystem and humans. With rapid industrialization, there has been a great increase of soil contamination by accidental releases of petroleum products. In general, soil remediation is an expensive and time-consuming process as compared to cleanup of water and air. Moreover, determining the source and responsible parties of soil pollution often turns into legal conflicts and that further delay the cleanup process of contaminated sites. In practice, total petroleum hydrocarbon (TPH) analysis has been employed to determine the petroleum species and to track down the responsible polluters. However, this approach often suffers from differentiating similar TPH species. In this study, we analyzed TPH chromatogram patterns of 24 domestic petroleum products in specific carbon ranges (${\sim}C_{10}$, $C_{10}-C_{12}$, $C_{12}-C_{36}$, and $C_{36}{\sim}$) and the fractional changes of THP ratio in the mixture products of gasoline, kerosene and diesel. The proposed TPH analysis method in this study could serve as a useful tool to better analyze the petroleum species in soils contaminated with complex oil mixtures, and ultimately be used to identify the polluters of soil.

어업용 유류의 안정적인 공급에 관한 연구 (A study on the Stable Supply of Fishery Oil in Korea)

  • 강연실;이광남
    • 수산경영론집
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    • 제31권1호
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    • pp.115-133
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    • 2000
  • The policy of suppling tax-exempt fishery oil in Korea has a history of almost 40 years, which was initiated by the National Federation of Fisheries Cooperatives in 1965. In 1999 the volume of fishery oil supplied to the earning fishermen and fishing entrepreneurs amounted to 8,390 thousand DM, 500 billion won in total. This paper analyzes the oil supplying system to fishermen in Korea and shows that the structural obstacles to the stable provision of fishery oil lies in the ineffective bargaining power (fixing price). Provided that the NFFC as a buyer, which is not equipped with the storage facilities for oil bids for a unit-price contract of fishery oil, there exists a possibility of collusion among 5 local oil refineries corporations to influence the oil price, making it difficult to reach a resonable price of oil. Though the international bids and direct imports following the liberalization of oil imports would help lower the unit price, purchasing and importing the oil out of season at a lower price would not be guaranteed without the oil storage facilities. Furthermore, the current supply system of oil is quite vulnerable to the extraneous factors and, say when the oil price soars unpredictably, it is almost impossible to supply low - priced fishery oil to fishermen. The National Federation of Fisheries Association of Japan(Zengyoren), for instance, possesses 10 oil storage facilities, which had been built across the country during the last 20 years (1964-1984). The storage capacity of these facilities reaches 0.6million DM(by kind, 0.56million DM for A heavy oil, 38thousand D/M kerosene, 5thousand D/M for diesel fuel oil). Allowing no intermediary of production associations(fisheries cooperatives) the NFFA's capacity for keeping oil in reserve rises much higher. As these storage facilities can keep the oil amounting to as much as of 70 days demand in reserve, a stable supply of fishery oil on favorable terms is secured. In contrast with Japan case, unequipped with the storage facilities for fishery oil, Korea does not have much bargaining power for bringing down the price of fishery oil. To make matters worse, the oil storing capacity of the member cooperatives is the volume of only 8 days demand. In case the oil price rises, it is almost impossible to supply the oil to the fishermen at a price lower than the price risen.

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식별제(Unimark 1494DB) 정량시험에서 파란색 색소(Orimax Blue 2N, Orimax Green 151), Quinizarin, 토파졸(P-250) 및 윤활유 원료(P-8)의 흡광도상승 효과 (Absorbance Elevation of Orimax Blue 2N, Orimax Green 151, Quinizarin, Topasol (P-250) and Lubricant (P-8) on the Spectrophotometric Analysis of Unimark 1494 DB)

  • 이지윤;김창종
    • 약학회지
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    • 제50권5호
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    • pp.313-321
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    • 2006
  • There are three kinds of liquid petroleum marker which is extracted by the basic or acidic, and both developer. Korean marker, Unimark 1494 DB (marker) have been spectrophotometrically analysed by the determination of absorbance at 582 nm after base extraction by Unimark 1494 DB Developer C-5 (developer). Some blue dyes which have same reactive radical of marker and can be changed deep blue color in base developer extraction (BDE), may be increased absorbance at 582 nm, but dyes or markers which can be increased the absorbance, were not unclear. In this experiment, effects of three dyes or marker such as Orimax Green 151 (the mixture of CI Solvent Yellow 16 and CI Solvent Blue 70), quinizarin and Orimax Blue 2N (CI Solvent Blue 35), and two solvent such as topasol (P-250) and lubricant (P-8) on the absorbance were studied by HITACHI Recording Spectrophotometer U-3300. It shows that all of them increased absorbance at 582 nm after BDE. Absorbance at 582 nm can be showed 0.0544 by Orimax Green 151 at the concentration of 3.96 mg/l, quinizarin at the concentration of 1.38 mg/l, and Orimax Blue 2N at the concentration of 2.73 mg/l in the artificial petroleum (normal diesel oil: topasol: lubricant=2 : 4: 4), respectively. Absorbance, 0.0544 indicates that concentration of marker is 1.64 mg/l in the reference curves, respectively. And also these results can be showed that the artificial petroleum have about 10% cheep fuel such as kerosene which have marker (16.0 mg/l). Absorbance of P-250 was 0.01361-0.22842 depending upon the purchasing date, and that of P-8 was 0.05644. pH of developer was 14.83, and so this result indicates that Unimark 1494 DB is a base extractable petroleum marker, phenylazophenol (US Patent No. 5,252,106). In the BDE, the slight color of Orimax Blue 2N, Orimax Green 151 and quinizarin in artificial petroleum changed to deep bright blue color, respectively. These result indicate that the absorbance at 582 nm by BDE may be increased not only by azo, diazo, amine and ketone (anthraquinone, coumarin) dyes or markers, but also the contaminants of P-250 and P-8 which have same as reactive radical of dyes or markers.

미생물을 이용한 원유 및 원유제품의 분해 특성 (Biodegradation of Crude Oil and Petroleum Products by Crude Oil-degrading Microorganism)

  • 정선용;오경택;박귀환;이정일;이중기
    • KSBB Journal
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    • 제17권3호
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    • pp.247-254
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    • 2002
  • 토양으로부터 2종류 그리고 해양으로부터 1종류의 원유 분해 미생물을 분리하였고, 이들을 strain A132, strain F722 그리고 strain OM1으로 각각 명명하였다. 이들 미생물은 Acinetobacter sp., Pseudomonas aeruginosa, Acinetobacter calcoaceticus로 각각 동정되었다. Strain Al32, F722의 최적배양 및 분해온도는 $35^{\circ}C$이고, 최적 생장 pH는 각각 8과 9에서 나타났다. 원유를 유일한 탄소 원으로 하여 배양을 하였을 때 원유농도 2.0% (w/v)에서 생장이 높았다. 한편, 해양에서 분리된 strain OM1은 pH 7, 원유농도 3.0% (w/v)에서 생장이 높았다. 원유 분해능 조사에서는 Eleuthera (OMAN) 원유를 2.0% (w/v) 기질로 하였을 때, strain Al32가 5.49g/L.day의 분해능을 나타내었다. 반면, L-Zakum (AFRICA) 원유에서는 strain F722가 1.19 g/L.day의 분해능을 보였다. 등유($nC_9\simnC_{20}$)와 경유 ($nC_{9}\simnC_{28}$)에 대하여 분해특성을 조사한 결과 strain OM1은 배양 7일 후 95, 75%를 각각 분해하였다. Strain F722는 배양10일 후 80%의 분해율을 나타내었다.

분산형 발전설비 병열운전 에너지 품질평가 (An Evaluation of Energy Quality for Distributed Powersystem)

  • 허광범;박정극;윤기갑;임상규;최인규
    • 에너지공학
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    • 제19권1호
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    • pp.8-15
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    • 2010
  • 새로운 발전설비의 건설부지 확보의 어려움을 극복하고 친환경적인 에너지시스템으로 분산형 초소형 가스터빈이 주목받고 있다. 분산형 초소형 가스터빈 발전시스템은 다음과 같은 장점을 가지고 있다. 첫째는 친환경성으로서 NOx < 9 ppm, 소음 < 65 dB, 둘째는 다양한 연료를 사용할 수 있으며 천연가스 뿐만 아니라, 디젤, 저발열량 신재생에너지원료, 등유이다. 셋째는 작은 면적대비 높은 출력을 얻을 수 있고 컴팩트한 건설이 가능하다. 1998년부터 미국에서 개발되어 캘리포니아 및 일본등에서 활발히 적용되고 있다. 기존의 대용량 발전시스템이 주로 바닷가 근처에 건설되었다면 본 시스템은 수요자 인근에 설치되어 열과 전기를 동시에 공급하고 있으며 다양한 적용처에 에너지를 공급한다. 최근들어 국내에서는 신재생에너지의 개발, 보급이 아주 중요한 이슈로 떠오르고 있는 가운데, 이러한 소형 분산전원의 적용성이 많이 요구되고 있다. 따라서, 본 논문에서는 분산형 가스터빈의 최적 현장 적용을 위하여 필수적인 계통연계를 통한 병열운전 모델링과 실증시험 및 평가과정을 분석하여 에너지 품질을 정립하고자 한다.

GC-MS를 이용한 석유제품 중의 식별제 분석 (Determination of fuel marker in petroleum products using GC-MS)

  • 연주민;도진우;임의순;이정민
    • 한국응용과학기술학회지
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    • 제35권4호
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    • pp.1073-1080
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    • 2018
  • 연료유로 사용되는 석유제품은 각각의 품질기준, 등급, 사용용도에 따라 여러 종류가 있다. 국가별로 유류에 세금을 부과하는 정도에 따라 동일한 석유제품이라 하더라도 가격차이가 발생한다. 가격이 저렴한 비과세의 석유제품을 상대적으로 고가인 수송용 연료에 불법적으로 혼합하는 행위로 인하여 탈세, 환경오염, 차량고장 등의 문제가 발생한다. 이러한 석유제품간 불법 혼합을 방지하기 위해 특정 석유제품에 미량의 식별제(Marker)를 법적으로 첨가하고 있다. 국내에서는 가정용 및 상업용 연료로 사용되는 등유를 자동차용 경유에 불법적으로 혼합하는 행위를 방지하기 위하여 식별제를 도입하여 사용하고 있으며, UV-Vis 분광광도계나 HPLC를 이용하여 식별제 함량을 정량적으로 분석하고 있다. 본 연구에서는 기존에 식별제 함량 분석을 위해 발색제를 첨가하거나 시료를 전처리하는 조작없이 GC-MS로 석유제품에 첨가된 식별제를 정성적 및 정량적으로 분석하는 방법을 개발하였다.