• 제목/요약/키워드: Petrochemical industry

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석유화학 플랜트용 프로세스 펌프의 국산화율 제고 방안에 관한 연구 (A Study on plans for improving localization of process pumps for petrochemical plants)

  • 조원배;문승재;유호선
    • 플랜트 저널
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    • 제5권3호
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    • pp.50-58
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    • 2009
  • In this paper, the present condition for localization of process pumps and the enhancement method of the localization ratio of process pumps for refinery and chemical plant market were studied. The market of plant industry in the world has grown rapidly since 2000. However, the profit of domestic plant EPC compaies cound not have been increased as much as the market scale because they procured most of equipment from overseas. To make remarkable profit of plant EPC companies in the petrochemical industry, localization of equipments is required. Suitable equipment for localization is process pump applied API 610 standard. An purchased amount of pumps from overseas by domestic plant EPC companies in the last two years were 230 billion won. If process pumps are localized then an profit of plant EPC project will increase.

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산소 반응 교반기의 진동 특성 분석 (Characteristic Vibration analysis of the Ox-Reactor Agitator)

  • 장용석;임장익;구동식;김효중;최병근
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 춘계학술대회논문집
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    • pp.986-989
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    • 2008
  • Recently the agitator are being widely used in the machine plan in order to increase the petrochemical industry. The agitator normally consist of impeller, shaft, hub, reduction gear and the driving motor. It is one of the key design issue to confirm that the vibration caused by the rotation of the shaft should not coincide with the natural frequency of the shaft itself. And petrochemical industry as well as plants have been in operation for long period beyond their original design lives. In this paper the vibration of Ox-Reactor Agitator is measured for check machine condition. The result of diagnosis and solution is discussed in this paper.

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Reinforced concrete wall as protection against accidental explosions in the petrochemical industry

  • Ambrosini, Daniel;Luccioni, Bibiana Maria
    • Structural Engineering and Mechanics
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    • 제32권2호
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    • pp.213-233
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    • 2009
  • In this paper the study of a reinforced concrete wall used as protection against accidental explosions in the petrochemical industry is presented. Many alternatives of accidental scenarios and sizes of the wall are analyzed and discussed. Two main types of events are considered, both related to vessel bursts: Pressure vessel bursts and BLEVE. The liberated energy from the explosion was calculated following procedures firmly established in the practice and the effects over the structures and the reinforced concrete wall were calculated by using a CFD tool. The results obtained show that the designed wall reduces the values of the peak overpressure and impulse and, as a result, the damage levels to be expected. It was also proved that a reinforced concrete wall can withstand the blast load for the considered events and levels of pressure and impulse, with minor damage and protect the buildings.

Characteristics of Occupational Exposure to Benzene during Turnaround in the Petrochemical Industries

  • Chung, Eun-Kyo;Shin, Jung-Ah;Lee, Byung-Kyu;Kwon, Ji-Woon;Lee, Na-Roo;Chung, Kwang-Jae;Lee, Jong-Han;Lee, In-Seop;Kang, Seong-Kyu;Jang, Jae-Kil
    • Safety and Health at Work
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    • 제1권1호
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    • pp.51-60
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    • 2010
  • Objectives: The level of benzene exposure in the petrochemical industry during regular operation has been well established, but not in turnaround (TA), where high exposure may occur. In this study, the characteristics of occupational exposure to benzene during TA in the petrochemical companies were investigated in order to determine the best management strategies and improve the working environment. This was accomplished by evaluating the exposure level for the workers working in environments where benzene was being produced or used as an ingredient during the unit process. Methods: From 2003 to 2008, a total of 705 workers in three petrochemical companies in Korea were studied. Long- and short-term (< 1 hr) samples were taken during TAs. TA was classified into three stages: shut-down, maintenance and start-up. All works were classified into 12 occupation categories. Results: The long-term geometric mean (GM) benzene exposure level was 0.025 (5.82) ppm (0.005-42.120 ppm) and the short-term exposure concentration during TA was 0.020 (17.42) ppm (0.005-61.855 ppm). The proportions of TA samples exceeding the time-weighted average, occupational exposure level (TWA-OEL in Korea, 1 ppm) and the short-term exposure limit (STEL-OEL, 5 ppm) were 4.1% (20 samples of 488) and 6.0% (13 samples of 217), respectively. The results for the benzene exposure levels and the rates of exceeding the OEL were both statistically significant (p < 0.05). Among the 12 job categories of petrochemical workers, mechanical engineers, plumbers, welders, fieldman and scaffolding workers exhibited long-term samples that exceeded the OEL of benzene, and the rate of exceeding the OEL was statistically significant for the first two occupations (p < 0.05). Conclusion: These findings suggest that the periodic work environment must be assessed during non-routine works such as TA.

석유화학공장의 소화설비에 대한 고찰

  • 이형섭
    • 방재기술
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    • 통권12호
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    • pp.21-30
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    • 1992
  • This fire fighting systems engineering specification includes the design and installation requirements which normally adopted for petroleum refineries and petrochemical industries. Also, this shall be applied the Korean Fire Safety Law, in addition to the Korean Industry Safety & Health Law and NFPA Code.

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석유 및 석탄화학의 대보수작업중 벤젠노출 특성 비교 (A Comparison on the Characteristics of Benzene Exposure between the Coal chemical and Petrochemical refining method during Turnaround)

  • 정은교;유계묵;신정아;권지운;박현희;정광재;;이인섭;강성규;류향우;김영선;이병규;장재길;김원;김정만
    • 한국산업보건학회지
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    • 제20권3호
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    • pp.147-155
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    • 2010
  • This study was conducted to investigate the benzene exposure levels in coal chemical and petrochemical refining industries during BTX turnaround (TA) processes where benzene was being produced. Three companies producing benzene were selected, one coal chemical and two petrochemical industries. TA processes were classified into three stages: shut down, maintenance, and start up. Data was analyzed by classifying the refining method into 2 groups (Petrochemistry, Coal chemistry) for 823 workers. Comparing the data from petrochemical industries with data from a coal chemical refining industry, while benzene concentration levels of long-term samples during TA were not statistically different (p> 0.05), those levels of short-term samples were significantly different (p< 0.001). About 4.79 % of data in petrochemical industries exceed the occupational exposure limits (OELs) of benzene, 1 ppm. In a coal refining methods, about 15.7% exceeded the benzene OELs. The benzene concentrations in maintenance and start up stage of TA for petrochemical refineries were higher than those in a coal chemical refinery (p <0.01). These findings suggest that the coal chemical refining site requires more stringent work practice controls compare to petrochemical refining sites during TA processes. Personal protective equipments including organic respirators should be used by TA workers to protect them from benzene overexposure.

산업현장에서의 안전규제 적용실태 연구 - 석유화학공장을 중심으로 - (A Study on Actual Conditions of Industrial Safety Regulations - Based on Petrochemical Plant -)

  • 오형근;백동승
    • 한국방재학회 논문집
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    • 제11권2호
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    • pp.81-86
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    • 2011
  • 특별한 지하자원이 없는 한국에서의 석유화학산업은 전자 자동차 등의 업종에 기초소재를 공급하는 핵심 산업으로 위치하고 있으나 유해 위험물질을 다루는 공정상 화재나 폭발 등 위험이 상존해 있고 이로부터 현장의 인적 물적 안전보호를 위해 규제위주로 재해예방활동을 하고 있다. 하지만 개별법에 따라 정형화된 안전규제가 필요한 만큼 이행되지 않는다면, 당초 의도한 안전규제의 합목적성과 안정성이 훼손될 뿐만 아니라 공적 및 사적행정력의 낭비를 초래하여 전체 석유화학산업의 경쟁력을 떨어뜨리는 요소로 작용하게 된다. 이에 따라 본 연구는 석유화학플랜트에 적용하고 있는 대표적인 안전규제 항목들이 안전을 위해 필요한지와 이들이 규정대로 이행되고 있는지 규명하였으며, 연구결과에 따르면, 일부 규제의 필요성과 이행수준면에서 신뢰도가 낮은 것으로 나타났다.

국내 수소 생산, 소비 및 유통 현황 (The Status of Domestic Hydrogen Production, Consumption, and Distribution)

  • 김봉진;김종욱;최상진
    • 한국수소및신에너지학회논문집
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    • 제16권4호
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    • pp.391-399
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    • 2005
  • This paper deals with the survey of domestic hydrogen production, consumption, and distribution. The amount of domestic hydrogen production and consumption has not been identified, and we survey the amount of domestic hydrogen production and consumption by industries. The hydrogen production industries are classified into the oil industry, the petrochemical industry, the chemical industry, and the other industry. In 2004, the amount of domestic hydrogen production was 972,601 ton, which corresponded to 1.9% of the global hydrogen production. The oil industry produced 635,683 ton(65.4%), the petrochemical industry produced 241,970 ton(24.9%), the chemical industry produced 66,250 ton(6.8%), the other industry produced 28,698 ton(2.9%). The hydrogen consumptions of corresponding industries were close to the hydrogen productions of industries except that of the other industry. Most hydrogen was used as non-energy for raw materials and hydrogen additions to the process. Only 122,743 ton(12.6%) of domestic hydrogen was used as energy for heating boilers. In 2004, 47,948 ton of domestic hydrogen was distributed. The market shares of pipeline, tube trailers and cylinders were 84.4% and 15.6%, respectively. The purity of 31,848 ton(66.4%) of the distributed hydrogen was 99.99%, and 16,100 ton(33.6%) was greater than or equal to 99.999%. Besides domestic hydrogen, we also identify the byproduct gases which contain hydrogen. The iron industry produces COG( coke oven gas), BFG(blast furnace gas), and LDG(Lintz Donawitz converter gas) that contain hydrogen. In 2004, byproduct gases of the iron industry contained 355,000 ton of hydrogen.

화학산업 작업자의 안전행동과 안전분위기의 상관관계 (The Relationship between Workers' Safety Behaviors and Safety Climate in Chemical Industry)

  • 백종배;엄민용;김지선
    • 한국안전학회지
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    • 제30권5호
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    • pp.100-107
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    • 2015
  • Korea government has established and enforced countermeasures about the various policy of industrial accident prevention. Recent chemical accidents included hazardous materials. Exposure to these chemicals can cause serious environmental poisoning and various health problems. The key factor causing these major accidents may be associated with the mistake in workers' safety behaviors. Some researchers noted workers' safety behaviors may be related to workers' safety climate. In this research, a survey was conducted to explore workers' safety behaviors and safety climate in a large petrochemical company in Korea. The company processes major petrochemical materials and any spills can be hazardous and cause chemical disasters. In this study, we explored one petrochemical company to investigate three hypotheses. 593 workers were surveyed for this study. We checked association between workers' safety behavior and safety climate. The survey result shows the people who have safety climate do safe behavior.

석유화학 플랜트 EPC 사업의 진도율 산정표준의 제안 (A Standard Method for Progress Measurement in a Petrochemical Plant EPC Project)

  • 조홍연;유호선
    • 플랜트 저널
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    • 제7권4호
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    • pp.77-87
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    • 2011
  • In proportion to continuing growth of overseas plant market and the trend of its mega scale of the project, the importance of management is significantly emphasized for the successful execution of the project. And it is recognized that progress control is the most important management item amongst the others in the management. Progress control is importance of progress measurement for performance measurement and process control of project, but it is hardly obtainable securing the objectivity in the progress measurement since the progress measurement are being applied differently in accordance with the project conditions and the experience level of the person in charge for the progress control. This study has conducted as following to propose a standard method for progress measurement in a petrochemical plant protect. Domestic and overseas plant projects are investigated variously with the applied method of progress measurement, and the deduced problem of progress measurement. And then standard method for progress measurement of engineering, procurement, construction and commissioning has been proposed according to comparison and analysis of practices in domestic & overseas plant project, procedures for progress control in the globally reputed petrochemical client, company rules and recommendation of the expert in progress control.

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