• 제목/요약/키워드: Chemical spills

검색결과 41건 처리시간 0.021초

아세톤 풀 증발 실험을 통한 원격 유·누출 모니터링 시스템의 효용성 확인 (Confirmation of the Efectiveness of Remote Chemical Spills and Leak Monitoring System through Acetone Pool Evaporation Experiments)

  • 김은희;이슬기;마병철
    • 한국안전학회지
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    • 제37권6호
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    • pp.25-31
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    • 2022
  • In this study, the spill and leak system is developed to provide real-time remote monitoring of industrial complexes where chemical accidents have been occurring every year. The spill and leak monitoring system uses IR-RCD equipment mounted on a 70m-high steel tower to detect chemical substances, thereby detecting chemical accidents such as leaks, fires, and explosions in real time. If IR-RCD equipment can actually detect chemical substances at a long distance, accurate and rapid initial response can be expected. Therefore, in order to confirm that IR-RCD equipment can detect chemical leakage accidents occurring at a long distance, acetone was selected as the experimental substance and a detection experiment was designed. The experiment was conducted using the acetone pool evaporation method at the wharf which was located 1.5 km away from IR-RCD equipment, and it was confirmed whether IR-RCD equipment could detect acetone in real time through the control monitor.

유기 다공성 소재의 흡유 효과 (Oil Absorption Effects of Organic Porous Materials)

  • 강영구;한상범
    • 한국안전학회지
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    • 제21권1호
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    • pp.86-91
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    • 2006
  • Oil spills caused by the accidents have been occurred from house and factory waste, grounded tanker, the rupture of storage tank and oil pipelines, the deterioration of various industrial facilities, etc. Many oil spills result in contamination of shorelines and workplace. Fire and explosion may happen from these spills. There are several technologies used for clean-up application, which include use of oil dispersing agents, absorbents, solidifiers, booms and skimmers by physical, chemical, and biological methods. Methods for oil spill clean-up operation are classified into the absorption type, gel type and self-swelling type. Porous materials with oil absorptive properties are classified into micropore, mesopore, and macropore depending on their pore sizes. Recently, new porous materials with smaller size have been developed, but the selective oil absorption in water-in-oil interface demonstrates the macro pore size. In this study oil absorption effects were evaluated using the organic porous materials with a complex function of gel type and swelling type. Samples were subjected to analysis by FT-IR spectroscopy and were characterized in terms of gel formation and morphologies. Oil sorption capacity, pressure retention force and gel strength were also measured. From these results, the physicochemical reactivity before and after gelation was verified and the industrial applications of clean-up operation were suggested.

유류확산모델 개발 및 동해의 유류오염 사고대책 (Development of Oil Spills Model and Contingency Planning ill East Sea)

  • 류청로;김홍진
    • 한국해양공학회지
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    • 제19권4호
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    • pp.35-41
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    • 2005
  • There has been increasing offshore oil exploration, drilling, and production activities, as well as a huge amount of petroleum being transported by tankers and pipelines through the ocean and costal environment. Assessment must be made of the potential risk of damage resulting from the exploration, development and transportation activities. This is achieved through predictive impact evaluations of the fate of hypothetical or real oil spills. VVhen an oil spill occurs, planning and execution of cleanup measures also require the capability to forecast the short-term and long-term behavior of the spilled oil. A great amount of effort has been spent by government agencies, oil industries, and researchers over the past decade to develop more realistic models for oil spills. Numerous oil spill models have been developed and applied, most of which attempt to predict the oil spill fate and behavior. For an actual contingency planning, the oil fate and behavior model should be combined with an oil spill incident model, an environmental impact and risk model and a contingency planning model. The purpose of this review study is to give an overview of existing oil spill models that deal with the physical, chemical, biological, and socia-economical aspects of the incident, fate, and environmental impact of oil spills. After reviewing the existing models, future research needs are suggested. In the study, available oil spill models are separated into oil spill incident, oil spill fate and behavior, environmental impact and risk, and contingency planning models. The processes of the oil spill fate and behavior are reviewed in detail and the characteristics of existing oil spill fate and behavior models are examined and classified so that an ideal model may be identified. Finally, future research needs are discussed.

지하수 오염 (Groundwater Contamination)

  • 전효택
    • 수도
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    • 제25권1호통권88호
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    • pp.25-35
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    • 1998
  • Factors controlling water quality, water-quality standards, and normal ranges of concentrations in unpolluted fresh water and the sources of elements were explained in this paper. In particular, the sources of groundwater contamination such as the disposal of domestic waste water, landfills, chemical spills and leaking underground tanks, and agricultural and mining activities were discussed.

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해상누유 현장소각 기술에 대한 소고 (A Note on in-Situ Burning of Marine Oil Spills)

  • 성홍근
    • 한국해양환경ㆍ에너지학회지
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    • 제3권3호
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    • pp.58-65
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    • 2000
  • 해상 누유사고시의 방제대책은 오일펜스와 스키머를 사용하는 기계적 방법과 유화제를 사용하는 화학적 방법 그리고 현장에서 누출유를 소각하는 현장소각 방법으로 대별된다. 본 논고는 최근에 들어 관심이 집중되고 있는 해상누유 현장소각 기술에 대한 문헌 조사를 기초로 하여 작성된 것으로써, 해상누유 현장소각 기술의 특징, 역산, 현황, 장단점 그리고 실험적 연구 및 향후 적용가능성 등에 대하여 간략히 기술하였다.

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페놀 화학사고 발생으로 오염된 퇴적물에서 페놀의 거동 기작이 원위치 피복의 정화 효율에 미치는 영향 (Effect of the Fate Mechanisms of Phenol on the Remediation Efficiency of In-Situ Capping Applied to Sediment Contaminated by Phenol Chemical Spills)

  • 이아름;최용주
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제27권1호
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    • pp.60-70
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    • 2022
  • We evaluated the performance of in-situ capping to prevent the release of phenol, one of hazardous chemicals of concern for their impact on sediment. Sediment near the estuary of Hyeongsan River, Korea, and commercially-available sand were collected to evaluate their physical properties and phenol sorption characteristics. Biodegradation kinetics of phenol spiked into the sediment was evaluated under freshwater and estuarine salinity conditions. These experimental measurements were parameterized and used as input parameters for executing CapSim, a software predicting the performance of in-situ capping. The CapSim simulation demonstrated that capping with 50-cm sand reduced the phenol release by several orders of magnitude over 0.25- and 1-year duration for almost all simulation scenarios. The variables tested, i.e., cap thickness, pore-water movement, and biodegradation rate, showed high correlation to each other to influence the extent of phenol release from sediment to the water column. The findings and the framework employed to evaluate the performance of in-situ capping in this study can be adopted to determine whether in-situ capping is appropriate remedial approach at sediment sites impacted by hazardous chemicals due to accidental spills.

강산 및 강염기 토양 유출에 따른 토양의 생태기능 관련 토양특성 변화 (Changes in Soil Properties Related to Soil Function due to Chemical Spills with Strong Acid and Base)

  • 전인형;정재웅;남경필
    • Ecology and Resilient Infrastructure
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    • 제4권4호
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    • pp.193-199
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    • 2017
  • 본 연구에서는 강산 및 강염기 유출사고가 발생하였을 때 육상생물의 생육에 영향을 미칠 수 있는 토양특성의 변화를 살펴보았다. 강산과 강염기 화학물질로 HCl과 NaOH을 선정하였으며 이들 물질을 토양과 반응시킨 후 토양의 토성, 비표면적, 유기물함량, pH, 양이온교환능력 및 치환성양이온 함량 변화를 측정하였다. 토양과 반응한 HCl 및 NaOH 농도가 각각 10 M과 1 M인 경우 (즉, 토양 1 g 당 50 mmol의 HCl이나 5 mmol의 NaOH가 유입된 경우) 유의한 수준의 토양 특성 변화가 관찰되었다. 10 M HCl 및 1 M NaOH 용액과 반응한 토양의 토성은 sandy loam에서 loamy sand로 변하였으며, 비표면적은 $5.84m^2/g$에서 각각 4.85 및 $1.92m^2/g$으로 감소하였다. 토양 유기물 함량은 3.23%에서 0.96 및 0.44%로 크게 감소하였으며, 반응 전 pH 5.05로 약산성인 토양의 pH는 각각 2.35 및 10.65로 변하였다. 토양 내 양이온교환능력은 10.27 cmol/kg에서 4.52 및 5.60 cmol/kg으로 크게 감소하였으며 $Na^+$을 제외한 알칼리성 양이온 ($K^+$, $Mg^{2+}$, $Ca^{2+}$)의 함량이 감소하였다. HCl과 반응한 경우 $Na^+$ 함량은 감소, $Al^{3+}$ 함량은 증가하였으나 반대로 NaOH와 반응한 경우 $Na^+$ 함량은 증가, $Al^{3+}$ 함량은 감소하였다. 높은 농도의 $Al^{3+}$$Na^+$은 각각 토양생물에게 직접적인 독성을 발현하거나 토양의 투수성을 감소시키고 중탄산염의 농도를 증가시켜 독성을 발현할 수 있다. 본 연구는 강산 및 강염기유출사고로 인하여 변화한 토양특성이 토양의 생태기능에 영향을 줄 수 있음을 보여준다.

재난안전관리 체계 개선 방안 연구 - 해양오일유출 확산방지기술 중심으로 - (A Study on Improved Emergency Management System - Focused on Response to Diffusion of Oil Spilled in Marine -)

  • 유병태;오금호;백종배
    • 한국안전학회지
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    • 제30권2호
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    • pp.83-89
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    • 2015
  • In Korea for 20 years(1993-2012), total number and average annual number of oil spills were 6,608 cases and total volume and average annual volume of oils spilt were $57,328k{\ell}$ and nearly $2,866k{\ell}/year$, respectively. The annual number of oil spills and annual amount of oil spilt tended to decrease with the lapse of year in Korea. As oil transportation worldwide continues to increase, many communities are at risk of oil spill disasters and must anticipate and prepare for them. Factors that influence oil spill consequences are myriad and rage from the biophysical to the social. In this paper, we analysed the emergency response systems and recovery apparatuses for oil spill accident in marine and proposed a developed oil diffusion apparatus which can be used to initial response stage by crew, and to extend golden times. This system can be minimized casualties for rescued people in disaster.

생태학적 모델을 이용한 유류유출 사고에 의한 자연 수산자원 피해의 추정 (Oilspill Damage Assessment of Natural Fisheries Resources by Ecological Models)

  • 유신재;신경순
    • 한국수산과학회지
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    • 제29권2호
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    • pp.174-190
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    • 1996
  • 해양에서 유류유출사고가 발생했을 때 자연 생물자원에 미치는 피해량을 전산모델을 이용하여 추정하였다. 해양에서 이러한 오염물질이 유출되었을 때 피해 조사가 이루어져야 하지만 조사비용 이외에도 현장조사 자체의 어려움이 있다. 조간대를 제외한 해역에서는 현장보존이 어렵고 조사대상도 성체에 한정되기 때문이다. 미국의 경우 이를 위하여 데이터 베이스를 이용한 전산모델(NRDAM/CME)을 개발하였다(Reed et al., 1989). 이 모델에서는 급성 독성실험 데이터를 사용하여 피해량을 추정하였고 성체피해 뿐 아니라 먹이망을 통한 파급효과와 유생 및 치어손실에 의한 가입량 손실도 다루고 있다. 본 연구에서는 NRDAM/CME에 쓰인 논리체계를 응용하였으며 한국 연근해의 데이터 베이스를 사용하여 벙커 C유와 원유가 유출되었을 경우 황해와 남해를 대상으로 하여 유출규모에 따른 자연 생물자원의 피해정도를 추정하였다. 모델의 시험결과 유류의 유출량이 증가했을 때 생물자원의 피해량은 유출량의 증가율 보다 더 높은 율로 증가하였다. 유출된 유류의 화학적 특성, 특히, 점도와 용해도의 차이에 따라 피해량이 큰 차이를 보이는데 이는 유류의 분산을 촉진 시키기 위한 유화제의 사용이 피해량을 증가시킬 가능성이 있는 것으로 생각된다. 또한 생물량의 손실은 가입 손실에 의한 장기적 피해가 단기적 피해보다 더 클 수 있음도 시사하고 있다.

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