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Experiences in Dispersant Treatment of Experimental Oil Spills

机译:实验性溢油分散剂处理经验

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In Norway, mechanical recovery has traditionally been the preferred oil spill response technique for the past decades. More recently, the Norwegian Pollution Control Authority (SFT) has opened the door to the consideration of dispersant use in certain oil spill situations. The responsibility for planning and decision for use/non-use of dispersants lies with the oil industry/enterprise itself; their decisions are subject to review and approval by SFT. This is in accordance with the "Principle of Internal Control" on what the Authorities focuses their regulations. The new regulations for use of dispersants in Norway requires well-documented contingency plans for refineries, oil terminals and offshore installations. This change in the attitude to the use of dispersants in Norway is a result of the recent years' progress in scientific documentation of dispersant use. Previous paper (Spill Science Technology Bulletin 5(1) 1999 63) gives an overview of the methodologies developed for oil weathering and dispersibility studies in the laboratory forming the basis for the development of the SINTEF Oil Weathering Model, which has been extensively validated in the field. This paper gives a summary of the main findings from recent years' dispersant field trials in the North Sea. This work forms a basis for building up an operational and effective dispersant response for specific Norwegian coastal and offshore locations/regions. Data generated from the experimental field trials have been invaluable for validation and development of numerical models for fate and response assessment of oil spills. Examples in using the quantitative model tool "Oil Spill Contingency and Response" (OSCAR) in contingency planning and Net Environmental Benefit Analyses (NEBA) of oil spill scenarios are given.
机译:在挪威,机械回收传统上是过去几十年来首选的溢油应急技术。最近,挪威污染控制局(SFT)为考虑在某些溢油情况下使用分散剂打开了大门。分散剂的使用/不使用计划和决策的责任在于石油行业/企业本身;他们的决定须经SFT审查和批准。这符合“内部控制原则”,即当局的监管重点。挪威关于使用分散剂的新规定要求炼油厂、石油码头和海上设施有据可查的应急计划。挪威对分散剂使用态度的这种变化是近年来在分散剂使用科学记录方面取得进展的结果。之前的论文(Spill Science & Technology Bulletin 5(1) 1999, 63)概述了在实验室中为油风化和分散性研究开发的方法,这些方法构成了开发SINTEF油风化模型的基础,该模型已在现场得到广泛验证。本文总结了近年来在北海进行分散剂田间试验的主要结果。这项工作为为挪威沿海和近海特定地点/地区建立可操作和有效的分散剂反应奠定了基础。从试验现场试验产生的数据对于验证和开发用于溢油命运和反应评估的数值模型非常宝贵。本文列举了在溢油情景的应急规划和净环境效益分析(NEBA)中使用定量模型工具“溢油应急与响应”(OSCAR)的实例。

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