首页> 外文会议>International oil spill conference (IOSC 2008) >OIL RECOVERY WITH NOVEL SKIMMER SURFACES UNDER COLD CLIMATE CONDITIONS
【24h】

OIL RECOVERY WITH NOVEL SKIMMER SURFACES UNDER COLD CLIMATE CONDITIONS

机译:气候条件下采用新型薄壳表面进行油回收

获取原文
获取原文并翻译 | 示例

摘要

Increasing oil exploration, production and transport in Arctic waters will increase the risk of an oil spill occurring in cold and ice-infested waters. The mechanical oil spill recovery equipment currently used in warmer waters was not designed to collect much more viscous oils, or oil-ice mixtures. The presence of ice crystals in oil emulsions affects the adhesion processes between an oil slick and the surface of an oleophilic skimmer and prevents oil from being efficiently recovered. Novel drum skimmer surface geometry and materials, tailored to the conditions present under cold climates, are expected to significantly increase the rate of oil recovery, reducing cost and risk. The objective of this project was to perform a comprehensive analysis of the adhesion between oil or ice-in-oil mixtures and various surface patterns and materials, under cold climate conditions. This knowledge was then applied to improve existing mechanical response equipment so that it can be applied efficiently under these conditions. The novel recovery surfaces that proved to increase the recovery efficiency of a drum skimmer up to two times in warm waters were also successful in cold climate conditions.rnIn the first phase of the project, laboratory bench-scale tests of different surface materials were conducted, to determine contact angle and amount of oil adhered at sub-freezing conditions, with and without ice. It became clear that the physicochemical property that would be most significantly influence by cold climate conditions would be viscosity, and that the presence of ice would also have an important effect on viscosity, although to a varying degree depending on the initial oil viscosity. Neoprene was the best material surface, of those tested here, for adhering oil even under oil/ice conditions. Based on the results of the laboratory tests at subfreezing conditions, we selected materials and surface patterns with the highest oil recovery potential under cold climate conditions, and performed field scale oil spill recovery tests with three different oils at the U.S. Army Corps of Engineers Cold Regions Research and Engineering Laboratory (CRREL), located in Hanover, NH. This provided valuable information about the correlation between the laboratory tests and full scale experiments. It also demonstrated the potential of the skimmer modifications under conditions similar to response operations. The field tests were very successful, with high rates of oil recovery under cold climates, with and without ice present. However, the presence of ice does decrease the overall rate of oil recovery to some extent.rnThe outcome of this project advanced our understanding of the adhesion of oil and oil emulsions (water containing and ice-containing) to recovery surface material under cold climate conditions. This research will facilitate selection of materials and surface configurations that result in significantly higher recovery rates of oil spills in cold and ice-infested waters. This will ultimately lead to a faster oil spill cleanup and greater protection of natural resources.
机译:北极水域中石油勘探,生产和运输的增加将增加在冰冷和冰满水域中发生漏油的风险。当前在较温暖的水域中使用的机械漏油回收设备的设计目的不是收集更多的粘性油或油冰混合物。油乳剂中冰晶的存在会影响浮油与亲油性撇油器表面之间的粘附过程,并会导致无法有效回收油。适应寒冷气候条件的新型鼓式分离器表面几何形状和材料有望显着提高采油率,降低成本和风险。该项目的目的是在寒冷气候条件下,对油或冰包油混合物与各种表面图案和材料之间的粘附力进行全面分析。然后,将这些知识应用于改进现有的机械响应设备,以便可以在这些条件下有效地应用它。在寒冷的气候条件下,新型的回收表面被证明可将鼓式撇油器的回收效率提高两倍,也很成功。在该项目的第一阶段,对不同表面材料进行了实验室规模的测试,确定在有冰和无冰的情况下在亚冰冻条件下的接触角和附着的油量。显然,受寒冷气候条件影响最大的物理化学性质将是粘度,并且冰的存在也将对粘度产生重要影响,尽管在不同程度上取决于初始油的粘度。在这里测试的那些材料中,氯丁橡胶是最好的材料表面,即使在油/冰条件下也能粘附油。根据在亚冰冻条件下的实验室测试结果,我们选择了在寒冷气候条件下具有最高采油潜力的材料和表面模式,并在美国陆军工程兵兵团寒冷地区对三种不同的油进行了现场规模的溢油回收测试。研究与工程实验室(CRREL),位于新罕布什尔州汉诺威。这提供了有关实验室测试和全面实验之间相关性的有价值的信息。它还证明了在类似于响应操作的条件下对撇渣器进行修改的潜力。现场测试非常成功,在有或没有冰的情况下,在寒冷气候下的采油率很高。然而,冰的存在确实在一定程度上降低了石油的整体采收率。rn该项目的结果使我们对在寒冷气候条件下油和油乳化液(含水和含冰)与采出地表材料的粘附有了更深入的了解。这项研究将有助于选择材料和表面构造,从而显着提高在冰冷和受冰水侵袭的水中溢油的回收率。这最终将导致更快的溢油清理和对自然资源的更好保护。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号