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Fate of Surface Spills of Cold Lake Blend Diluted Bitumen Treated with Dispersant and Mineral Fines in a Wave Tank

机译:冷湖混合稀释沥青的表面溢出用分散剂和矿物质在波浪罐中处理的稀释沥青

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摘要

Cold Lake Blend (CLB) diluted bitumen (dilbit) was used to evaluate the fate and transport of preweathered (6.2% w/w) dilbit under environmental conditions both in spring (seawater temperature 8.5 degrees C +/- 1.3 degrees C and salinity 27.7 +/- 1.6 practical salinity units [psu]) and in summer (seawater temperature 17.0 degrees C +/- 2.6 degrees C and salinity 26.8 +/- 2.4 psu). The following oil spill treatments were considered: no treatment, dispersant alone, mineral fines (MF) alone, and dispersant+MF. The aim was to determine their influences on the fate of spilled CLB at sea. When dispersant alone was used, the highest dispersion effectiveness (DE) was noted, and DE ranged from 45% to 59% under the selected environmental conditions. With no treatment and treatment of MF alone, CLB DE was insufficient under tested conditions. Total petroleum hydrocarbon (TPH) concentration in the water column was highest for the dispersant alone, followed by that of dispersant+MF. TPH concentration for the dispersant alone increased abruptly with time. Droplet size distribution (DSD) resulting from dispersant alone had a unimodal shape, which was different than previously observed when conventional oils were treated with the dispersant. Cases of dispersant+MF were thus characterized by a broader DSD compared with dispersant only and a gradual increase in TPH concentration. This suggests that MF could be used with dispersant as a means to control the release of toxic compounds into the water column and for better engineering the response.
机译:冷湖混合物(CLB)稀释的沥青(DILBIT)用于评估弹簧(海水温度8.5℃+/- 1.3℃和盐度)在环境条件下进行治疗(6.2%w / w)思路的命运和运输+/- 1.6实用盐度单位[PSU])和夏季(海水温度17.0摄氏度+/- 2.6℃和盐度26.8 +/- 2.4 PSU)。考虑了以下漏油处理:单独使用矿物质料(MF)和分散剂+ MF的治疗,分散剂。目的是确定他们对海上溢出CLB的命运的影响。当使用单独的分散剂时,注意到最高的分散效果(DE),在选定的环境条件下,DE在45%至59%之间。单独使用MF的治疗和治疗,CLB DE在测试条件下不足。单独的分散剂的水柱中总石油烃(TPH)浓度最高,然后是分散剂+ MF的分散剂。单独的分散剂的TPH浓度随时间突然增加。单独的分散剂引起的液滴尺寸分布(DSD)具有单峰形状,当用分散剂处理常规油时,其与先前观察不同。因此,分散剂+ MF的案例通过较宽的DSD与分散剂相比,​​并且TPH浓度逐渐增加。这表明MF可以与分散剂一起使用,作为控制水柱中有毒化合物的手段,并更好地工程响应。

著录项

  • 来源
    《Environmental Engineering Science》 |2015年第3期|250-261|共12页
  • 作者单位

    Bedford Inst Oceanog Ctr Offshore Oil Gas & Energy Res Dept Fisheries & Ocean Canada Dartmouth NS B2Y 4A2 Canada;

    Bedford Inst Oceanog Ctr Offshore Oil Gas & Energy Res Dept Fisheries & Ocean Canada Dartmouth NS B2Y 4A2 Canada;

    Bedford Inst Oceanog Ctr Offshore Oil Gas & Energy Res Dept Fisheries & Ocean Canada Dartmouth NS B2Y 4A2 Canada;

    Bedford Inst Oceanog Ctr Offshore Oil Gas & Energy Res Dept Fisheries & Ocean Canada Dartmouth NS B2Y 4A2 Canada;

    Bedford Inst Oceanog Ctr Offshore Oil Gas & Energy Res Dept Fisheries & Ocean Canada Dartmouth NS B2Y 4A2 Canada;

    New Jersey Inst Technol Dept Civil & Environm Engn Ctr Nat Resources Dev & Protect Newark NJ 07102 USA;

    New Jersey Inst Technol Dept Civil & Environm Engn Ctr Nat Resources Dev & Protect Newark NJ 07102 USA;

    CSIRO Wealth Oceans Natl Res Flagship Australian Resources Res Ctr Kensington NSW Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mineral fines; wave tank; dispersant; dispersion effectiveness; diluted bitumen; cold lake blend;

    机译:矿物罚款;波浪坦克;分散剂;色散效果;稀释沥青;冷湖混合;

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