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首页> 外文期刊>Environmental Science & Technology >Chemical and Microbiological Parameters in New Orleans Floodwater Following Hurricane Katrina
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Chemical and Microbiological Parameters in New Orleans Floodwater Following Hurricane Katrina

机译:卡特里娜飓风后新奥尔良洪水的化学和微生物参数

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摘要

Hurricane Katrina,rated as a Category 4 hurricane on the Saffir-Simpson scale,made landfall on the U.S.Gulf Coast near New Orleans,Louisiana on Monday,August 29,2005.The storm brought heavy winds and rain to the city,and several levees intended to protect New Orleans from the water of Lake Pontchartrain were breached.Consequently,up to 80% of the city was flooded with water reaching depths in excess of three meters in some locations.Research described in this paper was conducted to provide an initial assessment of contaminants present in floodwaters shortly after the storm and to characterize water pumped out of the city into Lake Pontchartrain once dewatering operations began several days after the storm.Data are presented which demonstrate that during the weeks following the storm,floodwater was brackish and well-buffered with very low concentrations of volatile and semivolatile organic pollutants.Dissolved oxygen was depleted in surface floodwater,averaging 1.6 mg/L in the Lakeview district and 4.8 mg/L in the Mid-City district.Dissolved oxygen was absent (<0.02 mg/L) at the bottom of the floodwater column in the Mid-City districts days after the storm.Chemical oxygen demand (Mid-City average = 79.9 mg/L) and fecal coliform bacteria (Mid-City average = 1.4 X 10~5 MPN/100 mL) were elevated in surface floodwater but typical of stormwater runoff in the region.Lead,arsenic,and in some cases,chromium,exceeded drinking water standards but with the exception of some elevated Pb concentrations generally were typical of stormwater.Data suggest that what distinguishes Hurricane Katrina floodwater is the large volume and the human exposure to these pollutants that accompanied the flood,rather than very elevated concentrations of toxic pollutants.
机译:卡特里娜飓风于2005年8月29日星期一在路易斯安那州新奥尔良附近的美国墨西哥湾沿岸登陆,被定为Saffir-Simpson等级的4级飓风。暴风雨给这座城市带来了大风大雨旨在保护新奥尔良免受庞恰特雷恩湖水侵害的水,因此,在该市多达80%的城市被某些地方的深度超过三米的水淹没。本文进行了研究以提供初步评估暴风雨后不久洪水中存在的污染物的特征,以及表征暴风雨后几天开始进行脱水操作后从城市抽入庞恰特雷恩湖的水的特征。提供的数据表明,在暴风雨后的数周中,咸水微咸且状况良好。在极低浓度的挥发性和半挥发性有机污染物的缓冲下,地表洪水中的溶解氧被耗尽,湖景中的平均溶解氧为1.6 mg / L暴雨发生后数日,中城区的洪水柱底部没有溶解氧(<0.02 mg / L)(中城区平均4.8 mg / L)。 = 79.9 mg / L)和粪便大肠菌(城市中位数= 1.4 X 10〜5 MPN / 100 mL)在地表洪水中升高,但在该地区是典型的雨水径流。铅,砷,在某些情况下还包括铬数据表明,与卡特里娜飓风不同的是,水量大且人为暴露于洪水中的这些污染物,而不是高浓度的铅。有毒污染物。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第22期|p.8591-8599|共9页
  • 作者单位

    Department of Civil and Environmental Engineering,Louisiana State University,Baton Rouge,Louisiana,CK Associates,Baton Rouge,Louisiana,Gordon A.and Mary Cain Department of Chemical Engineering,Louisiana State University,Baton Rouge,Louisiana,EHS Tech;

    Department of Civil and Environmental Engineering,Louisiana State University,Baton Rouge,Louisiana,CK Associates,Baton Rouge,Louisiana,Gordon A.and Mary Cain Department of Chemical Engineering,Louisiana State University,Baton Rouge,Louisiana,EHS Tech;

    Department of Civil and Environmental Engineering,Louisiana State University,Baton Rouge,Louisiana,CK Associates,Baton Rouge,Louisiana,Gordon A.and Mary Cain Department of Chemical Engineering,Louisiana State University,Baton Rouge,Louisiana,EHS Tech;

    Department of Civil and Environmental Engineering,Louisiana State University,Baton Rouge,Louisiana,CK Associates,Baton Rouge,Louisiana,Gordon A.and Mary Cain Department of Chemical Engineering,Louisiana State University,Baton Rouge,Louisiana,EHS Tech;

    Department of Civil and Environmental Engineering,Louisiana State University,Baton Rouge,Louisiana,CK Associates,Baton Rouge,Louisiana,Gordon A.and Mary Cain Department of Chemical Engineering,Louisiana State University,Baton Rouge,Louisiana,EHS Tech;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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