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Spray Irrigation of Treated Municipal Wastewater as a Potential Source of Atmospheric PBDEs

机译:喷雾灌溉处理过的城市废水作为大气多溴二苯醚的潜在来源

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摘要

Spray irrigation facilities utilizing treated municipal wastewater are a potential source of polybrominated diphenyl ethers (PBDEs) to the atmosphere.PBDEs are used as flame retardants in many household items and have been found in wastewaters and biosolids.Evidence of PBDE release from spray irrigation facilities was discovered during a multiyear project to measure semivolatile organic chemical concentrations in air.Four BDE congeners (47,99,100,and 154) were monitored at three remote/ rural locations in Maryland and Delaware from 2001 to 2003.Average concentrations at two of the sites (BDE-47,10-17 pg/m~3;BDE-99,5.3-7.7 pg/m~3) reflect background levels.Average concentrations at the third location were 5-10 times higher (BDE-47,175 pg/m~3;BDE-99,26 pg/m~3) and were significantly correlated (p < 0.0001) with temperature indicating local source(s).Several spray irrigation facilities are located south and west of the third site,the prevailing wind direction during the spring and summer when most samples were collected.The fine mist released from the irrigation equipment may enhance release to the atmosphere via air-water gas exchange from water droplets.Temporal trends indicate that aerial concentrations of PBDEs in this area are increasing at an exponential rate;the atmospheric doubling times for the different congeners range from 1.1 to 1.7 yrs.
机译:利用处理过的城市废水的喷雾灌溉设施可能是大气中多溴联苯醚(PBDEs)的潜在来源.PBDEs在许多家庭用品中用作阻燃剂,并且已在废水和生物固体中发现.PBDEs从喷雾灌溉设施中释放的证据是在一项为期多年的测量空气中半挥发性有机化学物浓度的项目中被发现.2001年至2003年,在马里兰州和特拉华州的三个偏远/农村地区对四种BDE同源物(47、99、100和154)进行了监测。 BDE-47,10-17 pg / m〜3; BDE-99,5.3-7.7 pg / m〜3)反映了背景水平。第三位置的平均浓度比BDE-47,175 pg / m〜高5-10倍。 3; BDE-99,26 pg / m〜3),并且与表明当地气候的温度显着相关(p <0.0001)。多个喷灌设施位于第三站点的南部和西部,在此期间主要风向春天和夏天从灌溉设备释放的细雾可能通过水滴中的空气-气体交换而增加向大气的释放。时间趋势表明,该地区的多溴二苯醚的空气浓度呈指数增长;大气不同同类物的倍增时间为1.1至1.7年。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第7期|p.2142-2148|共7页
  • 作者单位

    Department of Civil and Environmental Engineering,University of Maryland,College Park,Maryland 20742,Environmental Management and Byproduct Utilization Laboratory,Agricultural Research Service,U.S.Department of Agriculture,Beltsville,Maryland 20705,G;

    Department of Civil and Environmental Engineering,University of Maryland,College Park,Maryland 20742,Environmental Management and Byproduct Utilization Laboratory,Agricultural Research Service,U.S.Department of Agriculture,Beltsville,Maryland 20705,G;

    Department of Civil and Environmental Engineering,University of Maryland,College Park,Maryland 20742,Environmental Management and Byproduct Utilization Laboratory,Agricultural Research Service,U.S.Department of Agriculture,Beltsville,Maryland 20705,G;

    Department of Civil and Environmental Engineering,University of Maryland,College Park,Maryland 20742,Environmental Management and Byproduct Utilization Laboratory,Agricultural Research Service,U.S.Department of Agriculture,Beltsville,Maryland 20705,G;

    Department of Civil and Environmental Engineering,University of Maryland,College Park,Maryland 20742,Environmental Management and Byproduct Utilization Laboratory,Agricultural Research Service,U.S.Department of Agriculture,Beltsville,Maryland 20705,G;

  • 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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