首页> 外文OA文献 >Ultrafine particle and fine trace metal (As, Cd, Cu, Pb and Zn) pollution episodes induced by industrial emissions in Huelva, SW Spain
【2h】

Ultrafine particle and fine trace metal (As, Cd, Cu, Pb and Zn) pollution episodes induced by industrial emissions in Huelva, SW Spain

机译:西班牙韦尔瓦的工业排放引起的超细颗粒和细微痕量金属(as,Cd,Cu,pb和Zn)污染事件

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Urban air quality impairment by ultrafine particles has become a matter of concern due to the adverse effects on human health. Most of the studies of ultrafine particles in urban air quality have focused on vehicle exhaust emissions. We studied how industrial emissions contribute to ultrafine particle concentrations in downwind urban ambient air. This research is based on experimental data collected in the ambient air of the industrial city of Huelva (SW Spain) over April 2008–December 2009 period (particle number, gaseous pollutants and black carbon concentrations and levels and chemical composition of PM10 and PM2.5 with daily and hourly resolution). This city is affected by emissions from the second largest Cu-smelter in Europe, phosphoric acid and fertilizer production plants and an oil refinery and petrochemical plant. Industrial emissions are the main cause of ultrafine particle episodes. When vehicle exhaust emissions are the main source, ultrafine particles typically show (24-h mean) concentrations within the range 14,700–5000 cm−3 (50th–1st), with 60% of these linked to this source and 30% to industrial emissions. In contrast, when daily mean levels of N are within the range 50,000–25,500 cm−3 (100th–70th), industrial and vehicle exhaust emissions accounted for 49 and 30%, respectively. High concentrations of toxic trace metals (As, Cu, Cd, Zn and Pb) were recorded when the study city suffered fumigations of the Cu-smelter plumes (e.g. 10–25 ng m−3 As, 1–2 ng m−3 Cd and >105 cm−3 of ultrafine particles). Because of these industrial emissions, ultrafine particle concentrations during daylight are about two times higher than those observed in other European cities. Recently, ultrafine particle emissions in vehicle exhausts have been subject to limit values in a recent stage of the EURO standards. Industrial emissions should also be considered.and 30% to industrial emissions. In contrast, when daily mean levels of N are within the range 50,000e25,500 cm 3 (100the70th), industrial and vehicle exhaust emissions accounted for 49 and 30%,respectively. High concentrations of toxic trace metals (As, Cu, Cd, Zn and Pb) were recorded when thestudy city suffered fumigations of the Cu-smelter plumes (e.g. 10e25 ng m 3 As, 1e2 ng m 3 Cd and>105 cm 3 of ultrafine particles). Because of these industrial emissions, ultrafine particle concentrationsduring daylight are about two times higher than those observed in other European cities. Recently,ultrafine particle emissions in vehicle exhausts have been subject to limit values in a recent stage of theEURO standards. Industrial emissions should also be considered.
机译:由于对人体健康的不利影响,超细颗粒对城市空气质量的损害已成为人们关注的问题。关于城市空气质量中超细颗粒的大多数研究都集中在汽车尾气排放上。我们研究了工业排放物如何促进顺风城市环境空气中的超细颗粒浓度。这项研究基于2008年4月至2009年12月期间在韦尔瓦(西班牙西南部)工业城市的环境空气中收集的实验数据(颗粒数量,气态污染物和黑碳浓度以及PM10和PM2.5的含量以及化学成分)每日和每小时的解析度)。该城市受到欧洲第二大铜冶炼厂,磷酸和肥料生产厂以及炼油厂和石化厂排放的影响。工业排放是超细颗粒事件的主要原因。当汽车尾气排放为主要排放源时,超细颗粒物通常表现出(24小时平均)浓度在14,700–5000 cm−3(第50–1st)范围内,其中60%与该排放源相关,而30%与工业排放相关。相反,当日平均N水平在50,000–25,500 cm-3(第100至70)之间时,工业和汽车尾气排放分别占49%和30%。当研究城市遭受铜冶炼厂烟气熏蒸(例如10-25 ng m-3 As,1-2 ng m-3 Cd)时,记录到高浓度的有毒微量金属(As,Cu,Cd,Zn和Pb)。和> 105 cm-3的超细颗粒)。由于这些工业排放,白天的超细颗粒浓度约为欧洲其他城市观察到的浓度的两倍。近来,在欧洲标准的最近阶段,车辆排气中的超细颗粒物排放已达到极限值。还应考虑工业排放,占工业排放的30%。相反,当日平均N水平在50,000e25,500 cm 3(100the70th)的范围内时,工业和汽车尾气排放分别占49%和30%。当研究城市遭受铜冶炼厂烟气熏蒸(例如10e25 ng m 3 As,1e2 ng m 3 Cd和> 105 cm 3的超细粉)时,记录到高浓度的有毒微量金属(As,Cu,Cd,Zn和Pb)。粒子)。由于这些工业排放,白天的超细颗粒浓度约为欧洲其他城市的两倍。近来,在EURO标准的最近阶段中,车辆排气中的超细颗粒物排放已达到极限值。还应考虑工业排放。

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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