首页> 外文期刊>地球科学和环境保护期刊(英文) >Spatial Analysis of Heavy Metal Emissions in Residential, Commercial and Industrial Areas Adjacent to a Scrap Metal Shredder in Winnipeg, Canada
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Spatial Analysis of Heavy Metal Emissions in Residential, Commercial and Industrial Areas Adjacent to a Scrap Metal Shredder in Winnipeg, Canada

机译:加拿大温尼伯的废旧金属粉碎机附近住宅,商业和工业区重金属排放的空间分析

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A spatial analysis of air pollution in the South St. Boniface (SSB) and Mission Industrial Areas (MIA) of Winnipeg, in Manitoba, Canada, was conducted by mapping the results for 23 composite snow samples. Heavy metals were analyzed in the snow samples by Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Higher concentrations closer to the shredder were significant for every metal, but, not for arsenic, in regression modeling R squared (0.585 for Cd, 0.462 for Pb, 0.423 for Zn, 0.343 for Cr, 0.343 for Ni, 0.244 for Mn, and 0.069 for As). Heavy metal concentrations were significantly higher in the industrial zone, with the next highest being the roadside zone, then the commercial zone and finally the residential/parkland zone, at p-value < 0.01 statistical significance levels according to the non-parametric Kruskal-Wallis H- test. The metals concentrations mapped on Arc-GIS with ArcMap 10.6 using kriging interpolation, display that all toxic metal concentrations, but particularly Pb, Ni, Zn, Cr, and Hg, are highest proximate to the scrap metal shredder. Furthermore, pollution indices, specifically contamination factor (CF), degree of contamination (DOC), and pollution load index (PLI), were undertaken registering high contamination. The CF registered high for lead, zinc, and nickel in all areas compared to the background levels, but the highest levels were nearby to the scrap metal shredder. The DOC values showed that the industrial contamination is nearly five times greater than that for the road or commercial areas and almost 20 times more contaminated compared to the residential/parkland. With PLI levels above 1 considered contaminated, the shredder (4.1), roadside (2.2), and commercial areas (1.9) were polluted. These findings point to the shredder as the cause of present-day contamination for all areas, including residential/parkland, traffic, and commercial areas. High levels of toxic metal air pollution emissions warrant further study of human exposure and health risk posed by multiple sources from the air, water, and land. Enforcement and enclosure of the outdoor shredder should be considered to reduce heavy metal exposure to the public.
机译:通过绘制23个复合雪样品的结果,进行了加拿大Manitoba南方博博(SSB)和Winnipeg的Missitial Cairdion(MIA)的空气污染空间分析。通过电感耦合等离子体质谱(ICP-MS)在雪样品中分析重金属。对于每种金属更接近粉碎机的较高浓度对于每种金属而言,但不适用于砷,在回归建模R平方(CD 0.585,对于Pb的0.462,Zn 0.423,对于CR 0.343,对于Ni 0.343,Mn为0.244,0.069对于作为)。工业区的重金属浓度明显高,下一个最高的是路边区,然后是商业区,最后是住宅/帕兰区,根据非参数kruskal-wallis的p值<0.01统计显着性。 H-测试。使用Kriging插值的Arc-GIS映射到Arc-GIS上的金属浓度,显示所有有毒的金属浓度,但特别是Pb,Ni,Zn,Cr和Hg,靠近废金属粉碎机。此外,污染指数,特别是污染因子(CF),污染程度(DOC)和污染负荷指数(PLI)进行了注册。与背景水平相比,所有区域的铅,锌和镍高,锌和镍注册高,但在废金属粉碎机附近最高水平。 DOC值表明,工业污染比路或商业区的工业污染近五倍,而与住宅/公园相比,污染的近20倍。对于污染的PLI水平,污染粉碎机(4.1),路边(2.2)和商业区(1.9)被污染。这些发现指出了粉碎机作为所有领域的当今污染的原因,包括住宅/公园,交通和商业区。高水平的有毒金属空气污染排放是载体进一步研究人的暴露和空气,水和土地的多种来源带来的健康风险。应考虑户外碎纸机的执法和封闭,以减少对公众的重金属风险。

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