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Aluminium and iron air pollution near an iron casting and aluminium foundry in Turin district (Italy)

机译:意大利都灵区的铸铁和铝铸造厂附近的铝和铁空气污染

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This work reports the results of an environmental survey carried out in an industrial area in the Province of Turin: its main aim is to assess the levels of iron and aluminium in the outside air during the period from July to September to assess the influence of industrial activity (a cast-iron and aluminium foundry) which is interrupted during the month of August, on the level of metals present in the air. Conducting the analysis during this period of time made it possible to avoid the confounding effect of pollution due to domestic central heating. The measurements were taken from nine areas at different distances from the foundry in the area and according to the direction of the prevailing winds, as deduced from the historical data. The results of this survey show a statistically significant difference in iron and aluminium levels in the outside air in the geographic areas between the two main periods examined: during August (no foundry activity) v/s July-September (foundry activity). The values recorded are: Aluminium 0.4 +/- 0.45 mu g/m(3) v/s 1.12 +/- 1.29 mu g/m(3) (p < 0.0001); Iron 0.95 +/- 0.56 mu g/m(3) v/s 1.6 +/- 1.0 mu g/m(3) (p < 0.0001). There were no statistically significant differences between the nine sampling points from the point of view of the sampling sites, climate conditions and wind directions. We found no correlation with car traffic, in terms of the number of vehicles, and metals. The values of iron tended to be higher in the areas farther away from the foundry site in the areas located along the path of the prevailing winds. (c) 2007 Elsevier Inc. All rights reserved.
机译:这项工作报告了在都灵省工业区进行的环境调查的结果:其主要目的是评估7月至9月期间外部空气中的铁和铝含量,以评估工业影响空气中金属含量的活动在8月份中断(铸铁和铝铸造厂)。在此期间进行分析可以避免由于家庭集中供热而造成的污染混杂影响。根据从历史数据推论得出的测量结果,该测量是在距铸造厂不同距离的9个区域中进行的,并根据盛行风的方向进行。这项调查的结果表明,在所考察的两个主要时期之间,地理区域中外部空气中的铁和铝含量具有统计学上的显着差异:8月(无铸造活动)v / s 7月至9月(铸造活动)。记录的值为:铝0.4 +/- 0.45μg / m(3)v / s 1.12 +/- 1.29μg / m(3)(p <0.0001);铁0.95 +/- 0.56μg / m(3)v / s 1.6 +/- 1.0μg / m(3)(p <0.0001)。从采样地点,气候条件和风向的角度来看,这9个采样点之间在统计上没有显着差异。我们发现,就车辆数量和金属而言,与汽车交通量没有关联。在沿盛行风的路径远离铸造现场的区域中,铁的含量往往较高。 (c)2007 Elsevier Inc.保留所有权利。

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