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Olfactometric approach for the evaluation of citizens' exposure to industrial emissions in the city of Terni, Italy

机译:嗅觉计量学方法,用于评估意大利特尔尼市市民的工业排放

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摘要

Since several years odour nuisance is a serious environmental concern in the city of Terni, whose citizens are repeatedly lamenting the presence of malodours. This paper describes the olfactometric approach adopted for assessing the odour impact on the city of Terni, caused by the co-presence of three important industrial poles: the steel industry pole, the chemical pole and a third industrial pole, comprising different activities for the treatment of wastewaters and solid waste. The combination of analyses by dynamic olfactometry and dispersion modelling allowed the evaluation of the citizens' exposure to the industrial odours, resulting in both the quantification of emissions and the assessment of their impact on the territory. The overall odour emissions were estimated to be equal to 218,000 ou_E s~(-1): 51% from the steel industry pole, 29% from the chemical pole and 20% from the other plants, respectively. The simulation of the emission dispersion shows that the odour impact relevant to all three studied industrial poles is considerable, actually investing almost the whole city of Terni. The study results also enabled the identification of the most problematic odour sources, which turned out to be the primary emissions from the furnace for the steel industry pole, Treofan and the wastewater treatment plant for the chemical pole and the municipal wastewater treatment plant and the pulper incinerator as far as the other plants are concerned.
机译:几年来,在特尔尼市,令人讨厌的气味一直是严重的环境问题。特尔尼市的居民屡屡感叹恶臭的存在。本文介绍了嗅觉测量方法,该方法用于评估气味对特尔尼市的影响,这是由三个重要的工业极共同存在:钢铁工业极,化学极和第三工业极,包括不同的处理活动废水和固体废物。通过动态嗅觉测定法和分散模型的分析相结合,可以评估市民暴露于工业气味的程度,从而可以量化排放量,并评估其对领土的影响。据估计,总的气味排放量等于218,000 ou_E s〜(-1):钢铁行业极占51%,化学极占29%,其他工厂占20%。排放物扩散的模拟表明,与研究的所有三个工业极有关的气味影响相当大,实际上投资了整个特尔尼市。研究结果还能够识别出最有问题的臭味源,这些臭味源被证明是钢铁行业立杆炉,Treofan和化工厂立杆废水处理厂以及市政废水处理厂和碎浆机的主要排放物。就其他工厂而言,焚化炉。

著录项

  • 来源
    《The Science of the Total Environment》 |2011年第3期|p.595-603|共9页
  • 作者单位

    Politecnico di Milano, Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", P.za Leonardo Da Vinci, 32-20133 Milano, Italy;

    Politecnico di Milano, Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", P.za Leonardo Da Vinci, 32-20133 Milano, Italy;

    Politecnico di Milano, Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", P.za Leonardo Da Vinci, 32-20133 Milano, Italy;

    Politecnico di Milano, Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", P.za Leonardo Da Vinci, 32-20133 Milano, Italy;

    ARPA Umbria, Department of Terni, Via Federico Cesi, 24-05100 Temi, Italy;

    ARPA Umbria, Department of Terni, Via Federico Cesi, 24-05100 Temi, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dynamic olfactometry; odour concentration; odour emission rate; odour dispersion modelling; CALPUFF;

    机译:动态嗅觉法气味浓度气味排放率;气味扩散模型;卡普夫;
  • 入库时间 2022-08-17 13:55:09

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