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使用静态箱和不同风速值的风洞对机械生物处理堆中的气味浓度进行验证。

Validation of odor concentration from mechanical-biological treatment piles using static chamber and wind tunnel with different wind speed values.

作者信息

Szyłak-Szydłowski Mirosław

机构信息

a Faculty of Building Services, Hydro and Environmental Engineering , Warsaw University of Technology , Warsaw , Poland.

出版信息

J Air Waste Manag Assoc. 2017 Sep;67(9):1046-1054. doi: 10.1080/10962247.2017.1338632. Epub 2017 Jun 14.

Abstract

UNLABELLED

The basic principle of odor sampling from surface sources is based primarily on the amount of air obtained from a specific area of the ground, which acts as a source of malodorous compounds. Wind tunnels and flux chambers are often the only available, direct method of evaluating the odor fluxes from small area sources. There are currently no widely accepted chamber-based methods; thus, there is still a need for standardization of these methods to ensure accuracy and comparability. Previous research has established that there is a significant difference between the odor concentration values obtained using the Lindvall chamber and those obtained by a dynamic flow chamber. Thus, the present study compares sampling methods using a streaming chamber modeled on the Lindvall cover (using different wind speeds), a static chamber, and a direct sampling method without any screens. The volumes of chambers in the current work were similar, ~0.08 m. This study was conducted at the mechanical-biological treatment plant in Poland. Samples were taken from a pile covered by the membrane. Measured odor concentration values were between 2 and 150 ou/m. Results of the study demonstrated that both chambers can be used interchangeably in the following conditions: odor concentration is below 60 ou/m, wind speed inside the Lindvall chamber is below 0.2 m/sec, and a flow value is below 0.011 m/sec. Increasing the wind speed above the aforementioned value results in significant differences in the results obtained between those methods. In all experiments, the results of the concentration of odor in the samples using the static chamber were consistently higher than those from the samples measured in the Lindvall chamber. Lastly, the results of experiments were employed to determine a model function of the relationship between wind speed and odor concentration values.

IMPLICATIONS

Several researchers wrote that there are no widely accepted chamber-based methods. Also, there is still a need for standardization to ensure full comparability of these methods. The present study compared the existing methods to improve the standardization of area source sampling. The practical usefulness of the results was proving that both examined chambers can be used interchangeably. Statistically similar results were achieved while odor concentration was below 60 ou/m and wind speed inside the Lindvall chamber was below 0.2 m/sec. Increasing wind speed over these values results in differences between these methods. A model function of relationship between wind speed and odor concentration value was determined.

摘要

未标注

从地表源进行气味采样的基本原理主要基于从地面特定区域获取的空气量,该区域是恶臭化合物的来源。风洞和通量室通常是评估小面积源气味通量的唯一可用直接方法。目前尚无广泛接受的基于室的方法;因此,仍需要对这些方法进行标准化,以确保准确性和可比性。先前的研究表明,使用林德瓦尔室获得的气味浓度值与动态流动室获得的气味浓度值之间存在显著差异。因此,本研究比较了使用基于林德瓦尔罩模型的流动室(使用不同风速)、静态室和无任何筛网的直接采样方法的采样方法。当前工作中室的体积相似,约为0.08立方米。本研究在波兰的机械生物处理厂进行。样本取自覆盖有膜的堆体。测得的气味浓度值在2至150 ou/m之间。研究结果表明,在以下条件下,两种室可以互换使用:气味浓度低于60 ou/m,林德瓦尔室内风速低于0.2米/秒,流量值低于0.011米/秒。将风速提高到上述值以上会导致这些方法获得的结果出现显著差异。在所有实验中,使用静态室的样本中气味浓度结果始终高于在林德瓦尔室中测量的样本结果。最后,利用实验结果确定风速与气味浓度值之间关系的模型函数。

启示

几位研究人员写道,尚无广泛接受的基于室的方法。此外,仍需要进行标准化以确保这些方法的完全可比性。本研究比较了现有方法,以改进面源采样的标准化。结果的实际实用性证明,两种测试室可以互换使用。当气味浓度低于60 ou/m且林德瓦尔室内风速低于0.2米/秒时,获得了统计上相似的结果。风速超过这些值会导致这些方法之间出现差异。确定了风速与气味浓度值之间关系的模型函数。

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