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采用补充实验技术在水泥熟料窑的实际运行条件下对可凝结颗粒物排放进行特性描述。

Characterization of emissions of condensable particulate matter under real operation conditions in cement clinker kilns using complementary experimental techniques.

机构信息

Chemical and Environmental Engineering Department, School of Engineering, University of Seville, C/Camino de los Descubrimientos s/n, 41092 Sevilla, Spain.

Department of Chemical and Process Engineering, University of Surrey, Guildford GU2 7XH, United Kingdom.

出版信息

Sci Total Environ. 2021 Sep 10;786:147472. doi: 10.1016/j.scitotenv.2021.147472. Epub 2021 May 5.

Abstract

Historically, the emission of particles from clinker kiln stacks has been one of the main environmental concerns in cement manufacturing processes. Up to now, environmental regulations have only focused on determining and controlling filterable particulate matter (FPM) in industrial emission sources. However, in recent years a growing interest in determining and analysing condensable particulate matter (CPM) has been evidenced due to the significant and established contribution of CPM to total emissions of particulate matter (PM). In this work, total PM (FPM + CPM) emissions from a clinker kiln in a cement manufacturing process have been characterized. A series of tests were performed to simultaneously collect FPM and CPM using a sampling train patented by University of Seville. The results showed very low level of emissions compared to regulatory limits. The average FPM and CPM concentrations obtained in the kiln were in the same order of magnitude, at 3.4 mg/Nm and 2.8 mg/Nm, respectively. The CPM analysed was predominantly inorganic and represented 46% of total PM emissions. In addition, a microscopic morphological analysis was carried out on the samples and confirmed the presence of CPM with a size of less than 2 μm, as well as establishing the principal constituent elements of the same. The main element components were Al, Ca, Fe, Si, C and O. Compounds such as CaCO, alite, ferrite and dolomite were detected with analytical characterization techniques, such as infrared spectroscopy (FTIR) analysis and X-ray diffraction (XRD), providing a better understanding of the sources of contamination within CPM.

摘要

从历史上看,熟料窑烟囱排放的颗粒物一直是水泥制造过程中的主要环境问题之一。到目前为止,环境法规仅侧重于确定和控制工业排放源中的可过滤颗粒物(FPM)。然而,近年来,由于 CPM 对颗粒物(PM)总排放量的显著和已建立的贡献,对确定和分析可冷凝颗粒物(CPM)的兴趣日益增加。在这项工作中,对水泥制造过程中熟料窑的总 PM(FPM+CPM)排放进行了表征。进行了一系列测试,使用塞维利亚大学专利的采样器同时收集 FPM 和 CPM。结果表明,与法规限制相比,排放量非常低。在窑中获得的 FPM 和 CPM 平均浓度处于同一数量级,分别为 3.4mg/Nm 和 2.8mg/Nm。分析的 CPM 主要是无机的,占总 PM 排放量的 46%。此外,对样品进行了微观形态分析,证实了存在小于 2μm 的 CPM,并确定了相同的主要成分元素。主要元素成分是 Al、Ca、Fe、Si、C 和 O。通过分析表征技术,如红外光谱(FTIR)分析和 X 射线衍射(XRD),检测到了 CaCO、贝利特、铁酸盐和白云石等化合物,从而更好地了解了 CPM 中污染物质的来源。

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