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燃煤电厂中砷、汞和硒的烟气采样及其在煤炭燃烧过程中的归宿。

As, Hg, and Se flue gas sampling in a coal-fired power plant and their fate during coal combustion.

作者信息

Otero-Rey José R, López-Vilariño José M, Moreda-Piñeiro Jorge, Alonso-Rodríguez Elia, Muniategui-Lorenzo Soledad, López-Mahía Purificación, Prada-Rodríguez Darío

机构信息

Department of Analytical Chemistry, Faculty of Sciences, University of A Coruña, Campus da Zapateira s/n, E-15071 A Coruña, Spain.

出版信息

Environ Sci Technol. 2003 Nov 15;37(22):5262-7. doi: 10.1021/es020949g.

Abstract

As, Hg, and Se are the most volatile elements in the flue gas from a coal-fired power plant. Significant amounts of these elements cause an undesired direct gaseous emission, which leads to a serious environmental health risk. The main focus of this study is to evaluate the possibility of simultaneous sampling of these volatile elements using an accurate official method for Hg (the most volatile element). A study of As, Hg, and Se emissions from a 1400 MW coal-fired power plant equipped with electrostatic precipitators (ESPs) was carried out for the combustion of a mixture of two types of coal. Simultaneous sampling of coal, bottom ash, fly ash, flue gas, and particles associated with the gas phase has been performed. Flue gas has been sampled by the Ontario Hydro Method Sampling Train, an ASTM method for Hg speciation. This sampling method was tested for As and Se sampling. As and Se determinations have been performed by HG-AAS, and Hg has been determined by CV-AAS. The results were used to examine the following: overall mass balances, relative distribution of these elements in the coal-fired power plant; As, Hg, and Se concentrations in coal and combustion residues; and predominant oxidation state for Hg in flue gas. The mass balances obtained for As, Hg, and Se were satisfactory in all cases; nevertheless, relative enrichment values in fly ash for As and Se were low; therefore, we concluded that As sampling in flue gas can be conducted by application of the Ontario Hydro Method; nevertheless Se released in the gas phase is not completely collected by this sampling train. Application of this sampling method allowed for performance of Hg speciation. The results indicated that Hg(II) was the predominant species in flue gas. It has also been proved that 24%, more than 99.8%, and 90% for As, Hg, and Se in the stack emissions, respectively, were in the gaseous phase.

摘要

砷、汞和硒是燃煤电厂烟气中最易挥发的元素。这些元素的大量存在会导致有害的直接气体排放,从而带来严重的环境健康风险。本研究的主要重点是评估使用准确的汞(最易挥发元素)官方方法同时采集这些挥发性元素的可能性。对一座配备静电除尘器(ESP)的1400兆瓦燃煤电厂燃烧两种煤的混合物时的砷、汞和硒排放情况进行了研究。已对煤、底灰、飞灰、烟气以及与气相相关的颗粒物进行了同步采样。烟气通过安大略水电方法采样系统进行采样,这是一种用于汞形态分析的ASTM方法。该采样方法针对砷和硒采样进行了测试。砷和硒的测定采用氢化物发生-原子吸收光谱法(HG-AAS),汞的测定采用冷蒸气原子吸收光谱法(CV-AAS)。结果用于检验以下方面:总体质量平衡、这些元素在燃煤电厂中的相对分布;煤和燃烧残渣中砷、汞和硒的浓度;以及烟气中汞的主要氧化态。在所有情况下,砷、汞和硒的质量平衡结果都令人满意;然而,飞灰中砷和硒的相对富集值较低;因此,我们得出结论,烟气中的砷采样可通过应用安大略水电方法进行;不过,该采样系统并未完全收集气相中释放的硒。应用这种采样方法能够进行汞形态分析。结果表明,汞(II)是烟气中的主要形态。还证明了烟囱排放物中砷、汞和硒分别有24%、超过99.8%和90%处于气相。

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