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Identifying Iron Foundries as a New Source of Unintentional Polychlorinated Naphthalenes and Characterizing Their Emission Profiles

机译:鉴定铁铸造厂为无意多氯萘的新来源并表征其排放特征

摘要

Iron foundries have been identified as dioxin sources in previous field investigations. Similar formation mechanisms between dioxins and unintentional polychlorinated naphthalenes (PCNs) have led us to speculate that iron foundries are also potential PCN sources. In this study, PCNs in stack gas and fly ash samples representing atmospheric and residue emissions from 13 typical iron foundry plants were analyzed. The average emission factor of Sigma(2-8)PCNs to residue was calculated to be 61 mu g t(-1), with a range of 10-107 mu g t(-1). The emission factors of Sigma(2-8)PCNs to air in two case plants were 267 and 1472 mu g t(-1). The derived emission factors might be useful for estimating annual emissions and understanding the contribution of PCNs from iron foundries. The possible formation mechanisms of PCNs, based on the PCN profiles, are discussed. Successive reductions in the abundance of homologues were observed to occur with the increase in chlorine substituted numbers. Abundances of congeners containing more beta-position chlorines in the naphthalene skeleton were much higher than those of congeners containing more a-position chlorines for penta-, hexa-, and hepta- homologues, which suggests that the beta-positions are favored for chlorination. Potential chlorination pathways from tetra- to octa- homologues are proposed.
机译:在先前的现场调查中,铁铸造厂已被确定为二恶英来源。二恶英和非故意的多氯萘(PCN)之间的相似形成机理使我们推测铁铸造厂也是潜在的PCN来源。在这项研究中,分析了烟气和粉煤灰样品中的PCN,它们代表了13家典型的铸造厂的大气和残渣排放。计算得出的Sigma(2-8)PCNs残留的平均排放因子为61μg t(-1),范围为10-107μg t(-1)。在两个案例工厂中,Sigma(2-8)PCNs向空气的排放因子分别为267和1472μg t(-1)。得出的排放因子可能有助于估算年排放量,并了解铸造厂的PCN的贡献。讨论了基于PCN配置文件的PCN可能的形成机制。随着氯取代数的增加,同系物的丰度逐渐降低。在萘骨架中,含更多β-位氯的同类物的丰度远高于含五-,六-和七-同源物的α-位氯的同类物,这表明β-位更适合氯化。提出了从四-到八-同系物的潜在氯化途径。

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