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Lead Isotopic Composition of Fly Ash and Flue Gas Residues from Municipal Solid Waste Combustors in France: Implications for Atmospheric Lead Source Tracing.

机译:来自法国城市固体废物燃烧器的粉煤灰和烟气残余物中的铅同位素组成:对大气铅源追踪的意义。

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摘要

Fly ash and flue gas residues from eight municipal solid waste combustors (MSWC) in France (1992-93 and 1998/2002) were analyzed for their Pb isotopic composition. Fly ashes are more representative of solid residual particles, whereas flue gas residues reflect mostly the composition of gas phases. Both sample types contain hundreds to thousands of micrograms of metals per gram. Leaching experiments showed that metals are present in condensed phases, probably as sulfates and chlorides, and suggest that Cd, Pb, and Zn are highly fractionated from one another during volatilization/condensation processes occurring during combustion. Although all the samples analyzed define a fairly restricted range in Pb isotopic compositions (206Pb/207Pb = 1.148-1.158 and 208Pb/206Pb = 2.101-2.114) compared to other environmental samples, some MSWC produce materials having distinct isotopic compositions, whereas others display very similar ones. Isotopic heterogeneity is also measured between samples from a single MSWC. This is interpreted as resulting from the heterogeneity of the waste source materials. The range of Pb isotopic composition of incinerator materials form a well-defined linear array in the 208Pb/206Pb versus 206Pb/207Pb diagram. This array is compatible with the previously reported European standard pollution (ESP) line and most probably represent the average lead isotopic composition of industrial atmospheric emissions in France, with the following ratios: 206Pb/207Pb = 1.154 ± 0.003 and 208Pb/206Pb = 2.107 ± 0.003 (1).
机译:分析了法国(1992-93年和1998/2002年)八个城市固体废物燃烧器(MSWC)中的粉煤灰和烟道气残留物的Pb同位素组成。粉煤灰更能代表固体残留颗粒,而烟道气残留物大部分反映了气相的组成。两种样品类型每克都包含数百至数千微克的金属。浸出实验表明,金属以冷凝态存在,可能以硫酸盐和氯化物形式存在,这表明在燃烧过程中发生的挥发/冷凝过程中,Cd,Pb和Zn彼此高度分馏。尽管与其他环境样品相比,所分析的所有样品在Pb同位素组成上均限定了相当有限的范围(206Pb / 207Pb = 1.148-1.158和208Pb / 206Pb = 2.101-2.114),但某些MSWC产生的材料具有不同的同位素组成,而其他MSWC产生的同位素非常类似的。还从单个MSWC的样品之间测量了同位素异质性。这被解释为是由废物源材料的异质性引起的。 208Pb / 206Pb对206Pb / 207Pb图中,焚化炉材料的Pb同位素组成范围形成了明确定义的线性阵列。该阵列与先前报道的欧洲标准污染(ESP)线兼容,并且很可能代表了法国工业大气排放的平均铅同位素组成,其比率如下:206Pb / 207Pb = 1.154±0.003和208Pb / 206Pb = 2.107± 0.003(1)。

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