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首页> 外文期刊>Journal of environmental monitoring: JEM >Chemical speciation and sequential extraction of Mn in workroom aerosols: analytical methodology and results from a field study in Mn alloy plants
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Chemical speciation and sequential extraction of Mn in workroom aerosols: analytical methodology and results from a field study in Mn alloy plants

机译:实验室气溶胶中锰的化学形态分析和顺序萃取:分析方法和锰合金工厂现场研究的结果

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摘要

Workers in the Mn alloy producing industry are exposed to aerosols containing a variety of Mn compounds (MnO, MnO_2, Mn_2O_3, Mn_3O_4, FeMn and SiMn). This paper reports a novel four-step chemical speciation/fractionation procedure developed for characterisation of workroom aerosols collected in Mn alloy producing plants. The following components of the aerosol have been quantified: "water soluble" Mn dissolved in 0.01 M ammonium acetate; Mn~0 and Mn~(2+) dissolved in 25% acetic acid; Mn~(3+) and Mn~(4+) dissolved in 0.5% hydroxylamine hydrochoride in 25% acetic acid; and "insoluble" Mn digested in aqua regia and hydrofluoric acid. Dissolution of pure Mn compounds with well-defined stoichometries were essentially complete in the respective leaching steps with detectable amounts of < 1% in others. Recoveries of a mixed quality control sample were also acceptable in the range 92-97% for the different oxidation states. The levels measured in the inhalable and respirable fractions in three Mn alloy producing plants were approximately 300 and 35 μg m~(-3) of total Mn, respectively. The most obvious feature of the speciation results is that none of the work areas is characterised by a single Mn contaminant. The predominant oxidation states in the inhalable aerosol fraction are Mn~0 and Mn~(2+) independent of job functions/departments. The occurrence of insoluble Mn compounds in both the inhalable and respirable aerosol fractions is significantly higher during production of SiMn.
机译:锰合金生产行业的工人暴露于含有各种Mn化合物(MnO,MnO_2,Mn_2O_3,Mn_3O_4,FeMn和SiMn)的气溶胶中。本文报道了一种新颖的四步化学形态/分馏程序,该程序用于表征锰合金生产厂中收集的工作室气溶胶。气溶胶的以下成分已被定量:溶于0.01 M醋酸铵的“水溶性” Mn; Mn〜0和Mn〜(2+)溶于25%乙酸; Mn〜(3+)和Mn〜(4+)溶于溶于25%乙酸的0.5%羟胺盐酸盐中;在王水和氢氟酸中消化的“不溶”锰。在明确的浸出步骤中,纯Mn化合物的溶解基本已经完成,在其他浸出步骤中可检测量<1%。对于不同的氧化态,混合质量控制样品的回收率在92-97%的范围内也是可以接受的。在三个生产锰合金的工厂中,可吸入部分和可吸入部分的含量分别约为总Mn的300和35μgm〜(-3)。形态结果的最明显特征是,没有任何工作区域具有单一Mn污染物的特征。可吸入的气溶胶部分中主要的氧化态为Mn〜0和Mn〜(2+),与工作功能/部门无关。在生产SiMn的过程中,可吸入和可吸入的气溶胶组分中不溶性Mn化合物的发生率明显更高。

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