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Trace Element Speciation under Coal Fired Power Station Conditions

机译:煤发电站条件下的痕量元素形态

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Coal combustion from power stations is one of the largest contributors of potentially toxic trace elements to the environment. Some trace elements may be released in range of valencies, often with varying toxicity and bioavailability. Hence, determination of trace element speciation in coals and their combustion products is important for conducting comprehensive risk assessments of the emissions from coal-fired power stations. This study focuses on speciation of selected trace elements, As, Cr, and Se, in coal combustion products and Hg in flue gas, which were sampled at one Australian power station. Results showed that As, Cr and Se are all present in a range of valency states in coal. Concentrations of As and Se in the bottom ash as well as the more toxic hexavalent chromium were less than the detection limits. Fly ash contained the more toxic As{sup}(3+) form at 10% of total arsenic, while selenium was mainly found in Se{sup}(4+) form. Hexavalent chromium (Cr{sup}(6+)) in fly ash was 2.7% of the total fly ash chromium. Mercury speciation in flue gas was determined using the Ontario Hydro sampling train and analysis technique. Approximately 58% of the total mercury in flue gas was released in the elemental form (Hg{sup}0), which has the highest residence time in the environment among all mercury species.
机译:来自发电站的煤炭燃烧是环境含有毒性毒性的最大贡献者之一。一些微量元素可以在价值范围内释放,通常具有不同的毒性和生物利用度。因此,测定煤中的痕量元素形态及其燃烧产物对于对燃煤发电站进行综合风险评估至关重要。本研究侧重于燃料燃料产品中所选微量元素,AS,Cr和Se的形态,烟气中的燃煤产品和Hg在一座澳大利亚电站上采样。结果表明,AS,Cr和Se全部存在于煤中的一系列贵族态中。底部灰分中的AS和Se的浓度以及较大的六价铬的浓度小于检测限。粉煤灰含有{Sup}(3+)形式的毒性越多,砷含量越多,而硒主要发现于SE {sup}(4 +)形式中。粉煤灰中的六价铬(Cr {Sup}(6+))是粉煤灰总磷铬的2.7%。使用安大略省水电采样列车和分析技术测定烟气中的汞形态。在元素形式(HG {Sup} 0)中释放了大约58%的烟气中的汞,其在所有汞种类中的环境中具有最高的停留时间。

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