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首页> 外文期刊>EPJ Web of Conferences >Lab-scale evaluation of possible mercury speciation in flue gas and mercury emission from combustion of pulverised solid fuels
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Lab-scale evaluation of possible mercury speciation in flue gas and mercury emission from combustion of pulverised solid fuels

机译:实验室规模评估粉状固体燃料燃烧时烟道气中可能形成的汞和汞排放

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摘要

In this work a new lab-scale method dedicated to the evaluation of both concentration and oxidation level of mercury in flue gases from pulverised fuel fired boiler was proposed. To detect the abovementioned parameters, 2 main steps need to be evaluated. Firstly, a calorimeter bomb is utilised - by a proper implementation of mass balance of mercury within substrates and products, the quantity of oxidised mercury in gaseous products can be evaluated. Then, to simulate solid fuel fired power unit and to calculate mercury concentrations in flue gases, one of the stoichiometric mathematical models of combustion process must be applied. Early validation of the method showed considerable differences between solid fuels in mercury oxidation efficiencies and concentrations in flue gasses. Four examined fuels (lignite, hard coal and 2 types of solid biomass) was investigated. Calculated mercury concentrations in raw flue gas (>700°C) varied between 4 and 75 μg/m~(3)_(ref). The lowest quantity of oxidised forms ofHg in flue gases were identified in the case of investigated lignite (27% of total Hg), while significantly higher – for selected hard coal (72%) and one type of biomass (with high chlorine concentration; up to 98%).
机译:在这项工作中,提出了一种新的实验室规模的方法,该方法专门用于评估粉状燃料锅炉的烟道气中汞的浓度和氧化水平。为了检测上述参数,需要评估两个主要步骤。首先,使用量热计炸弹-通过适当实现基质和产品中汞的质量平衡,可以评估气态产品中氧化汞的量。然后,为了模拟固体燃料动力装置并计算烟气中的汞浓度,必须采用燃烧过程的化学计量数学模型之一。该方法的早期验证表明,固体燃料在汞氧化效率和烟气中的浓度之间存在很大差异。研究了四种燃料(褐煤,硬煤和两种固体生物质)。计算得出的原始烟气(> 700°C)中的汞浓度在4至75μg/ m〜(3)_(ref)之间变化。在调查的褐煤中,烟气中氧化形式的Hg含量最低(占总Hg的27%),而烟煤中Hg的氧化形式含量最低(对于选定的硬煤(72%)和一种生物质(氯含量高;上升)。至98%)。

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