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The fate of chlorine, sulfur, and potassium during co-combustion of bark, sludge, and solid recovered fuel in an industrial scale BFB boiler

机译:树皮,污泥和固体回收燃料在工业规模BFB锅炉中燃烧时氯,硫和钾的去向

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摘要

The effect of fuel composition on the fate of chlorine, sulfur, and potassium was investigated during an extensive measurement campaign in a 107 MW_(th) bubbling fluidized bed (BFB) combustor. Bark, sludge, and solid recovered fuel (SRF) were co-combusted in different proportions during the campaign. The elemental composition of the fuel and outgoing ashes was determined, supplemented with gas composition measurements, to obtain the distribution of chlorine, sulfur, and potassium. Additionally, chemical fractionation was carried out for the pure fuels to study the teachability of the ash-forming elements. When firing bark and bark+ sludge, potassium, sulfur, and chlorine ended up mainly in the fly ash stream. When SRF was a part of the fuel mixture a considerable amount of SO2 was measured in the second pass. Most of the chlorine entering with the fuel was found as gaseous HC1 in the second pass, which indicates that sulfation reactions took place in the furnace. Most of the HC1 and a part of the SO2 were captured in the baghouse filter ash and the emissions of these gases were low. This work showed the positive effects of co-firing challenging fuels.
机译:在107 MW_th的鼓泡流化床(BFB)燃烧器中进行了广泛的测量活动期间,研究了燃料成分对氯,硫和钾命运的影响。在运动期间,树皮,污泥和固体回收燃料(SRF)以不同比例共燃烧。确定了燃料和灰烬的元素组成,并补充了气体组成测量值,以获得氯,硫和钾的分布。另外,对纯燃料进行化学分馏以研究成灰元素的可教导性。烧制树皮和树皮+污泥时,钾,硫和氯主要以粉煤灰流产生。当SRF是燃料混合物的一部分时,在第二遍中测得了大量的SO2。在第二遍中,与燃料一起进入的大部分氯被发现为气态HCl,这表明硫酸化反应在炉中发生。大部分HCl和一部分SO2被收集在布袋除尘器的过滤灰中,这些气体的排放量很低。这项工作显示了混合燃烧具有挑战性的燃料的积极作用。

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