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LIMITATIONS OF DRY FLUE GAS TREATMENT BY SODIUM BICARBONATE: THE INFLUENCE OF FLUE GAS COMPOSITION

机译:双碳酸钠处理干法烟气的局限性:烟气成分的影响

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Waste to energy is nowadays in many countries preferred to landfilling. In areas with low population density, small-scale waste to energy plants can help to avoid large collection areas. However, in small scale, flue gas treatment is very expensive and, therefore, has to be for these purposes simplified. One of the possibilities for flue gas treatment simplification is the use of one reactor for removal of multiple pollutants. In an extreme case, it is possible to realise the removal of solid particles, acidic gases, selective catalytic reduction of NO_x, and catalytic oxidation of polychlorinated dibenzodioxins and furans. In case of suitable flue gas composition and suitable catalyst, it is possible to lower the operation temperature below 180°C, which could allow the use of activated carbon for mercury capture. However, finding the optimal conditions is a big challenge as they depend on flue gas composition, desired concentrations of pollutants in flue gas after cleaning, and used agents. These conditions can be, therefore, very different according to specific application. To be able to find good compromise conditions, the understanding of the influence of individual operation parameters on all considered processes is necessary. The experimental activity, conducted with real flue gas, was focused on dry sorption of acidic gases with emphasis on the possibility to use simultaneously other cleaning processes. The sorption was realised by sodium bicarbonate and sorbent particles were captured on ceramic filters forming a filter cake containing the sorbent. Different flue gas compositions, temperatures, and sorbent excesses were used. The flue gas composition was measured online and manually taken samples (absorption solutions) were analysed by ion chromatography. Particle size distribution was analysed by laser diffraction. The acquired data was used to assess the limits of simultaneous removal of various pollutants from flue gas in relation to flue gas composition.
机译:如今,在许多国家中,废料转化为能源已成为垃圾填埋的首选。在人口密度低的地区,发电厂的小规模废物可以帮助避免大面积的收集。然而,在小规模中,烟气处理非常昂贵,因此,出于这些目的,必须对其进行简化。简化烟气处理的一种可能性是使用一个反应器去除多种污染物。在极端情况下,可以实现固体颗粒的去除,酸性气体,NO_x的选择性催化还原以及多氯代二苯并二恶英和呋喃的催化氧化。如果使用合适的烟道气成分和合适的催化剂,则可以将操作温度降低至180°C以下,从而可以使用活性炭进行汞捕集。然而,找到最佳条件是一个很大的挑战,因为它们取决于烟气成分,清洗后烟气中污染物的所需浓度以及使用过的试剂。因此,根据特定的应用,这些条件可能会有很大的不同。为了能够找到良好的折衷条件,必须了解各个操作参数对所有考虑的过程的影响。用实际烟道气进行的实验活动着重于酸性气体的干式吸附,着重强调了同时使用其他清洁工艺的可能性。通过碳酸氢钠实现吸附,吸附剂颗粒被捕获在陶瓷过滤器上,形成含有吸附剂的滤饼。使用了不同的烟气成分,温度和过量的吸附剂。在线测量烟气成分,并通过离子色谱法分析手动采集的样品(吸收溶液)。通过激光衍射分析粒度分布。所获取的数据用于评估与烟气成分相关的同时从烟气中去除各种污染物的极限。

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