首页> 外文会议>Proceedings of the 20th international conference on fluidized bed combustion(FBC) >CO-FIRING OF SEWAGE SLUDGE WITH BARK IN A BENCH-SCALE BUBBLING FLUIDIZED BED-A STUDY OF DEPOSITS AND EMISSIONS
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CO-FIRING OF SEWAGE SLUDGE WITH BARK IN A BENCH-SCALE BUBBLING FLUIDIZED BED-A STUDY OF DEPOSITS AND EMISSIONS

机译:规模化鼓泡流化床中污水污泥与树皮的混燃-沉积物和排放物的研究

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It has been shown that addition of either sulfur and/or aluminosilicates such as kaolinite may reduce alkali induced deposit formation when firing biomass fuels. Sewage sludge is a fuel containing substantial amounts of sulfur and aluminosilicates, such as zeolites. In this work different amounts of sewage sludge (0, 2, 4, 6 and 8%en) were co-fired with bark in a bench-scale BFB. SO2 and HCl emissions were measured and deposits were sampled during 3 hrs with an air-cooled probe with a surface temperature of 500℃ at two different locations with flue gas temperatures of 850℃ and 650℃, respectively. The test results showed that an increase of the share of sewage sludge to the fuel mixture increased the formation of HCl and simultaneously decreased the Cl-content in the deposits. Usually this is considered to be a sign of sulfation of alkali chlorides. However, the increase of HCl can also be caused by Al-silicates capturing alkali, thus releasing Cl as HCl to the gas phase. Although, sulfur increased in the fuel input with an increased share of sewage sludge, this was not reflected in the gaseous emissions as may be expected. Up to 4%en sewage sludge was fired together with bark without increasing the sulfur content in the emissions. At higher shares of sewage sludge the sulfur emissions increased linearly with an increase of sewage sludge. The amount of water soluble potassium fed into the boiler remained relatively constant in the different tests. This potassium is usually released as volatile salts. Nevertheless, the amount found in deposits decreased with an increase in sludge feeding. In this paper it was shown that interaction of potassium with Al-silicates in the bed is a probable cause for the decrease of potassium in the deposits, while both the sulfation of potassium chlorides and possibly also, the alkali capture by Al-silicates can weaken the deposition of Cl.
机译:已经显示,添加硫和/或铝硅酸盐例如高岭石可以减少在燃烧生物质燃料时由碱引起的沉积物的形成。污泥是一种含有大量硫和硅铝酸盐的燃料,例如沸石。在这项工作中,将不同数量的污水污泥(0、2、4、6和8%en)与树皮在台式BFB中共烧。测量了SO2和HCl的排放,并在三个小时内使用表面温度为500℃的风冷探头在两个不同位置分别测量了烟气温度为850℃和650℃的沉积物。测试结果表明,污水污泥在燃料混合物中所占份额的增加增加了HCl的形成,同时降低了沉积物中Cl的含量。通常认为这是碱金属氯化物硫酸化的迹象。但是,HCl的增加也可能是因为铝硅酸盐捕获了碱,从而将Cl作为HCl释放到气相中。尽管燃料输入中的硫随着污水污泥的比例增加而增加,但这并未像预期的那样反映在气体排放中。在不增加排放物中硫含量的情况下,将多达4%的污水污泥与树皮一起燃烧。在污水污泥中所占比例较高时,硫排放随着污水污泥的增加而线性增加。在不同的测试中,送入锅炉的水溶性钾的量保持相对恒定。该钾通常以挥发性盐的形式释放。然而,随着污泥进料量的增加,沉积物中的沉积物数量减少。本文表明,钾与床中硅酸铝的相互作用可能是沉积物中钾减少的原因,而氯化钾的硫酸化以及硅酸铝对碱的捕获均可能减弱。 Cl的沉积。

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