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Gaseous emissions from co-combustion of sewage sludge and coal/wood in a fluidized bed

机译:污水污泥和煤/木材在流化床中共同燃烧产生的气体排放

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Co-combustion of sewage sludge together with coal or wood has been investigated in two circulating fluidized bed (CFB) plants, a laboratory scale plant and a pilot scale 12MW_(th) CFB boiler, in both of which the gas residence times are comparable to those in commercial plant. The investigation focuses on emissions of harmful gases from co-combustion compared to mono-combustion in CFB and the influence of air supply. The result shows that co-combustion can be carried out in CFB plant designed for the base fuel without exceeding EU or German emission limits for sludge energy fractions of less than 25 percent, except for the chlorine emission that may have to be reduced by flue gas treatment. Although sewage sludge contains large quantities of nitrogen and sulfur, the beneficial properties of CFB lead to considerable reduction of nitrogen oxides, and only a few percent of the nitrogen was effectively converted to NO or N_2O. Sulfur can be captured by conventional limestone addition, but for wood as a base fuel this method is not as efficient as for coal.
机译:已在两个循环流化床(CFB)工厂,实验室规模的工厂和中试规模的12MW_th CFB锅炉中研究了污水污泥与煤或木材的共燃问题,两者的气体停留时间可与那些在商业工厂。与CFB中的单燃烧相比,该研究的重点是共燃烧产生的有害气体排放以及空气供应的影响。结果表明,在为基础燃料设计的CFB装置中可以进行共燃烧,而对于污泥能量分数小于25%的排放,其排放量不得超过欧盟或德国的排放限值,但可能需要通过烟气降低氯排放量治疗。尽管污水污泥中含有大量的氮和硫,但CFB的有益性能可导致氮氧化物的大量减少,只有极少数的氮有效地转化为NO或N_2O。可以通过传统的石灰石添加来捕获硫,但是对于木材作为基础燃料而言,这种方法不如煤炭有效。

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