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首页> 外文期刊>Waste Management >High temperature abatement of acid gases from waste incineration. Part Ⅰ: Experimental tests in full scale plants
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High temperature abatement of acid gases from waste incineration. Part Ⅰ: Experimental tests in full scale plants

机译:高温焚烧产生的酸性气体。第一部分:大规模工厂的实验测试

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摘要

In recent years, several waste-to-energy plants in Italy have experienced an increase of the concentration of acid gases (HCl, SO_2 and HF) in the raw gas. This is likely an indirect effect of the progressive decrease of the amount of treated municipal waste, which is partially replaced by commercial waste. The latter is characterised by a higher variability of its chemical composition because of the different origins, with possible increase of the load of halogen elements such as chlorine (Cl) and fluorine (F), as well as of sulphur (S). A new dolomitic sorbent was then tested in four waste-to-energy plants during standard operation as a pre-cleaning stage, to be directly injected at high temperature in the combustion chamber. For a sorbent injection of about 6 kg per tonne of waste, the decrease of acid gases concentration downstream the boiler was in the range of 7-37% (mean 23%) for HCl,34-95% (mean 71%) for SO_2 and 39-80% (mean 63%) for HF. This pre-abatement of acid gases allowed to decrease the feeding rate of the traditional low temperature sorbent (sodium bicarbonate in all four plants) by about 30%. Furthermore, it was observed by the plant operators that the sorbent helps to keep the boiler surfaces cleaner, with a possible reduction of the fouling phenomena and a consequent increase of the specific energy production. A preliminary quantitative estimate was carried out in one of the four plants.
机译:近年来,意大利的几家垃圾发电站的原料气中酸性气体(HCl,SO_2和HF)的浓度有所增加。这可能是处理过的城市垃圾量逐渐减少的间接影响,部分被商业垃圾取代。后者的特征在于,由于来源不同,其化学组成的可变性较高,并且可能增加卤素元素(如氯(Cl)和氟(F))以及硫(S)的负载量。然后,在标准运行期间作为预清洁阶段,在四个废料发电站中测试了一种新的白云岩吸附剂,该吸附剂在高温下直接注入燃烧室。对于每吨废物约6 kg的吸附剂注入,锅炉下游的酸性气体浓度降低范围为HCl的7-37%(平均23%),SO_2的34-95%(平均71%)。 HF为39-80%(平均63%)。酸性气体的这种预先减弱使传统的低温吸附剂(所有四个工厂中的碳酸氢钠)的进料速率降低了约30%。此外,工厂操作人员观察到,吸附剂有助于保持锅炉表面清洁,并可能减少结垢现象,从而提高比能产量。在这四个工厂之一中进行了初步的定量估计。

著录项

  • 来源
    《Waste Management》 |2015年第2期|98-105|共8页
  • 作者单位

    Politecnico di Milano, Department of Civil and Environmental Engineering, Piazza L. daVinci 32, 20133 Milano, Italy;

    Politecnico di Milano, Department of Civil and Environmental Engineering, Piazza L. daVinci 32, 20133 Milano, Italy;

    Politecnico di Milano, Department of Civil and Environmental Engineering, Piazza L. daVinci 32, 20133 Milano, Italy;

    Unicalce S.p.A., R&D Department, Via Tonio da Belledo 30, 23900 Lecco, Italy;

    Politecnico di Milano, Department of Civil and Environmental Engineering, Piazza L. daVinci 32, 20133 Milano, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dolomitic sorbent; Waste-to-energy; Acid gases; Depurcal~®MG;

    机译:白质吸附剂废物转化为能源;酸性气体;Depurcal〜®MG;

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