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Emissions from a controlled fire in municipal solid waste bales

机译:市政固体废物包中受控火的排放

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Environmental and safety aspects of seasonal storage of baled municipal solid waste to be used as fuel for energy production (waste fuel), was investigated and experiments were carried out on burning of bales. The flammability, combustion processes and emissions were studied by simulating, in small-scale, potential effects of a possible fire in full-scale bale storage area. Despite the high water content and the high density of the bales, after setting fire, the bales burned well, even though no risk for self-ignition exists. The following parameters of the combustion product were measured continuously: O_2, CO_2, CO, SO_2, NO, NO_2, NO_x, THC, smoke gas rate and the temperature of the smoke. Soot particles in the smoke were collected and analysed for Hg, Pb, Cd, As, Ni, Cr, Mn, Cu, Co, Sb and V concentrations. The analysis of the moisture content, concentrations of Hg, Cd, HCl, HF, HBr, NH_3, polyaromatic hydrocarbons (PAH), chlorinated and brominated dioxins (PCDD/F and PBrDD/F, respectively) were carried out. It was found that the PCDD/F levels (TEQs) varied according to the system used: 12.53 ng (I-TEF-88)/Nm~3; 14.09 ng (I-TEF-99)/Nm~3; 13.86 ng (Eadons)/Nm~3. The PAH concentration was 3.04μg/Nm~3. The contents of the metals in the smoke (with the exceptions of Pb and Cd with mean values of 1.74 and 0.36 mg/m~3, respectively) were below the limit values established by the Swedish Ministry of Environment for emissions from incineration plants [Swedish Ministry of Environment, (2002:1060), Foerordning 2002:1060 om avfallsfoerbraenning. Available from http://www.notisum.se/rnp/SLS/LAG/20021060.HTM]/EU-directive [(2000/76/EC), Directive 2000/76/EC, of the European Parliament and of the Council of 4 December 2000 on the Incineration of Waste. http://www.Scotland. gov.uk/library5/environment/iecda.pdf]. The HCl concentration was 10 times higher than the limit value (mean value of 99 mg/m~3).
机译:研究了将打包的城市固体废物用作能源生产燃料(废燃料)的季节性存储的环境和安全方面,并进行了燃烧捆的实验。通过在小规模下模拟满规模草捆存储区中可能发生火灾的潜在影响,研究了可燃性,燃烧过程和排放。尽管水包的水分含量高且密度高,但放火后,即使没有自燃的危险,它们也燃烧良好。连续测量以下燃烧产物的参数:O_2,CO_2,CO,SO_2,NO,NO_2,NO_x,THC,烟气速率和烟气温度。收集烟气中的烟尘颗粒并分析其汞,铅,镉,砷,镍,铬,锰,铜,钴,锑和钒的浓度。进行了水分含量,Hg,Cd,HCl,HF,HBr,NH_3,聚芳烃(PAH),氯化和溴化二恶英(分别为PCDD / F和PBrDD / F)的浓度分析。已经发现,PCDD / F水平(TEQ)根据所使用的系统而变化:12.53ng(I-TEF-88)/ Nm〜3; 14.09 ng(I-TEF-99)/ Nm〜3; 13.86 ng(Eadons)/ Nm〜3。 PAH浓度为3.04μg/ Nm〜3。烟气中的金属含量(分别为Pb和Cd,平均值分别为1.74和0.36 mg / m〜3)低于瑞典环境部为焚烧厂排放设定的限值[瑞典环境部(2002:1060),foerordning 2002:1060 om avfallsfoerbraenning。可从http://www.notisum.se/rnp/SLS/LAG/20021060.HTM]/EU-directive [(2000/76 / EC),Directive 2000/76 / EC,欧洲议会和理事会的指令2000年12月4日颁布的《关于焚化废物的法律》。 http://www.Scotland。 gov.uk/library5/environment/iecda.pdf]。 HCl浓度是极限值的10倍(平均值为99 mg / m〜3)。

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