Chalmers University of Technology, Department of Energy and Environment, Gothenburg, Sweden.
Waste Manag. 2013 Aug;33(8):1729-39. doi: 10.1016/j.wasman.2013.03.022. Epub 2013 May 17.
Polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzofurans (PCDFs) are formed during waste incineration and in waste-to-energy boilers. Incomplete combustion, too short residence times at low combustion temperatures (<700 °C), incineration of electronic waste and plastic waste containing chlorine are all factors influencing the formation of PCDD/Fs in boilers. The impact of chlorine and catalysing metals (such as copper and iron) in the fuel on PCDD/F formation was studied in a 12 MW(th) circulating fluidised bed (CFB) boiler. The PCDD/F concentrations in the raw gas after the convection pass of the boiler and in the fly ashes were compared. The fuel types were a so-called clean biomass with low content of chlorine, biomass with enhanced content of chlorine from supply of PVC, and solid recovered fuel (SRF) which is a waste fuel containing higher concentrations of both chlorine, and catalysing metals. The PCDD/F formation increased for the biomass with enhanced chlorine content and it was significantly reduced in the raw gas as well as in the fly ashes by injection of ammonium sulphate. A link, the alkali chloride track, is demonstrated between the level of alkali chlorides in the gas phase, the chlorine content in the deposits in the convection pass and finally the PCDD/F formation. The formation of PCDD/Fs was also significantly reduced during co-combustion of SRF with municipal sewage sludge (MSS) compared to when SRF was fired without MSS as additional fuel.
多氯二苯并对二恶英(PCDDs)和多氯二苯并呋喃(PCDFs)是在废物焚烧和废物能源锅炉中形成的。不完全燃烧、在低燃烧温度(<700°C)下停留时间过短、焚烧含有氯的电子废物和塑料废物,都是影响锅炉中 PCDD/Fs 形成的因素。在 12MW(th)循环流化床(CFB)锅炉中研究了燃料中的氯和催化金属(如铜和铁)对 PCDD/F 形成的影响。比较了锅炉对流段后原料气和飞灰中的 PCDD/F 浓度。燃料类型分别为含氯量低的所谓清洁生物质、来自 PVC 供应的氯含量增强的生物质以及含氯量和催化金属含量均较高的固体回收燃料(SRF)。含氯量增强的生物质的 PCDD/F 形成增加,通过注入硫酸铵,在原料气和飞灰中均显著降低。证明了气相中碱金属氯化物的水平、对流段沉积物中的氯含量与最终 PCDD/F 形成之间存在碱金属氯化物的联系。与单独燃烧 SRF 相比,当 SRF 与城市污水污泥(MSS)一起燃烧时,PCDD/Fs 的形成也显著减少。