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Enrichment of PCDDs/PCDFs in the cooling system of municipal solid waste incineration plants

机译:城市固体垃圾焚烧厂冷却系统中PCDD / PCDF的富集

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This study measured the levels of polychlorinated dibenzo-p-dioxins and polychlorinated dibenzofurans (PCDDs/PCDFs), destroyed or formed in combustors and re-synthesized in cooling systems. For the proper control of PCDDs/PCDFs in municipal solid waste (MSW) incinerators, three grate-type MSW incinerators were selected, two of which had boilers, and one of which had a water spray tower (WST) as a cooling system. At the combustor outlets, dusts were in the range of 1640-4270 mg/Sm~3 and PCDDs/PCDFs were in the range of 0.103-2.619 ng-TEQ/Sm~3, showing the different values according to the grate structure of combustor and the flow direction of flue gas. After the flue gases passed through the cooling system, PCDDs/PCDFs at the waste heat boiler (WHB) outlets were enriched to levels that were 10.8-13.6 times higher than those at the furnace outlets, but PCDDs/PCDFs at the WST outlet was reduced to 5% of the level found at the furnace outlet. The emission patterns, such as the ratio of PCDFs to PCDDs, the ratio of gaseous-phase to particu-late-phase PCDDs/PCDFs, and the compositional percentiles of each 2,3,7,8-substituted congener varied according to the types of air pollution control devices (APCDs). Reducing re-synthesis in the cooling system rather than enhancing the removal efficiencies of the APCDs seems to be more effective for lowering the levels of PCDDs/PCDFs in MSW incineration plants.
机译:这项研究测量了多氯二苯并对二恶英和多氯二苯并呋喃(PCDDs / PCDF)的水平,这些水平在燃烧室中被破坏或形成,并在冷却系统中重新合成。为了适当控制城市固体废物(MSW)焚化炉中的PCDD / PCDF,选择了三台炉排式MSW焚化炉,其中两台装有锅炉,其中一台装有喷水塔(WST)作为冷却系统。在燃烧室出口处,粉尘范围为1640-4270 mg / Sm〜3,PCDD / PCDF范围为0.103-2.619 ng-TEQ / Sm〜3,根据燃烧室的炉排结构显示出不同的值。以及烟气的流动方向。烟气通过冷却系统后,废热锅炉(WHB)出口处的PCDD / PCDF富集到比炉子出口处高10.8-13.6倍的水平,但WST出口处的PCDD / PCDF减少了到炉子出口处的水平的5%。发射模式(例如,PCDF与PCDD的比例,气相与微粒相PCDD / PCDF的比例以及每种2,3,7,8取代同类物的组成百分位数)随类型而变化空气污染控制设备(APCD)的数量。减少冷却系统中的再合成,而不是提高APCD的去除效率,似乎对于降低垃圾焚烧厂中PCDD / PCDF的含量更为有效。

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