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Reduction of PCDD/F Formation in MSWI by a Processintegrated SO_2 Cycle

机译:通过工艺整合的SO_2循环减少MSWI中PCDD / F的形成

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PCDD/F formation in MSWI predominantly takes place by de-novo synthesis in the ash deposits in the boiler. Permanently high SO_2 concentrations cause sulfation of the boiler ash and fly ashes, which leads to low chloride concentrations in the ash deposits. This results in very low PCDD/F formation rates. High SO_2 levels can be established in an efficient way by a process-integrated SO_2 cycle, with only the SO_2 present in the process being used. The Srecycling process can be supported by reducing the transfer rates of CaO particles to the flue gas by a low primary air supply. No additional sulfur dosage is needed. No negative effects of the S-recycling process on the separation of other pollutants like Hg could be observed. These findings indicate that the PCDD/F emission standards can already be met upstream of the flue gas cleaning system by these primary measures only. The flue gas cleaning efforts can be reduced without changing the emission standards.
机译:MSWI中PCDD / F的形成主要是通过锅炉灰分中的新合成来进行的。永久高浓度的SO_2会引起锅炉灰分和飞灰的硫酸化,从而导致灰分沉积物中的氯化物浓度降低。这导致非常低的PCDD / F形成速率。可以通过过程集成的SO_2循环以有效的方式建立高SO_2含量,而仅使用过程中存在的SO_2。可以通过降低一次空气供应量来降低CaO颗粒向烟道气的传输速率,从而支持Srecycling过程。不需要额外的硫剂量。没有观察到S循环过程对分离其他污染物(例如Hg)的负面影响。这些发现表明,仅通过这些主要措施就可以在烟气清洁系统的上游达到PCDD / F排放标准。在不改变排放标准的情况下,可以减少烟气清洁工作。

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