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Evaluation of the controlled condensation method for flue gas SO3/H2SO4 measurement

机译:烟道气SO3 / H2SO4测量控制冷凝方法的评价

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摘要

Controlled condensation method (CCM) is widely accepted for detecting sulfur trioxide (SO3)/sulfuric acid (H2SO4) in flue gas. However, this method cannot be calibrated accurately because of the absence of the standard gas that contains H2SO4 vapor. We attempted to calibrate CCM by adopting another SO3/H2SO4 detection method that has been proven accurate. The following conclusions have been derived. The performance of the core component of CCM (i.e., the condenser) is acceptable. However, H2SO4 still escaped from the condenser, thereby confirming its negative errors. The filter set behind the condenser can prevent most of, but not all of, the escaping H2SO4 by intercepting aerosol H2SO4. Any flue gas cooling processes that occur in the sampling probe and the connecting pipe under 260 degrees C before the condenser can possibly cause negative errors because of acid condensation. The ash layer that formed during the ash filtration process cannot only intercept the aerosol H2SO4 but can also absorb the gaseous H2SO4, thereby resulting in negative errors. Errors caused by the accessories (i.e., the sampling probe, the connecting pipe, and the ash filtration) may be greater than those caused by the condenser, which may make the measurement invalid.
机译:广泛接受受控缩合方法(CCM)以检测烟道气中的三氧化硫(SO 3)/硫酸(H2SO4)。然而,由于没有含有H 2 SO 4蒸气的标准气体,不能准确地校准该方法。我们试图通过采用已被证明准确的其他SO 3 / H2SO4检测方法来校准CCM。以下结论已得到推导。 CCM(即冷凝器)的核心组分的性能是可接受的。然而,H2SO4仍然从冷凝器中逸出,从而确认其负误差。冷凝器后面的过滤器可以通过拦截气溶胶H2SO4来防止大部分,但不是全部,逃离H2SO4。在采样探针和260摄氏度下的连接管中发生的任何烟气冷却过程,因为酸缩合可能会导致负误差。在灰分过滤过程中形成的灰分层不能仅拦截气溶胶H 2 SO 4,但也可以吸收气态H 2 SO 4,从而导致负误差。附件(即采样探针,连接管和灰尘过滤引起的误差可能大于由电容器引起的,这可能使测量无效。

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