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Removal of dioxins in flue gas from waste incinerators by catalytic oxidative process

机译:催化氧化法去除垃圾焚烧炉烟气中二恶英

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摘要

Removal of dioxins in flue gas from waste incinerators by catalytic oxidative process was investigated. Mono-chlorobenzene (MCB) was used as a model-compound of dioxins in order to study the kinetics of catalytic decomposition. The decomposition of MCB is a first order reaction with respect to the concentration of MCB and the reaction rate was 1.4 times higher at 200℃ than at 170℃. The durability test of the catalyst using the real flue gas from a municipal waste incinerator was performed. Dioxins were completely decomposed at the initial stage, and the decomposition efficiency of dioxins after 16,500 hours was still 95% in TEQ. The influences of reaction temperature and linear velocity on the decomposition of dioxins were clarified. The high decomposition rate of dioxins was maintained in the temperature range of 170-240℃. The decomposition reaction of dioxins was well interpreted by the theoretical calculations based on the mixing diffusion model.
机译:研究了通过催化氧化法去除垃圾焚烧炉烟气中二恶英的方法。一氯苯(MCB)被用作二恶英的模型化合物,以研究催化分解的动力学。相对于MCB的浓度,MCB的分解是一级反应,在200℃下的反应速率是在170℃下的1.4倍。使用来自城市垃圾焚烧炉的真实烟道气对催化剂进行了耐久性测试。二恶英在初始阶段完全分解,在TEQ中16,500小时后二恶英的分解效率仍为95%。阐明了反应温度和线速度对二恶英分解的影响。二恶英在170-240℃的温度范围内保持较高的分解速率。通过基于混合扩散模型的理论计算可以很好地解释二恶英的分解反应。

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