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首页> 外文期刊>Environmental Science & Technology >Novel Regenerable Sorbent for Mercury Capture from Flue Gases of Coal-Fired Power Plant
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Novel Regenerable Sorbent for Mercury Capture from Flue Gases of Coal-Fired Power Plant

机译:用于从燃煤电厂烟气中捕集汞的新型可再生吸收剂

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A natural chabazite-based silver nanocomposite (AgMC) was synthesized to capture mercury from flue gases of coal-fired power plants. Silver nanoparticles were engineered on zeolite through ion-exchange of sodium ions with silver ions, followed by thermal annealing. Mercury sorption test using AgMC was performed at various temperatures by exposing it to either pulse injection of mercury or continuous mercury flow. A complete capture of mercury by AgMC was achieved up to a capture temperature of 250℃. Nano silver particles were shown to be the main active component for mercury capture by amalgamation mechanism. Compared with activated carbon-based sorbents, the sorbent prepared in this study showed a much higher mercury capture capacity and upper temperature limit for mercury capture. More importantly, the mercury captured by the spent AgMC could be easily released for safe disposal and the sorbent regenerated by simple heating at 400℃. Mercury capture tests performed in real flue gas environment showed a much higher level of mercury capture by AgMC than by other potential mercury sorbents tested. In our mercury capture tests, the AgMC exposed to real flue gases showed an increased mercury capture efficiency than the fresh AgMC.
机译:合成了基于菱沸石的天然银纳米复合材料(AgMC),用于从燃煤电厂的烟道气中捕获汞。通过将钠离子与银离子进行离子交换,然后进行热退火,将银纳米颗粒设计在沸石上。通过将AgMC暴露于脉冲汞注入或连续的汞流下,在不同温度下进行了汞吸附测试。在高达250℃的捕获温度下,AgMC可以完全捕获汞。纳米银颗粒被证明是通过汞齐化机制捕获汞的主要活性成分。与活性炭基吸附剂相比,本研究制备的吸附剂显示出更高的汞捕获能力和汞捕获的温度上限。更重要的是,用过的AgMC捕获的汞可以很容易地释放出来以便安全处置,并且只需在400℃简单加热即可再生吸附剂。在实际烟气环境中进行的汞捕获测试显示,AgMC捕获的汞的水平比其他测试的潜在汞吸附剂高得多。在我们的汞捕获测试中,暴露于实际烟气中的AgMC的汞捕获效率比新鲜的AgMC高。

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