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Chemical-mechanical Bromination of Biomass Ash for Mercury Removal from Flue Gases

机译:生物质灰的化学机械溴化处理,用于去除烟道气中的汞

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Current approaches for mercury removal have been focusing on injection of powdered activated carbon sorbents into the flue gas stream.In particular,brominated activated carbon has been proven at pilot scale and plant trials to be effective at removing mercury from flue gases of coal-fired power plants.However,activated carbon is a costly source material.Using an industrial solid waste from biomass combustion as an alternative source material to produce sorbents for mercury emission control is an attractive option.This paper describes a novel chemical-mechanical bromination process for production of mercury sorbent from a biomass combustion ash,which is normally considered a solid waste.The chemical-mechanical brominated ash was characterized and tested for mercury capture and release at high temperatures.The brominated biomass ash was found to effectively capture mercury up to 375oC in lab scale tests.The tests of the new brominated sorbent in a 375 MW coal fired power plant showed promising performance
机译:当前的汞去除方法一直集中在向烟气流中注入粉末状活性炭吸附剂。特别是,溴化活性炭已在中试规模和工厂试验中得到证明,可以有效地去除燃煤电厂烟气中的汞。然而,活性炭是一种昂贵的原料。使用生物质燃烧产生的工业固体废物作为替代原料来生产用于汞排放控制的吸附剂是一种有吸引力的选择。本文介绍了一种新型的化学机械溴化工艺,用于生产汞。生物质燃烧灰分中的汞吸附剂,通常被视为固体废物。对化学机械溴化灰分进行了表征并测试了其在高温下的汞捕集和释放。在实验室中发现溴化生物质灰分可有效捕集汞,最高可达375oC在375兆瓦的燃煤电厂中对新型溴化吸附剂的测试表明表现不佳

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