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首页> 外文期刊>Journal of thermal analysis and calorimetry >Evaluation of elemental mercury adsorption by fly ash modified with ammonium bromide
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Evaluation of elemental mercury adsorption by fly ash modified with ammonium bromide

机译:溴化铵改性粉煤灰对元素汞的吸附评价

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Coal-fired power plants are significant contributors to the anthropogenic emission of mercury. This study focus on evaluated the methods for modification and preparation of fly ash adsorbent which can be applied to adsorb mercury from power plants. Comparing with isometric impregnation and ion exchange method, it was found that the cost and preparation time of the mechanochemical method significantly reduced. Hg-0 adsorption performances of NH4Br-modified fly ashes and subsequent effects of mechanical energy on modifying fly ash were investigated, and the results indicated that increasing mechanical force can make the distribution of bromides to be more uniform and increase the number of surface active sites and groups. Furthermore, Hg-0 removal efficiency improved significantly with the increasing bromine loading at 150 A degrees C. There is a positive correlation between mechanical energy on modifying fly ash and subsequently Hg-0 adsorption performance. TG/MS analysis was utilized to determine the thermal stability and released material of different samples. Results demonstrated the release of ammonia, which from the modified fly ashes with mechanochemical method, most likely enhances the oxidation and subsequent adsorption of mercury in the 150-200 A degrees C temperature range. All results revealed that the mechanochemical application method for adsorbent preparation on site is competitive on economy, practicability, and mercury removal efficiency.
机译:燃煤电厂是人为排放汞的重要因素。这项研究的重点是评估改性和制备粉煤灰吸附剂的方法,该方法可用于吸附发电厂的汞。与等距浸渍和离子交换方法相比,发现机械化学方法的成本和制备时间大大减少。研究了NH4Br改性粉煤灰的Hg-0吸附性能以及机械能对粉煤灰改性的后续影响,结果表明,增加机械力可使溴化物的分布更均匀,并增加表面活性位点的数量。和组。此外,Hg-0的去除效率随着150 A时溴含量的增加而显着提高。改性粉煤灰的机械能与随后的Hg-0吸附性能之间存在正相关。 TG / MS分析用于确定不同样品的热稳定性和释放的物质。结果表明,氨的释放是通过机械化学方法从改性粉煤灰中释放的,最有可能在150-200 A的温度范围内增强汞的氧化和随后的吸附。所有结果表明,现场使用机械化学方法制备吸附剂在经济性,实用性和除汞效率方面具有竞争力。

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