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A New Approach for Retaining Mercury in Energy Generation Processes: Regenerable Carbonaceous Sorbents

机译:在能源生产过程中保留汞的新方法:可再生碳质吸附剂

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摘要

The energy production processes from fossil fuels represent the first anthropogenic source of mercury emissions in Europe and the second in the world. Among the different possibilities that can be posed to reduce these emissions, this work focuses on the use of regenerable sorbents based on gold nanoparticles dispersed on activated carbon foam. The use of regenerable sorbents would not only allow the objective of reducing mercury emissions, but also avoiding the generation of new toxic wastes. The results showed a retention efficiency of 100% and a retention capacity close to 600 µg·g over several cycles of regeneration. Moreover, acid gases did not poison the support. It was observed that mercury capture in this simulated oxy-combustion atmosphere was a consequence of two mechanisms: (1) the amalgamation of elemental mercury and elemental gold and (2) the oxidation of elemental mercury in the presence of HCl, with the subsequent retention of the oxidized mercury on the surface of the activated carbon foam. The nanodispersion of gold on such supports involves a high initial investment. However, this would be counterbalanced by the remarkable regeneration capacity of the sorbent and the possibility of recovering all the materials used.
机译:化石燃料的能源生产过程是欧洲第一个人为的汞排放源,世界上第二个。在减少这些排放的各种可能性中,这项工作着重于使用基于分散在活性炭泡沫上的金纳米颗粒的可再生吸附剂。使用可再生吸附剂不仅可以达到减少汞排放的目的,而且可以避免产生新的有毒废物。结果表明,在多个再生循环中,保留效率为100%,保留容量接近600 µg·g。而且,酸性气体不会使载体中毒。据观察,在这种模拟的氧气燃烧气氛中汞的捕集是两个机理的结果:(1)元素汞和元素金的混合,(2)在HCl存在下元素汞的氧化,随后被保留活性炭泡沫表面上的氧化汞含量。金在这种载体上的纳米分散涉及大量的初始投资。但是,这将被吸附剂的显着再生能力和回收所有使用的材料的可能性所抵消。

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