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Impact of oxy-fuel combustion gases on mercury retention in activated carbons from a macroalgae waste: Effect of water

机译:含氧燃料燃烧气体对大型藻类废物中活性炭中汞保留的影响:水的影响

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摘要

The aim of this study is to understand the different sorption behaviors of mercury species on activated carbons in the oxy-fuel combustion of coal and the effect of high quantities of water vapor on the retention process. The work evaluates the interactions between the mercury species and a series of activated carbons prepared from a macroalgae waste (algae meal) from the agar–agar industry in oxy-combustion atmospheres, focussing on the role that the high concentration of water in the flue gases plays in mercury retention. Two novel aspects are considered in this work (i) the impact of oxy-combustion gases on the retention of mercury by activated carbons and (ii) the performance of activated carbons prepared from biomass algae wastes for this application. The results obtained at laboratory scale indicate that the effect of the chemical and textural characteristics of the activated carbons on mercury capture is not as important as that of reactive gases, such as the SOx and water vapor present in the flue gas. Mercury retention was found to be much lower in the oxy-combustion atmosphere than in the O2 + N2 (12.6% O2) atmosphere. However, the oxidation of elemental mercury (Hg0) to form oxidized mercury (Hg2+) amounted to 60%, resulting in an enhancement of mercury retention in the flue gas desulfurization units and a reduction in the amalgamation of Hg0 in the CO2 compression unit. This result is of considerable importance for the development of technologies based on activated carbon sorbents for mercury control in oxy-combustion processes.
机译:这项研究的目的是了解汞在煤的氧-燃料燃烧中对活性炭的不同吸附行为,以及大量水蒸气对保留过程的影响。该工作评估了含氧气体中汞物种与琼脂-琼脂行业的大型藻类废物(藻粉)制得的一系列活性炭之间的相互作用,重点是烟气中水的高浓度发挥汞保持作用。在这项工作中考虑了两个新颖的方面:(i)氧燃烧气体对活性炭对汞的保留的影响,以及(ii)从用于该应用的生物藻类废物制备的活性炭的性能。在实验室规模获得的结果表明,活性炭的化学和结构特征对汞捕获的影响不如反应性气体(例如烟道气中的SOx和水蒸气)那么重要。发现在氧燃烧气氛中的汞保留比在O2 + N2(12.6%O2)气氛中低得多。但是,元素汞(Hg0)的氧化形成氧化汞(Hg2 +)的比例达到60%,导致烟道气脱硫装置中汞的保留增加,CO2压缩装置中Hg0的汞齐化减少。这一结果对于开发基于活性炭吸附剂的氧燃烧工艺中的汞控制技术具有重要意义。

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