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Biomass gasification chars for mercury capture from a simulated flue gas of coal combustion

机译:用于从模拟煤燃烧烟气中捕集汞的生物质气化炭

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摘要

[EN] The combustion of coal can result in trace elements, such as mercury, being released from power stations with potentially harmful effects for both human health and the environment. Research is ongoing to develop cost-effective and efficient control technologies for mercury removal from coal-fired power plants, the largest source of anthropogenic mercury emissions. A number of activated carbon sorbents have been demonstrated to be effective for mercury retention in coal combustion power plants. However, more economic alternatives need to be developed. Raw biomass gasification chars could serve as low-cost sorbents for capturing mercury since they are sub-products generated during a thermal conversion process. The aim of this study was to evaluate different biomass gasification chars as mercury sorbents in a simulated coal combustion flue gas. The results were compared with those obtained using a commercial activated carbon. Chars from a mixture of paper and plastic waste showed the highest retention capacity. It was found that not only a high carbon content and a well developed microporosity but also a high chlorine content and a high aluminium content improved the mercury retention capacity of biomass gasification chars. No relationship could be inferred between the surface oxygen functional groups and mercury retention in the char samples evaluated.
机译:[EN]煤炭燃烧会导致从发电站释放出微量元素,例如汞,对人体健康和环境均可能造成有害影响。正在进行研究以开发具有成本效益的高效控制技术,以消除燃煤电厂中的汞,这是人为汞排放的最大来源。大量的活性炭吸附剂已被证明对燃煤电厂中的汞保持有效。但是,需要开发更多的经济选择。原始生物质气化炭可以用作捕获汞的低成本吸附剂,因为它们是热转化过程中产生的副产品。这项研究的目的是评估模拟煤燃烧烟气中作为汞吸附剂的不同生物质气化炭。将结果与使用市售活性炭获得的结果进行比较。纸张和塑料废料的混合物中的焦炭显示出最高的保留能力。发现不仅高碳含量和发达的微孔性,而且高氯含量和高铝含量也改善了生物质气化炭的汞保持能力。在所评估的炭样品中,表面氧官能团与汞保留之间没有关系。

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