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Magnesium Oxide-Based Absorbents for CO 2 Capture at Medium Temperature

机译:基于氧化镁的氧化镁吸收剂,用于CO <下标> 2 在中温下捕获

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摘要

Abstract MgO-based absorbent has been recognized as a promising CO~(2)absorbent at intermediate temperature, though the carbonation performance of pure MgO is poor. Researchers have been devoted to optimize the CO~(2)absorption ability via introducing alkali metal carbonates or nitrates. In this paper, the absorption performance of MgO-based absorbents promoted by alkali metal carbonates or modified by alkali metal nitrates has been summarized, and the affecting mechanism has been concluded. Alkali metal nitrates are essential for high absorption ability, and alkali metal carbonates facilitate high-temperature carbonation. Effects of fuel gas conditions and absorbent pelletization are also mentioned for practical applications. H~(2)O can accelerate the carbonation rate effectively, but the influencing mechanism of H~(2)O and the CO~(2)absorption stability in presence of H~(2)O was not clearly reported. Further investigations on pelletized MgO-based absorbents modified by alkali metal salts considering regeneration conditions of high CO~(2)concentration are proposed based on the recent research findings.
机译:摘要基于MGO的吸收剂已被认为是中间温度在中间温度的有前途的CO〜(2),但纯MgO的碳酸化性能差。研究人员已经致力于通过引入碱金属碳酸盐或硝酸盐来优化CO〜(2)吸收能力。本文总结了碱金属碳酸盐促进的基于MgO的吸收剂的吸收性能,或者通过碱金属硝酸盐改性,并结束了影响机理。碱金属硝酸盐对于高吸收能力至关重要,碱金属碳酸盐促进高温碳酸化。对于实际应用,还提及燃料气体条件和吸收性造粒的影响。 H〜(2)O有效地加速碳酸化率,但没有清楚地报道H〜(2)O和CO〜(2)的影响稳定性的影响机制。基于最近的研究发现,提出了考虑高CO〜(2)浓度再生条件的碱金属盐改性的粒化MgO的吸收剂的进一步研究。

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