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Chemical Structure Change of Magnesium Oxide in the Wet Oxidation Delignification Process of Biomass with Solid Alkali

机译:用固体碱的生物质湿氧化脱氧化镁过程中氧化镁的化学结构变化

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摘要

We have developed a facile MgO-based wet oxidation process for biomass pretreatment. Herein, we performed kilo-scale experiments to elucidate the transformations of Mg in the process as well as the recycling of the MgO-based solid alkali. A new intermediate, magnesium oxide carbonate [Mg3O(CO3)(2)] generated in situ during the process was shown for the first time, which could provide an indispensably weak but adequate alkaline environment to support the oxygen delignification reaction. However, once the solid alkali was transformed into hydromagnesite [Mg-5(CO3)(4)(OH)(2)] with sufficient CO2, the hydromagnesite form would prevent the solid alkali from developing resistance to the acidic gaseous CO2. Ultimately, if we take the features of the solid alkali into consideration, alkali recovery for this process was fulfilled easily without concentration or causticization, which are of high cost but unavoidable in the traditional recycling of sodium alkali.
机译:我们开发了一种基于湿氧化过程,用于生物质预处理。 在此,我们进行了千级实验,以阐明工艺中Mg的转化以及MgO的固体碱的再循环。 在该方法期间原位产生的新中间氧化镁碳酸镁[Mg3O(CO 3)(2)]首次示出,这可以提供不可或缺的弱但足够的碱性环境,以支持氧去氧化反应。 然而,一旦将固体碱转化到具有足够的CO 2中的氢化物岩[Mg-5(4)(4)(2))中,水质石形式将防止固体碱对酸性气态CO 2的耐药性。 最终,如果我们考虑到固体碱的特征,则可以容易地满足该方法的碱恢复而无浓度或苛性化,这在碱的传统回收中具有高成本,而且是不可避免的。

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