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Controlled synthesis of MgO with diverse basic sites and its CO2 capture mechanism under different adsorption conditions

机译:不同吸附条件下具有不同基本位点的MgO对MgO的合成及其二氧化碳捕获机制

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Mesoporous MgO adsorbents with diverse basic sites were prepared via a urea hydrolysis synthesis method for CO2 capture. With elevated hydrolysis temperatures, the phase transition process made great contributions to the morphological changes of the precursor architectures. In situ DRIFTS analysis demonstrated that various carbonate surface species including bicarbonate, bidentate, and unidentate carbonates were formed on the obtained MgO during interaction with CO2. Furthermore, the main component of adsorbed CO2 surface species swings from bicarbonate to bidentate and unidentate carbonates with increase of adsorption temperature. The highest CO2 uptake of 1.22-1.99 mmol g(-1) was attained for MgO sample at the lowest calcination temperature in a wide temperature range of 60-300 degrees C. High specific surface area (372.0 m(2) g(-1)), large pore volume (0.38 cm(3) g(-1)) as well as diverse basic sites of the synthesized MgO make it an eligible candidate for CO2 capture, with a nearly 20-fold enhancement of the commercialized light MgO. Additionally, the results of CO2 uptake studied under diluted and wet (H2O containing) CO2 conditions for the as-prepared MgO adsorbent also suggested good prospect in practical applications.
机译:通过用于CO2捕获的尿素水解合成方法制备具有不同基本位点的中孔MgO吸附剂。随着水解温度的升高,相变过程对前体架构的形态变化作出了巨大贡献。在原位漂移分析证明,在与CO 2的相互作用期间在所得MgO上形成各种碳酸盐表面物质,包括碳酸氢盐,二齿和未致碳酸盐。此外,吸附的CO 2表面物种的主要成分从碳酸氢盐中从碳酸氢盐中挥杆,并随着吸附温度的增加而从碳酸盐和未直接的碳酸盐中摇摆。在60-300摄氏度的宽温度范围内的最低煅烧温度下,在最低煅烧温度下获得1.22-1.99mmol g(-1)的最高CO 2摄取。高比表面积(372.0m(2)g(-1 )),孔体积大(0.38厘米(3)克(-1))以及合成MgO的不同基本部位使其成为CO2捕获的符合条件的候选者,并且对商业化光MgO的增强近20倍。另外,在稀释和湿润(H 2 O含有)CO 2条件下研究的CO2摄取的结果也在实际应用中提出了良好的前景。

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