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Introduction of chemically bonded zirconium oxide in CaO-based high-temperature CO2 sorbents for enhanced cyclic sorption

机译:CaO基高温二氧化硅凝胶中的化学键合氧化锆的引入增强循环吸附

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In this study, ZrO2 is introduced in a new form to reduce sintering and enhance the cyclic stability of CaO-based sorbents. Such a material has potential for high-temperature CO2 capture applications. Two Zr-modified CaO materials having a Ca/Zr molar ratio of 30 are prepared using the solid-state and citrate sol-gel methods. The solid-state method yields a physical mixture of CaO and ZrO2, while the citrate sol-gel method induces chemical bonding between ZrO2 and the CaO surface to form CaZrO3. The CO2 sorption uptake was significantly increased in both unmodified CaO and ZrO2-containing CaO [77.3 wt% (17.6 mol kg(-1)) and 73.2 wt% (16.6 mol kg-1), respectively, at 650 degrees C and 1 bar] when the citrate sol-gel method was used. The CaO having the chemically bonded ZrO2 reveals significantly enhanced cyclic stabilities, with an extremely high CO2 sorption uptake of 70.5 wt% (16.0 mol kg(-1)) on average during 10 cycles. On the other hand, the CaO containing the physically mixed ZrO2 reveals an average cyclic CO2 sorption uptake of only 37.2 wt% (8.5 mol kg(-1)). The chemically bonded ZrO2 is expected to be well scattered on the CaO surface and effectively cover the sorbent, resulting in the reduction of thermal sintering. In addition to cyclic stability, CO2 sorption kinetics of CaO-based sorbents can be enhanced through the citrate sol-gel method, which is resulted from the significantly reduced size of CaO particles.
机译:在本研究中,以一种新的形式引入ZrO2以减少烧结并增强CaO基吸附剂的循环稳定性。这种材料具有高温CO2捕获应用的潜力。使用固态和柠檬酸溶胶 - 凝胶方法制备具有Ca / Zr摩尔比为30的两个Zr改性的CaO材料。固态方法产生CaO和ZrO 2的物理混合物,而柠檬酸溶胶 - 凝胶法在ZrO 2和CaO表面之间诱导化学键合以形成Cazro3。在含有未改性的CaO和ZrO 2的CaO中显着增加了CO2吸附摄取[77.3wt%(17.6摩尔千倍(-1))和73.2重量%(16.6摩尔kg-1),在650℃和1巴]当使用柠檬酸盐溶胶 - 凝胶法。具有化学键合ZrO2的CaO显示出显着提高的循环稳定性,在10个循环期间,平均值为70.5wt%(16.0mol kg(-1))的极高的CO 2吸附吸收。另一方面,含有物理混合ZrO2的CaO显示出仅37.2wt%(8.5mol kg(-1))的平均环状二氧化碳吸附吸收。预期化学键合的ZrO2在CaO表面上散布良好并有效地覆盖吸附剂,导致热烧结的减少。除了循环稳定性之外,可以通过柠檬酸溶胶 - 凝胶法提高CaO基吸附剂的CO2吸附动力学,这是由CaO颗粒的显着减小的显着减小的影响。

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