Abstract:
Li
2ZrO
3 is an efficient high-temperature CO
2 solid adsorbent. However, the synthesis method significantly impacts its CO
2 adsorption performance. Li
2ZrO
3 was synthesized using sol-gel method, high-temperature solid-phase method, and crystallization method, aiming to thoroughly investigate the influence of the preparation methods on the CO
2 adsorption performance of Li
2ZrO
3. Characterization analysis of Li
2ZrO
3 material was conducted using XRD, SEM, and N
2 adsorption-desorption to study the crystal structure, surface morphology, and pore structure characteristics. Thermal gravimetric analysis (TGA) was employed to measure the adsorption rate, adsorption capacity, and adsorption stability of Li
2ZrO
3 material towards CO
2. The results indicate that Li
2ZrO
3 prepared via the sol-gel method exhibits well-developed pores, strong CO
2 adsorption capabilities, and even after 6 cycles of CO
2 adsorption and desorption, it can maintain an increase in weight of 20.88%.