论文著作:
[1] Li X.Y., Wang Z.Q., Feng R., Huang J.J., Fang Y.T. CO2 capture on aminosilane functionalized alumina-extracted residue of catalytic gasification coal ash. Energy 2021, 221: 119642.
[2] Li X.Y., Wang Z.Q., Liu Z.Y., Feng R., Song S.S., Huang J.J., Fang Y.T. A novel preparation of nano-porous solid amine sorbents for enhancing CO2 adsorption capacity using alumina-extracted waste. Energy 2022, 248: 123677.
[3] Li X.Y., Wang Z.Q., Mei Y.G., Feng R., Liu Z.Y., Huang J.J., Dong L.B., Fang Y.T. Alumina-extracted residue-derived silica foams with ultra-large pore volume for highly superior post-combustion CO2 capture. Fuel 2022, 316: 123231.
[4] Li X.Y., Wang Z.Q., Feng R., Huang J.J., Fang Y.T. A novel approach to prepare efficient CO2 sorbents derived from alumina-extracted residue of coal ash. Journal of Environmental Chemical Engineering 2021, 9(6): 106373.
[5] Li X. Y., Wang Z.Q., Wang J. W., Jing X., Huang J.J., Li L., Mei Y. G., Li W. Z., Fang Y. T. Acid-leaching and silanization of catalytic gasification ash enhance the mechanical properties of polyurethane/ash composites. Industrial and Engineering Chemistry Research 2019, 58(3): 1426-33.
[6] Tan M. M., Li X. Y.*, Feng Y., Wang B., Han L. N., Bao W. R., Chang L. P., Wang J. C*. Fly ash-derived mesoporous silica with large pore volume for augmented CO2 capture. FUEL 2023, 351, 128874.