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Jean-Baptiste Mawulé Dassekpo

发布时间:2026-04-17

[1] J.B. M. Dassekpo et al., Performance and characterization of nano-engineered silica waste concrete composite for efficient marine radionuclides remediation, Cement and Concrete Composites, 2025, 105914.

[2] J.B. M. Dassekpo et al., Waste glass as a source for green synthesis of mesoporous adsorbent for efficient removal of heavy metals, Microporous and Mesoporous Materials, 2025, 113393.

[3] J.B. M. Dassekpo et al., Phase dissolution and improving properties of completely decomposed granite through alkali fusion method, Cement and Concrete Composites, Volume 127, 2022, 104407.

[4] J.B. M. Dassekpo et al., Alkali-activation of calcined granitic waste: Reaction mechanisms and environmental implication for waste minimization, Construction and Building Materials, Volume 327, 2022, 126976.

[5] J.B. M. Dassekpo et al., Synthesis and characterization of alkali-activated loess and its application as protective coating, Construction and Building Materials, Volume 282, 2021, 122631.

[6] Y. Fang, L-Y Li, J.B. M. Dassekpo, S-H. Jang, Heat transfer modelling of carbon nanotube reinforced composites, Composites Part B: Engineering, Volume 225, (2021) 109280.

[7] J.B. M. Dassekpo et al., Effect of alkali-activators on loess geopolymer: a potential waterproof repair material, Journal of Materials in Civil Engineering, 2021, 10.1061/(ASCE)MT.1943-5533.0003784.

[8] J.B. M. Dassekpo et al., Potential solidification/stabilization of clay-waste using green geopolymer remediation technologies, Process Safety and Environmental Protection, 117 (2018) 684–693.

[9] J.B. M. Dassekpo et al., Compressive strength performance of geopolymer paste derived from Completely Decomposed Granite (CDG) and partial fly ash replacement Construction and Building Materials, 138 (2017) 195–203.

[10] J.B. M. Dassekpo et al., Synthesis reaction and compressive strength behavior of loess-fly ash based geopolymers for the development of sustainable green materials, Construction and Building Materials, 141C (2017) pp. 491-500.

[11] Bai. J. et al., Low-carbon remediation of contaminated marine mud sediment for efficient in-situ recycling and application, ENGINEERING Environment, 20, 22 (2026).

[12] W.P. Feng, et al., In-situ study on micromechanical behavior of alkali activated fly ash-slag at elevated temperatures, Materials Today Communications, 48, 2025, 113304.

[13] J.Q. Ning, et al., Calcium dissolution-induced porosity increase in cement-solidified MSWIFA: Implications for heavy metal leaching behavior, Process Safety and Environmental Protection, 201, Part A, 2025, 107493.


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