Quantifying the Self-Healing Efficiency of Bioconcrete Using Bacillus subtilis Immobilized in Polymer-Coated Lightweight Expanded Clay Aggregates
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Ahmad, I.; Shokouhian, M.; Jenkins, M.; McLemore, G.L. Quantifying the Self-Healing Efficiency of Bioconcrete Using Bacillus subtilis Immobilized in Polymer-Coated Lightweight Expanded Clay Aggregates. Buildings 2024, 14, 3916. https://doi.org/10.3390/buildings14123916
Ahmad I, Shokouhian M, Jenkins M, McLemore GL. Quantifying the Self-Healing Efficiency of Bioconcrete Using Bacillus subtilis Immobilized in Polymer-Coated Lightweight Expanded Clay Aggregates. Buildings. 2024; 14(12):3916. https://doi.org/10.3390/buildings14123916
Chicago/Turabian StyleAhmad, Izhar, Mehdi Shokouhian, Marshell Jenkins, and Gabrielle L. McLemore. 2024. "Quantifying the Self-Healing Efficiency of Bioconcrete Using Bacillus subtilis Immobilized in Polymer-Coated Lightweight Expanded Clay Aggregates" Buildings 14, no. 12: 3916. https://doi.org/10.3390/buildings14123916
APA StyleAhmad, I., Shokouhian, M., Jenkins, M., & McLemore, G. L. (2024). Quantifying the Self-Healing Efficiency of Bioconcrete Using Bacillus subtilis Immobilized in Polymer-Coated Lightweight Expanded Clay Aggregates. Buildings, 14(12), 3916. https://doi.org/10.3390/buildings14123916