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ROY, R. – TIWARI, M. – DONELLI, G. – TIWARI, V.: Strategies for Combating Bacterial Biofilms: A Focus on Anti-Biofilm Agents and Their Mechanisms of Action. Virulence. Vol. 9, 2018, pp. 522–554.Search in Google Scholar
DUGAN, I. – BOGUNOVIC, I. – PEREIRA, P.: Soil Management and Seasonality Impact on Soil Properties and Soil Erosion in Steep Vineyards of North-Western Croatia. Journal of Hydrology and Hydromechanics. Vol. 71, 2023, pp. 91–99.Search in Google Scholar
STACHO, J. – SULOVSKA, M. – SLAVIK, I.: Analysis of the Shear Strength of a Soil-Geosynthetic Interface. Civil and Environmental Engineering. Vol. 19, 2023, pp. 452–463.Search in Google Scholar
GAGO, F. – MIHÁLIK, J. – MASAROVIČOVÁ, S. – VLČEK, J. – BOLTNAR, V. – ULIČNÝ, L.: Large Scale Shear Box Testing of Interface Between Construction Materials and Soils. Civil and Environmental Engineering. Vol. 19, 2023, pp. 724–729.Search in Google Scholar
BUTT, W. A. – GUPTA, K. – JHA, J. N.: Strength Behavior of Clayey Soil Stabilized with Saw Dust Ash. International Journal of Geo-Engineering. Vol. 7, 2016, pp. 1–9.Search in Google Scholar
AL-KHAFAJI, Z. S. – AL-NAELY, H. K. – AL-NAJAR, A. E.: A Review Applying Industrial Waste Materials in Stabilisation of Soft Soil. Electronic Journal of Structural Engineering. Vol. 18, 2018, pp. 16–23.Search in Google Scholar
AL-KHAFAJI, Z. S. – JAFER, H. – DULAIMI, A. F. – ATHERTON, W. – AL MASOODI, Z.: The Soft Soil Stabilisation Using Binary Blending of Ordinary Portland Cement and High Alumina Silica Waste Material. 3rd BUiD Doctoral Research Conference, British University in Dubai. 2017.Search in Google Scholar
HUSSAIN, A. J. – AL-KHAFAJI, Z. S.: Reduction of Environmental Pollution and Improving the Mechanical, Physical and Chemical Characteristics of Contaminated Clay Soil by Using Recycled Oil. Journal of Advanced Research in Dynamical and Control Systems. Vol. 12, 2020, pp. 1276–1286.Search in Google Scholar
AL-MASOODI, Z. O. – AL-KHAFAJI, Z. – JAFER, H. M. – DULAIMI, A. – ATHERTON, W.: The Effect of a High Alumina Silica Waste Material on the Engineering Properties of a Cement-Stabilised Soft Soil. 3rd BUiD Doctoral Research Conference, Dubai, UAE. 2017.Search in Google Scholar
AL-MASOODI, Z. – DULAIMI, A. – JAFER, H. – AL-KHAFAJI, Z. – ATHERTON, W. – SAFA, H.: Soft Soil Treated with Waste Fluid Catalytic Cracking as a Sustainable Stabilizer Material. Iraqi Geological Journal. Vol. 54, 2022, pp. 84–98.Search in Google Scholar
AL-KHAFAJI, Z. S. – AL MASOODI, Z. – JAFER, H. – DULAIMI, A. – ATHERTON, W.: The Effect of Using Fluid Catalytic Cracking Catalyst Residue (FC3R) as a Cement Replacement in Soft Soil Stabilisation. International Journal of Civil Engineering and Technology. Vol. 9, 2018, pp. 522–533.Search in Google Scholar
PATEL, A.: Geotechnical Investigations and Improvement of Ground Conditions. Woodhead Publishing, 2019.Search in Google Scholar
ESAYAS, E. – AGON, E. C. – ASSEFA, S.: Development of Wall Construction Material Stabilized with Enset Vegetable Fibers for Rural Housing Units. American Journal of Civil Engineering and Architecture. Vol. 6, 2018, pp. 54–62.Search in Google Scholar
BELMANA, A. – MELLAS, M. – CAVALEIRO, V.: Assessment of Coarse Soil’s Stability Towards Internal Erosion: Case of Biskra’s Dam Soil. Civil and Environmental Engineering. Vol. 20, 2024, pp. 332–348.Search in Google Scholar
FRIGIONE, M. – AGUIAR, J. L. B.: Innovative Materials for Construction. Materials (Basel). Vol. 13, 2020, p. 5448.Search in Google Scholar
BASU, D. – MISRA, A. – PUPPALA, A. J.: Sustainability and Geotechnical Engineering: Perspectives and Review. Canadian Geotechnical Journal. Vol. 52, 2015, pp. 96–113.Search in Google Scholar
DEVKOTA, B. – KARIM, M. R. – RAHMAN, M. M. – NGUYEN, H. B. K.: Accounting for Expansive Soil Movement in Geotechnical Design—A State-of-the-Art Review. Sustainability. Vol. 14, 2022, p. 15662.Search in Google Scholar
PUPPALA, A. J. – MANOSUTHIKIJ, T. – CHITTOORI, B. C. S.: Swell and Shrinkage Characterizations of Unsaturated Expansive Clays from Texas. Engineering Geology. Vol. 164, 2013, pp. 187–194.Search in Google Scholar
KEDRU, A.: Assessment of Geotechnical-Related Problems in Water Retaining Tanks Constructed on Expansive Soils. KWWTP. 2017.Search in Google Scholar
JALEH FOROUZAN, A.: Prediction of Swelling Behavior of Expansive Soils Using Modified Free Swell Index, Methylene Blue and Swell Oedometer Tests. 2016.Search in Google Scholar
KODIKARA, J. – ISLAM, T. – SOUNTHARARAJAH, A.: Review of Soil Compaction: History and Recent Developments. Transportation Geotechnics. Vol. 17, 2018, pp. 24–34.Search in Google Scholar
WANG, Y. – GUO, P. – LI, X. – LIN, H. – LIU, Y. – YUAN, H.: Behavior of Fiber-Reinforced and Lime-Stabilized Clayey Soil in Triaxial Tests. Applied Sciences. Vol. 9, 2019, p. 900.Search in Google Scholar
ROY, R. – TIWARI, M. – DONELLI, G. – TIWARI, V.: Strategies for Combating Bacterial Biofilms: A Focus on Anti-Biofilm Agents and Their Mechanisms of Action. Virulence. Vol. 9, 2018, pp. 522–554.Search in Google Scholar
DUGAN, I. – BOGUNOVIC, I. – PEREIRA, P.: Soil Management and Seasonality Impact on Soil Properties and Soil Erosion in Steep Vineyards of North-Western Croatia. Journal of Hydrology and Hydromechanics. Vol. 71, 2023, pp. 91–99.Search in Google Scholar
STACHO, J. – SULOVSKÁ, M. – SLAVÍK, I.: Analysis of the Shear Strength of a Soil-Geosynthetic Interface. Civil and Environmental Engineering. Vol. 19, 2023, pp. 452–463.Search in Google Scholar
GAGO, F. – MIHÁLIK, J. – MASAROVIČOVÁ, S. – VLČEK, J. – BOLTNAR, V. – ULIČNÝ, L.: Large Scale Shear Box Testing of Interface Between Construction Materials and Soils. Civil and Environmental Engineering. Vol. 19, 2023, pp. 724–729.Search in Google Scholar
BUTT, W. A. – GUPTA, K. – JHA, J. N.: Strength Behavior of Clayey Soil Stabilized with Saw Dust Ash. International Journal of Geo-Engineering. Vol. 7, 2016, pp. 1–9.Search in Google Scholar
AL-KHAFAJI, Z. S. – AL-NAELY, H. K. – AL-NAJAR, A. E.: A Review Applying Industrial Waste Materials in Stabilisation of Soft Soil. Electronic Journal of Structural Engineering. Vol. 18, 2018, pp. 16–23.Search in Google Scholar
AL-KHAFAJI, Z. S. – JAFER, H. – DULAIMI, A. F. – ATHERTON, W. – AL MASOODI, Z.: The Soft Soil Stabilisation Using Binary Blending of Ordinary Portland Cement and High Alumina Silica Waste Material. 3rd BUiD Doctoral Research Conference, British University in Dubai. 2017.Search in Google Scholar
HUSSAIN, A. J. – AL-KHAFAJI, Z. S.: Reduction of Environmental Pollution and Improving the Mechanical, Physical and Chemical Characteristics of Contaminated Clay Soil by Using Recycled Oil. Journal of Advanced Research in Dynamical and Control Systems. Vol. 12, 2020, pp. 1276–1286.Search in Google Scholar
AL-MASOODI, Z. O. – AL-KHAFAJI, Z. – JAFER, H. M. – DULAIMI, A. – ATHERTON, W.: The Effect of a High Alumina Silica Waste Material on the Engineering Properties of a Cement-Stabilised Soft Soil. 3rd BUiD Doctoral Research Conference, Dubai, UAE. 2017.Search in Google Scholar
AL-MASOODI, Z. – DULAIMI, A. – JAFER, H. – AL-KHAFAJI, Z. – ATHERTON, W. – SAFA, H.: Soft Soil Treated with Waste Fluid Catalytic Cracking as a Sustainable Stabilizer Material. Iraqi Geological Journal. Vol. 54, 2022, pp. 84–98.Search in Google Scholar
AL-KHAFAJI, Z. S. – AL MASOODI, Z. – JAFER, H. – DULAIMI, A. – ATHERTON, W.: The Effect of Using Fluid Catalytic Cracking Catalyst Residue (FC3R) as a Cement Replacement in Soft Soil Stabilisation. International Journal of Civil Engineering and Technology. Vol. 9, 2018, pp. 522–533.Search in Google Scholar
PATEL, A.: Geotechnical Investigations and Improvement of Ground Conditions. Woodhead Publishing, 2019.Search in Google Scholar
ESAYAS, E. – AGON, E. C. – ASSEFA, S.: Development of Wall Construction Material Stabilized with Enset Vegetable Fibers for Rural Housing Units. American Journal of Civil Engineering and Architecture. Vol. 6, 2018, pp. 54–62.Search in Google Scholar
BELMANA, A. – MELLAS, M. – CAVALEIRO, V.: Assessment of Coarse Soil’s Stability Towards Internal Erosion: Case of Biskra’s Dam Soil. Civil and Environmental Engineering. Vol. 20, 2024, pp. 332–348.Search in Google Scholar
FRIGIONE, M. – AGUIAR, J. L. B.: Innovative Materials for Construction. Materials (Basel). Vol. 13, 2020, p. 5448.Search in Google Scholar
BASU, D. – MISRA, A. – PUPPALA, A. J.: Sustainability and Geotechnical Engineering: Perspectives and Review. Canadian Geotechnical Journal. Vol. 52, 2015, pp. 96–113.Search in Google Scholar
DEVKOTA, B. – KARIM, M. R. – RAHMAN, M. M. – NGUYEN, H. B. K.: Accounting for Expansive Soil Movement in Geotechnical Design—A State-of-the-Art Review. Sustainability. Vol. 14, 2022, p. 15662.Search in Google Scholar
PUPPALA, A. J. – MANOSUTHIKIJ, T. – CHITTOORI, B. C. S.: Swell and Shrinkage Characterizations of Unsaturated Expansive Clays from Texas. Engineering Geology. Vol. 164, 2013, pp. 187–194.Search in Google Scholar
KEDRU, A.: Assessment of Geotechnical-Related Problems in Water Retaining Tanks Constructed on Expansive Soils. KWWTP, 2017.Search in Google Scholar
JALEH FOROUZAN, A.: Prediction of Swelling Behavior of Expansive Soils Using Modified Free Swell Index, Methylene Blue and Swell Oedometer Tests. 2016.Search in Google Scholar
KODIKARA, J. – ISLAM, T. – SOUNTHARARAJAH, A.: Review of Soil Compaction: History and Recent Developments. Transportation Geotechnics. Vol. 17, 2018, pp. 24–34.Search in Google Scholar
WANG, Y. – GUO, P. – LI, X. – LIN, H. – LIU, Y. – YUAN, H.: Behavior of Fiber-Reinforced and Lime-Stabilized Clayey Soil in Triaxial Tests. Applied Sciences. Vol. 9, 2019, p. 900.Search in Google Scholar