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TECHNICAL PAPER


           [9]   Gupta, S., Rajpoot, S., Thakare, A. A., Jha, H. C., and   [17]  Gupta, T., Chaudhary, S., and Sharma, R. K. (2014).
               Chaudhary, S. (2025). “Upcycling food wastes as a cost-  “Assessment of mechanical and durability properties of
               effective nutrient media in bacterial rubberized mortar for   concrete containing waste rubber tire as fine aggregate”,
               carbon sequestering”, Waste and Biomass Valorization,   Construction and Building Materials, Vol. 73, No. 12,
               Vol. 16, No. 9, pp. 4939–4953. doi: 10.1007/S12649-025-  pp. 562-574. doi: 10.1016/j.conbuildmat.2014.09.102
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                                                                  [18]  Gupta, T., Sharma, R. K., and Chaudhary, S. (2015).
           [10]  Meghana, P., Rohilla, K., Gupta, S., and Chaudhary, S.   “Impact resistance of concrete containing waste rubber
               (2024). “Cryogenic treatment: A novel approach for     fiber and silica fume”, International Journal of Impact
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               treatment of recycled aggregates”, 1  International    Engineering, Vol. 83, No. 9, pp. 76-87. doi: 10.1016/j.
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               and 21  December 2024, Indore, India, pp. 1-5.
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                                                                  [19]  Gupta, T., Tiwari, A., Asce, S. M., Siddique, S., Sharma,
           [11]  Jadhao, P., Tripathi, M., Chaudhary, S., and Gupta,   R. K., and Chaudhary, S. (2017). “Response assessment
               S. (2024). “Development of a novel rotary device for   under dynamic loading and microstructural investigations
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               aggregate”, 1  International Symposium on Materials for   Engineering, Vol. 29, No. 8, Article No. 04017062, pp. 1-15.
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               Sustainable Development, 20  and 21  December 2024,    doi: 10.1061/(asce)mt.1943-5533.0001905
               Indore, India, pp. 1-3.
                                                                  [20]  Siddique, S., Shrivastava, S., and Chaudhary, S. (2019).
           [12]  Gupta, S., Agrawal, H., and Chaudhary, S. (2023). “Thermo-  “Influence of ceramic waste on the fresh properties and
               mechanical treatment as an upcycling strategy for mixed   compressive strength of concrete”, European Journal of
               recycled aggregate”, Construction and Building Materials,   Environmental and Civil Engineering, Vol. 23, No. 2,
               Vol. 398, No. 9, Article No. 132471, pp. 1-10.         pp. 212-225. doi: 10.1080/19648189.2016.1275985
               doi: 10.1016/j.conbuildmat.2023.132471
                                                                  [21]  Siddique, S., Shrivastava, S., and Chaudhary, S. (2017).
           [13]  Gupta, V., Pathak, D. K., Kumar, R., Miglani, A., Siddique,   “Lateral force microscopic examination of interfacial
               S., and Chaudhary, S. (2021). “Production of colored bi-  transition zone in ceramic concrete”, Construction and
               layered bricks from stone processing wastes: Structural and   Building Materials, Vol. 155, No. 11, pp. 688-725.
               spectroscopic characterization”, Construction and Building   doi: 10.1016/j.conbuildmat.2017.08.080
               Materials, Vol. 278, No. 4, Article No. 122339, pp. 1-15. doi:
               10.1016/j.conbuildmat.2021.122339                  [22]  Rajawat, D., Siddique, S., Shrivastava, S., Chaudhary, S.,
                                                                      and Gupta, T. (2018). “Influence of fine ceramic aggregates
           [14]  Thakare, A. A., Singh, A., Gupta, V., Siddique, S., and   on the residual properties of concrete subjected to
               Chaudhary, S. (2021). “Sustainable development of self-  elevated temperature”, Fire and Materials, Vol. 42, No. 7,
               compacting cementitious mixes using waste originated   pp. 834-842. doi: 10.1002/fam.2639
               fibers: A review”, Resources, Conservation and Recycling,
               Vol. 168, No. 5, Article No. 105250, pp. 1-19.     [23]  Siddique, S., Shrivastava, S., Chaudhary, S., and Gupta,
               doi: 10.1016/j.resconrec.2020.105250                   T. (2018). “Strength and impact resistance properties of
                                                                      concrete containing fine bone china ceramic aggregate”,
           [15]  Thakare, A. A., Singh, A., Gupta, T., and Chaudhary, S.   Construction and Building Materials, Vol. 169, No. 4,
               (2022). “Effect of size variation of fibre-shaped waste   pp. 289-298. doi: 10.1016/j.conbuildmat.2018.02.213
               tyre rubber as fine aggregate on the ductility of self-
               compacting concrete”, Environmental Science and    [24]  Siddique, S., Shrivastava, S., and Chaudhary, S. (2018).
               Pollution Research, Vol. 30, No. 8, pp. 20031-20051.   “Durability properties of bone china ceramic fine
               doi: 10.1007/S11356-022-23488-6                        aggregate concrete”, Construction and Building
                                                                      Materials, Vol. 173, No. 6, pp. 323-331. doi: 10.1016/j.
           [16]  Thakare, A. A., Siddique, S., Singh, A., Gupta, T.,   conbuildmat.2018.03.262
               Chaudhary, S., Thakare, A. A., Siddique, S., Singh, A.,
               Gupta, T., and Chaudhary, S. (2022). “Effect of rubber   [25]  Siddique, S., Shrivastava, S., and Chaudhary, S. (2018).
               fiber size fraction on static and impact behavior of   “Evaluating resistance of fine bone china ceramic
               self-compacting concrete”, Advances in Concrete        aggregate concrete to sulphate attack”, Construction and
               Construction, Vol. 13, No. 6, pp. 433-450. doi: 10.12989/  Building Materials, Vol. 186, No. 10, pp. 826-832.
               acc.2022.13.6.433                                      doi: 10.1016/j.conbuildmat.2018.07.138


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