# | Document title | Authors | Year | Source | Cited by |
1 | The mechanical properties and heat development behavior of high strength concrete containing high fineness coal bottom ash as a pozzolanic binder | Khongpermgoson P., Boonlao K., Ananthanet N., Thitithananon T., Jaturapitakkul C., Tangchirapat W., Ban C.C. | 2020 | Construction and Building Materials, 253, 119239 | 54 |
2 | Evaluation of compressive strength and resistance of chloride ingress of concrete using a novel binder from ground coal bottom ash and ground calcium carbide residue | Khongpermgoson P., Abdulmatin A., Tangchirapat W., Jaturapitakkul C. | 2019 | Construction and Building Materials, 214, pp. 631-640 | 41 |
3 | Use of Eco-Friendly Cementing Material in Concrete Made from Bottom Ash and Calcium Carbide Residue | Abdulmatin A., Khongpermgoson P., Jaturapitakkul C., Tangchirapat W. | 2018 | Arabian Journal for Science and Engineering, 43(4), pp. 1617-1626 | 28 |
4 | Bottom ash as an Alternative Pozzolanic Material to Produce Eco-Friendly, High-Quality Chloride-Resistant Concrete | Abdulmatin A., Khongpermgoson P.S.i., Khongpermgoson P.S.i., Sanit-in S., Jaturapitakkul C., Tangchirapat W., Khomwan N., Pham T.M. | 2022 | Iranian Journal of Science and Technology - Transactions of Civil Engineering | 4 |
5 | Experimental Investigation on Post-Fire Mechanical Properties of Glass Fiber-Reinforced Polymer Rebars | Thongchom C., Hu L., Sanit-in P.K., Kontoni D.P.N., Kontoni D.P.N., Praphaphankul N., Tiprak K., Kongwat S. | 2023 | Polymers, 15(13), 2925 | 3 |
6 | An alternative approach to protect micro-cracked reinforced concrete under a marine environment | Thongchom C., Sanit-in P.K., Tangchirapat W., Jaturapitakkul C., Sanit-in S. | 2024 | Case Studies in Construction Materials, 21, e03525 | 3 |
7 | An investigation of palm oil fuel ash and limestone powder for use in sustainable high strength concrete construction | Sanit-In P., Charoensuk T., Dueramae S., Abdulmatin A., Ratanachu P., Tangchirapat W., Jaturapitakkul C. | 2024 | Materiales de Construccion, 74(355), e351 | 0 |
8 | Restrained Shrinkage Behavior of High-Strength Concrete with Various Synthetic Fiber and Cellulose Fiber Proportions | Sangkeaw P., Thongchom C., Sanit-In P.K., Prasittisopin L., Pansuk W. | 2025 | Journal of Materials in Civil Engineering, 37(6), 04025165 | 0 |