1 |
Using demolition wastes from urban regeneration as sensible thermal energy storage material Kocak B, Paksoy H International Journal of Energy Research, 43(12), 6454, 2019 |
2 |
Evaluation of injection well patterns for optimum fracture network generation host-rock formations: An application in in-situ leaching De Silva VRS, Ranjith PG Minerals Engineering, 137, 319, 2019 |
3 |
In-situ shear strength of compacted demolition waste Xu YF Powder Technology, 352, 72, 2019 |
4 |
High-efficiency second generation ethanol from the hemicellulosic fraction of softwood chips mixed with construction and demolition residues Boboescu IZ, Gelinas M, Beigbeder JB, Lavoie JM Bioresource Technology, 266, 421, 2018 |
5 |
A study on the CO2 capture and attrition performance of construction and demolition waste Cai JJ, Wang SZ, Xiao ZZ Fuel, 222, 232, 2018 |
6 |
Fractal dimension of demolition waste fragmentation and its implication of compactness Xu YF Powder Technology, 339, 922, 2018 |
7 |
A modified, hydrophobic soundless cracking demolition agent for non-explosive demolition and fracturing applications De Silva VRS, Ranjith PG, Perera MSA, Wu B, Rathnaweera TD Process Safety and Environmental Protection, 119, 1, 2018 |
8 |
Torrefaction of biomass from municipal solid waste fractions II: Grindability characteristics, higher heating value, pelletability and moisture adsorption Iroba KL, Baik OD, Tabil LG Biomass & Bioenergy, 106, 8, 2017 |
9 |
Torrefaction of biomass from municipal solid waste fractions I: Temperature profiles, moisture content, energy consumption, mass yield, and thermochemical properties Iroba KL, Baik OD, Tabil LG Biomass & Bioenergy, 105, 320, 2017 |
10 |
Characterization of Aerosol Particles Produced by a Skyscraper Demolition by Blasting Wagner AC, Bergen A, Brilke S, Buhner B, Ebert M, Haunold W, Heinritzi M, Herzog S, Jacobi S, Kurten A, Piel F, Ramme A, Weber D, Weinbruch S, Curtius J Journal of Aerosol Science, 112, 11, 2017 |