Progressive utilisation prospects of coal fly ash: A review ARK Gollakota, V Volli, CM Shu Science of the Total Environment 672, 951-989, 2019 | 503 | 2019 |
Thermal explosion hazards on 18650 lithium ion batteries with a VSP2 adiabatic calorimeter CY Jhu, YW Wang, CM Shu, JC Chang, HC Wu Journal of hazardous materials 192 (1), 99-107, 2011 | 279 | 2011 |
Thermal runaway potential of LiCoO2 and Li (Ni1/3Co1/3Mn1/3) O2 batteries determined with adiabatic calorimetry methodology CY Jhu, YW Wang, CY Wen, CM Shu Applied Energy 100, 127-131, 2012 | 253 | 2012 |
Inconsistencies of e-waste management in developing nations–Facts and plausible solutions ARK Gollakota, S Gautam, CM Shu Journal of environmental management 261, 110234, 2020 | 222 | 2020 |
Overview of commonly used materials for coal spontaneous combustion prevention QW Li, Y Xiao, KQ Zhong, CM Shu, HF Lü, J Deng, S Wu Fuel 275, 117981, 2020 | 176 | 2020 |
Correlation analysis of the functional groups and exothermic characteristics of bituminous coal molecules during high-temperature oxidation J Zhao, J Deng, L Chen, T Wang, J Song, Y Zhang, CM Shu, Q Zeng Energy 181, 136-147, 2019 | 168 | 2019 |
Safety leadership and safety performance in petrochemical industries: The mediating role of safety climate TC Wu, SH Chang, CM Shu, CT Chen, CP Wang Journal of Loss Prevention in the Process Industries 24 (6), 716-721, 2011 | 153 | 2011 |
A comparison of random forest and support vector machine approaches to predict coal spontaneous combustion in gob C Lei, J Deng, K Cao, Y Xiao, L Ma, W Wang, T Ma, C Shu Fuel 239, 297-311, 2019 | 149 | 2019 |
Assessing the effectiveness of a high-temperature-programmed experimental system for simulating the spontaneous combustion properties of bituminous coal through thermokinetic … J Zhao, J Deng, T Wang, J Song, Y Zhang, CM Shu, Q Zeng Energy 169, 587-596, 2019 | 146 | 2019 |
Comparative analysis of thermokinetic behavior and gaseous products between first and second coal spontaneous combustion Y Xiao, SJ Ren, J Deng, CM Shu Fuel 227, 325-333, 2018 | 146 | 2018 |
Combustion properties of coal gangue using thermogravimetry–Fourier transform infrared spectroscopy J Deng, B Li, Y Xiao, L Ma, CP Wang, B Lai-Wang, CM Shu Applied Thermal Engineering 116, 244-252, 2017 | 134 | 2017 |
Inhibiting effects of three commercial inhibitors in spontaneous coal combustion J Deng, Y Yang, YN Zhang, B Liu, CM Shu Energy 160, 1174-1185, 2018 | 126 | 2018 |
Experimental study on the thermal properties of coal during pyrolysis, oxidation, and re-oxidation J Deng, QW Li, Y Xiao, CM Shu Applied Thermal Engineering 110, 1137-1152, 2017 | 124 | 2017 |
Microcharacteristic analysis of CH4 emissions under different conditions during coal spontaneous combustion with high-temperature oxidation and in situ FTIR J Zhao, T Wang, J Deng, CM Shu, Q Zeng, T Guo, Y Zhang Energy 209, 118494, 2020 | 119 | 2020 |
Explosion venting hazards of temperature effects and pressure characteristics for premixed hydrogen-air mixtures in a spherical container W Cao, W Li, S Yu, Y Zhang, CM Shu, Y Liu, J Luo, L Bu, Y Tan Fuel 290, 120034, 2021 | 117 | 2021 |
Dynamic hazard evaluation of explosion severity for premixed hydrogen–air mixtures in a spherical pressure vessel Y Zhang, W Cao, CM Shu, M Zhao, C Yu, Z Xie, J Liang, Z Song, X Cao Fuel 261, 116433, 2020 | 117 | 2020 |
Thermokinetic characteristics of coal spontaneous combustion based on thermogravimetric analysis QW Li, Y Xiao, CP Wang, J Deng, CM Shu Fuel 250, 235-244, 2019 | 115 | 2019 |
Bioaerosols: characterization, pathways, sampling strategies, and challenges to geo-environment and health ARK Gollakota, S Gautam, M Santosh, HA Sudan, R Gandhi, ... Gondwana Research 99, 178-203, 2021 | 106 | 2021 |
Hazard evaluation of explosion venting behaviours for premixed hydrogen-air fuels with different bursting pressures Y Zhang, R Chen, M Zhao, J Luo, W Feng, W Fan, Y Tan, W Cao, CM Shu, ... Fuel 268, 117313, 2020 | 106 | 2020 |
Application of risk based inspection in refinery and processing piping MK Chang, RR Chang, CM Shu, KN Lin Journal of Loss Prevention in the Process Industries 18 (4-6), 397-402, 2005 | 105 | 2005 |