1 |
The application of molecular simulation in ash chemistry of coal Dai X, Bai J, Yuan P, Du SY, Li DT, Wen XD, Li W Chinese Journal of Chemical Engineering, 28(11), 2723, 2020 |
2 |
Neural network prediction of parameters of biomass ashes, reused within the circular economy frame Sakiewicz P, Piotrowski K, Kalisz S Renewable Energy, 162, 743, 2020 |
3 |
Regulation of ash fusibility for high ash-fusion-temperature (AFT) coal by industrial sludge addition Li M, Li FH, Liu QR, Fang YT, Xiao HX Fuel, 244, 91, 2019 |
4 |
Influences of phosphorus on ash fusion characteristics of coal and its regulation mechanism Li FH, Fan HL, Wang XC, Wang T, Fang YT Fuel, 239, 1338, 2019 |
5 |
Influence of coal ash on potassium retention and ash melting characteristics during gasification of corn stalk coke Zhang H, Li JG, Yang X, Guo S, Zhan HJ, Zhang YQ, Fang YT Bioresource Technology, 270, 416, 2018 |
6 |
Investigating a high vanadium petroleum coke ash fusibility and its modification Li JZ, Xiong Q, Shan J, Zhao JT, Fang YT Fuel, 211, 767, 2018 |
7 |
Effect of Chemical Compositions on Ash Fusibility Characterization of a Jincheng Anthracite during Combustion and Gasification Jing NJ, Zhu HM, Wang QH Chemical Engineering Communications, 204(8), 858, 2017 |
8 |
Modification of ash fusion behavior of coal with high ash fusion temperature by red mud addition Xiao HX, Li FH, Liu QR, Ji SH, Fan HL, Xu ML, Guo QQ, Ma MJ, Ma XW Fuel, 192, 121, 2017 |
9 |
Study on fusibility of coal ash rich in sodium and sulfur by synthetic ash under different atmospheres Chen XD, Kong LX, Bai J, Bai ZQ, Li W Fuel, 202, 175, 2017 |
10 |
Regulation of ash-fusion behaviors for high ash-fusion-temperature coal by coal blending Li FH, Ma XW, Xu ML, Fang YT Fuel Processing Technology, 166, 131, 2017 |