1 |
Reactive force-field simulation of the effect of heating rate on pyrolysis behavior of lignite Xu F, Wang Q, Wu C Korean Journal of Chemical Engineering, 39(3), 576, 2022 |
2 |
Influence of heating rate on formation of nanostructured tungsten carbides during thermo-chemical processing Reddy KM, Zou XS, Hu YX, Zhang HB, Rao TN, Joardar J Advanced Powder Technology, 32(1), 121, 2021 |
3 |
Effect of vibration treatment on interfacial strength of microwave curing process for advanced composites Guan CL, Zhan LH, Dai GM, Xiao Y Composite Interfaces, 28(3), 237, 2021 |
4 |
Influences of heating rate on the nano-porous structure of silica aerogel Huang DM, Wang CY, Shen YM, Shi L Particulate Science and Technology, 39(1), 123, 2021 |
5 |
Supercritical extraction of biomass as an effective pretreatment step for the char yield control in pyrolysis Trubetskaya A, Budarin V, Arshadi M, Magalhaes D, Kazanc F, Hunt AJ Renewable Energy, 170, 107, 2021 |
6 |
Determination of kinetic parameters of exothermic condensed phase reaction using the energetic material ignition delay data Zarko VE, Knyazeva AG Combustion and Flame, 221, 453, 2020 |
7 |
Effect of Heating Rate on Ignition Characteristics of Newly Prepared and Aged Aluminum Nanoparticles Jin X, Li SJ, Yang YH, Yang YJ, Huang XF Propellants Explosives Pyrotechnics, 45(9), 1428, 2020 |
8 |
Effect of Heating Rate on Ignition Characteristics of Newly Prepared and Aged Aluminum Nanoparticles Jin X, Li SJ, Yang YH, Yang YJ, Huang XF Propellants Explosives Pyrotechnics, 45(9), 1428, 2020 |
9 |
Effects of carbonization conditions on the yield and fixed carbon content of biochar from pruned apple tree branches Yang XM, Kang K, Qiu L, Zhao LX, Sun RH Renewable Energy, 146, 1691, 2020 |
10 |
The effect of heating rate, particle size and gas flow on the yield of charcoal during the pyrolysis of radiata pine wood Somerville M, Deev A Renewable Energy, 151, 419, 2020 |