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Catalytic hydrocracking reactions of tetralin as aromatic biomass tar model compound to benzene/toluene/xylenes (BTX) over zeolites under ambient pressure conditions Kostyniuk A, Bajec D, Likozar B Journal of Industrial and Engineering Chemistry, 96, 130, 2021 |
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Insight into an invisible active site presented in the low temperature pyrolysis of toluene by CoMn spinel catalyst Wang CH, Xu X, Ma XC, Chen RF, Liu BG, Du YK, Zeng Z, Li LQ Journal of Catalysis, 391, 111, 2020 |
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Kinetic study of the effect of in-situ mineral solids on pyrolysis process of oil sludge Qu Y, Li AM, Wang D, Zhang L, Ji GZ Chemical Engineering Journal, 374, 338, 2019 |
4 |
Initial pyrolysis mechanism of cellulose revealed by in-situ DRIFT analysis and theoretical calculation Dai GX, Wang KG, Wang GY, Wang SR Combustion and Flame, 208, 273, 2019 |
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Mechanism insight into the fast pyrolysis of xylose, xylobiose and xylan by combined theoretical and experimental approaches Hu B, Lu Q, Zhang ZX, Wu YT, Li K, Dong CQ, Yang YP Combustion and Flame, 206, 177, 2019 |
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Mechanism study on the pyrolysis of the typical ether linkages in biomass Dai GX, Zhu YN, Yang JZ, Pan Y, Wang GY, Reubroycharoen P, Wang SR Fuel, 249, 146, 2019 |
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Kinetic study on the pyrolysis behavior of Jimsar oil shale Pan N, Li DN, Lu W, Dai FQ Oil Shale, 36(4), 462, 2019 |
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Evolved gas analysis and slow pyrolysis mechanism of bamboo by thermogravimetric analysis, Fourier transform infrared spectroscopy and gas chromatography-mass spectrometry Wu XF, Ba YX, Wang X, Niu MJ, Fang K Bioresource Technology, 266, 407, 2018 |
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Slow pyrolysis polygeneration of bamboo (Phyllostachys pubescens): Product yield prediction and biochar formation mechanism Wang HH, Wang X, Cui YS, Xue ZC, Ba YX Bioresource Technology, 263, 444, 2018 |
10 |
The effect of temperature and pressure on n-heptane thermal cracking in regenerative cooling channel Wu Y, Wang XH, Song QS, Zhao LG, Su H, Li HH, Zeng XJ, Zhao DQ, Xu JZ Combustion and Flame, 194, 233, 2018 |