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키토산을 이용한 탄진수 응집제 개발 및 평가 홍웅길, 나재운, 정경원 Applied Chemistry for Engineering, 32(2), 139, 2021 |
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Study on preparation and properties of mineral surfactant - microbial dust suppressant Zhu SC, Zhao YY, Hu XM, Wu MY, Cheng WM, Fan YJ, Song CY, Tang XL Powder Technology, 383, 233, 2021 |
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CFD comparative analysis on the pollution characteristics of coal dust under turbulent airflow from coal cutting in the fully mechanized mining face Zhang GB, Sun B, Song SZ, Wang H, Zhou G Process Safety and Environmental Protection, 146, 515, 2021 |
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Numerical study of interaction of coal dust with premixed fuel-lean methane-air flames Tousif M, Harish A, Kumaran SM, Raghavan V Advanced Powder Technology, 31(9), 3833, 2020 |
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Urease producing microorganisms for coal dust suppression isolated from coal: Characterization and comparative study Fan YJ, Hu XM, Zhao YY, Wu MY, Wang SM, Wang PY, Xue Y, Zhu SC Advanced Powder Technology, 31(9), 4095, 2020 |
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Influences of ventilation velocity on dust dispersion in coal roadways Hu SY, Liao Q, Feng GR, Huang YS, Shao H, Gao Y, Hu F Powder Technology, 360, 683, 2020 |
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An experimental investigation on the influence of coal brittleness on dust generation Zhou WD, Wang HT, Wang DM, Du YH, Zhang K, Qiao YC Powder Technology, 364, 457, 2020 |
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Role of particle diameter in laminar combustion regimes for hybrid mixtures of coal dust and methane gas Cloney CT, Ripley RC, Pegg MJ, Amyotte PR Powder Technology, 362, 399, 2020 |
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Experimental study on the explosion-propagation law of coal dust with different moisture contents induced by methane explosion Niu YH, Zhang LL, Shi BM Powder Technology, 361, 507, 2020 |
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Effect of low-concentration coal dust on gas explosion propagation law Guo CW, Shao H, Jiang SG, Wang YJ, Wang K, Wu ZY Powder Technology, 367, 243, 2020 |