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Virginia Tech researchers discover potentially harmful airborne nanoparticles produced through burning of coal(图)
Virginia Tech researchers potentially harmful airborne nanoparticles burning of coal
2017/8/8
Environmental scientists led by the Virginia Tech College of Science have discovered that the burning of coal produces incredibly small particles of a highly unusual form of titanium oxide.When inhale...
第18届国际煤炭科学技术大会(2017 International Conference on Coal Science & Technology and 2017 Australia-China Symposium on Energy)
第18届 国际 煤炭科学技术 大会
2017/3/14
2017 ICCS&T and 2017 ACSE are working together on some exciting keynote speakers presenting combined plenary sessions. Each conference will still run their own technical program but will share the sam...
Relations between Coal Properties and Spontaneous Combustion Parameters
Spontaneous combustion Coal
2009/10/13
The results of linear and multiple regression analyses to determine the relationship between spontaneous combustion parameters (derived from time-temperature curves obtained from laboratory tests) and...
The Effect of Forced Convection on Coal Combustion。
Disturbances in N2-CARS Gas Temperature Measurements in Pulverised Coal-Air-CH4 Flames
Laser diagnostics CARS C2 interference Temperature measurement
2009/10/12
The application of nitrogen vibrational and rotational CARS thermometry to flat, premixed, laminar,methane-air and coal-methane-air flames has been investigated using a Nd:YAG and dye laser system at ...
煤层气—空气预混层流火焰特性试验(Experiment on the Premixed Laminar Flames of Coal Bed Methane-air Mixtures)
煤层气 预混层流火焰 定容燃烧弹
2009/9/2
利用高速摄影技术,在定容燃烧弹中研究了不同燃空当量比、初始压力和煤层气中CH4浓度对煤层气燃烧火焰传播速度和层流燃烧速度的影响。研究结果表明:在燃空当量比为1.1时层流燃烧速度最大;燃烧开始时,随着初始混合压力的增加,最大燃烧压力明显增加,火焰传播速度和层流燃烧速度减小,火焰半径大于40mm后,层流火焰传播速度和燃烧速度又随初始压力的增加而增大;随着煤层气中CH4浓度的增加,层流燃烧速度和最高燃烧...