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Studies on CWL with glycerol for combustion process

机译:甘油与煤浆燃烧过程的研究

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摘要

Findings of more efficient energy recovery methods are focused on composite fuels consisting of coal, water, and waste materials. The use of such slurry fuels has enormous environmental benefits due to the potential for waste utilization and low emissions of harmful oxides to the atmosphere during the combustion process. In this study, we report the effect of waste glycerol on the rheological properties of coal-water fuel (CWS). The addition of glycerol to CWS increases the viscosity (from 45.5 to 184.2 mPa·s at a shear rate of 100 rpm) and density (from 1.08 to 1.11 g/cm3) of these suspensions. The utility of choice of the most favorable parameters is equal to 0.85 for both CWS and CWS with added glycerol. Due to the fact that CWS is dosed to heated chamber, its modification with glycerol results in easier nebulization into the combustion chamber, lowering of the solidification temperature and increasing the calorific value of the resulting fuel. During combustion of CWS with glycerol, the amount of SO2 and NOx emitted is reduced by half as compared to the emission of these gases during hard coal combustion.
机译:更有效的能量回收方法的发现集中在由煤,水和废料组成的复合燃料上。由于在燃烧过程中废物利用的可能性和有害氧化物向大气的低排放,使用这种浆料燃料具有巨大的环境效益。在这项研究中,我们报告了废甘油对水煤燃料(CWS)流变性能的影响。在CWS中添加甘油可将这些悬浮液的粘度(在100 rpm的剪切速率下从45.5提高到184.2 mPa·s)和密度(从1.08到1.11 g / cm 3 )。对于CWS和添加甘油的CWS,选择最有利参数的效用等于0.85。由于将CWS配给加热室这一事实,用甘油对其进行的改性导致更容易雾化进入燃烧室,降低了凝固温度并提高了所得燃料的热值。与硬煤燃烧过程中这些气体的排放相比,在CWS与甘油燃烧过程中,SO2和NOx的排放量减少了一半。

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