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An experimental study of rheological properties and stability characteristics of biochar-glycerol-water slurry fuels

机译:生物炭-甘油-水浆料燃料的流变特性和稳定性的实验研究

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The rheological behaviour and stability characteristics of biochar-glycerol-water slurry fuels were experimentally investigated, emphasising the effect of glycerol addition. A pine sawdust biochar with a size fraction of < 32 mu m and a median particle size (D-50) of approximately 12 pm was used. A biochar-glycerol-water slurry fuel was prepared by dispersing biochar particles in a premixed glycerol/water solution as the suspending medium with glycerol content varying from 0 to 100 wt%. 2 wt% lignosulfonic acid sodium salt (LASS) (on the basis of dry weight of biochar) was added to the suspending medium as a dispersant. The effect of glycerol content on the rheological properties and stability characteristics of the slurry fuels were studied. The yield stress was measured with a Brookfield vane viscometer and the dependence of apparent viscosity and shear stress on the shear rate was characterised using a Haake VT550 cone and plate viscometer. The stability characteristics of the slurry fuels were characterised by using a "drop rod" method. As glycerol content increased, the maximum biochar loading decreased from 50 to 10 wt% while the calorific values of the slurry fuels first increased and then decreased, reaching a maximum of 21 MJ kg(-1) at 90 wt% glycerol content. For a given biochar loading, increasing glycerol content increased the viscosity of the suspending medium and therefore the viscosity of the slurry fuels, displaying higher yield stress, more apparent shear-thinning behaviour and higher stability due to the enhanced flocculation of biochar particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:实验研究了生物炭-甘油-水浆状燃料的流变行为和稳定性,强调了添加甘油的作用。使用尺寸小于32微米且中值粒径(D-50)约为12 pm的松木锯末生物炭。通过将生物炭颗粒分散在作为悬浮介质的甘油/水溶液的预混合的甘油/水溶液中来制备生物炭-甘油-水浆料燃料,其中甘油含量为0-100重量%。将2重量%的木质素磺酸钠盐(LASS)(基于生物炭的干重)作为分散剂加入到悬浮介质中。研究了甘油含量对浆料燃料流变性能和稳定性的影响。用布鲁克菲尔德叶片粘度计测量屈服应力,并使用Haake VT550锥板粘度计表征表观粘度和剪切应力对剪切速率的依赖性。通过使用“下降棒”方法表征浆料燃料的稳定性特征。随着甘油含量的增加,最大生物炭负载量从50%降低到10 wt%,而浆料燃料的热值先增加然后降低,在90 wt%的甘油含量下最大达到21 MJ kg(-1)。对于给定的生物炭负载量,增加的甘油含量会增加悬浮介质的粘度,从而增加浆液燃料的粘度,由于生物炭颗粒的絮凝增强,显示出更高的屈服应力,更明显的剪切稀化行为和更高的稳定性。 (C)2016 Elsevier B.V.保留所有权利。

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