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    α-烯基磺酸钠对水煤浆流变特性的影响研究

    Effect of α-olefin sulfonate on rheological properties of coal water slurry

    • 摘要: 通过循环管道输送系统和旋转流变仪,系统地探究了不同浓度α-烯基磺酸钠(AOS)添加剂对水煤浆在实际管道输送中的流变特性的影响,并对2种测试设备所得数据进行了深入的对比分析,结果表明:在2种测试方法中,AOS均展现出对水煤浆显著的降黏效果。然而,在AOS添加量较低,约为0.02%(质量分数)时,其降黏作用并不明显,甚至在特定剪切速率下,还出现了黏度轻微上升的现象。当AOS质量分数提升至0.5%以下时,随着添加量的增加,水煤浆在不同剪切速率下的黏度均迅速降低;当质量分数超过0.5%,黏度的降低速度逐渐放缓;当AOS质量分数达到1.2%时,水煤浆的黏度几乎不再随添加量的增加而变化,呈现出一种稳定状态,此时,在各剪切速率下的降黏率均超过了60%。此外,AOS的降黏效果与剪切速率之间存在一定的关系,在AOS质量分数低于0.5%时,随着剪切速率的提升,AOS的降黏作用先减弱后增强。而当质量分数超过0.5%时,AOS的降黏效果则随着剪切速率的增加,呈现出2个上升和2个下降相互交叉的复杂变化趋势。上述实验数据不仅证实了AOS对水煤浆具有显著的降黏作用,还揭示了AOS添加量在不同剪切速率下的降黏效果,为水煤浆流变特性的调控提供了重要的实验依据。

       

      Abstract: This study systematically investigated the effects of varying concentrations of α-alkyl sulfonate (AOS) additives on the rheological properties of coal-water slurry during pipeline transport, using both a circulating pipeline delivery system and a rotational rheometer. A detailed comparative analysis of data from both testing methods was conducted. The results demonstrated that AOS exhibited a significant viscosity-reducing effect on the slurry in both methods. However, at low concentrations, around 0.02% (mass fraction), the viscosity reduction was minimal, and at certain shear rates, a slight viscosity increase was observed. As the AOS concentration increased to below 0.5% (mass fraction), the slurry viscosity decreased rapidly at various shear rates. When the concentration exceeded 0.5% (mass fraction), the rate of viscosity reduction gradually slowed. At 1.2% (mass fraction) AOS concentration, the viscosity of the slurry became almost constant, with a viscosity reduction rate exceeding 60% across all shear rates. Furthermore, the viscosity-reducing effect of AOS was dependent on shear rate. Below 0.5% (mass fraction), the viscosity reduction initially weakened before strengthening as shear rate increased. Above 0.5% (mass fraction), the effect became more complex, exhibiting two increases and two decreases as shear rate rose. The above experimental data not only confirmed the significant viscosity-reducing effect of AOS on coal-water slurry but also revealed the specific impact of AOS concentration and shear rate on viscosity reduction, providing valuable experimental data for the regulation of slurry rheological properties.

       

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