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Toward efficient sludge processing using novel rheological parameters: dynamic rheological testing

机译:利用新型流变参数实现高效污泥处理:动态流变测试

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摘要

Materials known as complex fluids exhibit a transitional behaviour between their solid and liquid states. Sludges produced at different treatment stages of wastewater treatment are examples of these materials, since they exhibit solid behaviour within shorter time frames and liquid behaviour over longer durations. These sludges can also change from solid-like to liquid-like, or vice versa, when subjected to even a slight deformation; this stems from their complex makeup, which includes both particulate materials and polymeric gels, including both biopolymers and the synthetic polymers used in conditioning them. This paper focuses on two means of quantifying dynamic rheological test results: (1) the linear viscoelastic behaviour (LVE) of sludge samples, as measured by the strain sweep analysis storage (G') and loss moduli (G"); and (2) the flow curve, which presents the relationship between the shear viscosity and shear rate and determines the yield stress values of samples using the strain sweep test mode. With these methods, sludges can be more accurately characterised, allowing better prediction of their behaviour in treatment and transport processes.
机译:被称为复杂流体的材料在其固态和液态之间表现出过渡行为。这些材料的示例是在废水处理的不同处理阶段产生的污泥,因为它们在较短的时间范围内表现出固体行为,而在较长的持续时间内表现出液体行为。这些污泥即使受到轻微的变形,也会从固体状变为液体状,反之亦然。这源于它们的复杂构成,包括颗粒材料和聚合物凝胶,包括生物聚合物和用于调节它们的合成聚合物。本文着眼于量化动态流变测试结果的两种方法:(1)污泥样品的线性粘弹性行为(LVE),通过应变扫描分析存储(G')和损失模量(G“)测量;和(2 )流动曲线,表示剪切粘度和剪切速率之间的关系,并使用应变扫描测试模式确定样品的屈服应力值,通过这些方法,可以更准确地表征污泥,从而更好地预测其在处理过程中的行为和运输过程。

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