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Effects of ultrasound pretreatment on the characteristic evolutions of drinking water treatment sludge and its impact on coagulation property of sludge recycling process

机译:超声预处理对饮用水处理污泥特性演变的影响及其对污泥循环利用过程中混凝特性的影响

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Large amounts of drinking water treatment sludge (DWTS) are produced during the flocculation or flotation process. The recycling of DWTS is important for reducing and reclaiming the waste residues from drinking water treatment. To improve the coagulation step of the DWTS recycling process, power ultrasound was used as a pretreatment to disintegrate the DWTS and degrade or inactivate the constituents that are difficult to remove by coagulation. The effects of ultrasound pretreatment on the characteristics of DWTS, including the extent of disintegration, variation in DWTS floc characteristics, and DWTS dewaterability, were investigated. The capacity of the recycling process to remove particulates and organic matter from low-turbidity surface water compared to a control treatment process without DWTS was subsequently evaluated. The coagulation mechanism was further investigated by analyzing the formation, breakage, and re-growth of re-coagulated flocs. Our results indicated that under the low energy density applied (0.03-0.033 W/mL) for less than 15 min at a frequency of 160 kHz, the level of organic solubilization was less elevated, which was evidenced by the lower release of proteins and polysaccharides and lower fluorescence intensities of humic- and protein-like substances. The applied ultrasound conditions had an adverse effect on the dewaterability of the DWTS. Ultrasound pretreatment had no significant impact on the pH or surface charge of the DWTS flocs, whereas particle size decreased slightly and the specific surface area was moderately increased. The pollution removal capacity decreased somewhat for the recycled sonicated DWTS treatment, which was primarily ascribed to organic solubilization rather than variability in the floc characteristics of sonicated DVVTS. The main coagulation mechanism was floc sweeping and physical adsorption. The breakage process of the flocs formed by the recycling process displayed distinct irreversibility, and the flocs were stronger and more resistant to breakage compared to those from the control treatment. (C) 2015 Elsevier B.V. All rights reserved.
机译:在絮凝或浮选过程中会产生大量的饮用水处理污泥(DWTS)。 DWTS的回收对于减少和回收饮用水处理中的废渣很重要。为了改善DWTS回收过程的凝结步骤,功率超声被用作预处理,以分解DWTS并使降解难以降解的成分降解或失活。研究了超声波预处理对DWTS特性的影响,包括崩解程度,DWTS絮体特性的变化以及DWTS的脱水性。随后评估了与没有DWTS的对照处理工艺相比,回收工艺从低浊度地表水中去除颗粒物和有机物的能力。通过分析重新凝结的絮凝物的形成,破损和重新生长,进一步研究了凝结机理。我们的结果表明,在160 kHz频率下施加低能量密度(0.03-0.033 W / mL)少于15分钟的情况下,有机增溶水平升高的幅度较小,这可以通过蛋白质和多糖的较低释放来证明。并降低了腐殖质和蛋白质样物质的荧光强度。施加的超声条件对DWTS的脱水性有不利影响。超声波预处理对DWTS絮凝物的pH或表面电荷没有明显影响,而粒径略有减小,比表面积适度增加。循环声波处理的DWTS处理的除污能力有所降低,这主要归因于有机增溶,而不是声波处理的DVVTS絮凝特性的变化。絮凝的主要机理是絮凝和物理吸附。由回收过程形成的絮凝物的破碎过程表现出明显的不可逆性,与对照处理相比,絮凝物更结实,更能抵抗断裂。 (C)2015 Elsevier B.V.保留所有权利。

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