Show Kuan-Yeow, Mao Taohong, Lee Duu-Jong
University of Tunku Abdul Rahman, 13 Jalan 13/6, 46200 Petaling Jaya, Selangor, Malaysia.
Water Res. 2007 Dec;41(20):4741-7. doi: 10.1016/j.watres.2007.07.017. Epub 2007 Jul 21.
This study presents an examination on the correlation of sonication operating condition, sludge property, formation and behaviour of cavitation bubbles in sludge disruption under low-frequency ultrasound sonication. The influence of sonication time, sonication density, type of sludge and solids content on the disruption was evaluated. The most vigorous particle disruption was achieved in the initial period of sonication, which subsided subsequently. The explosive effect was likely due to the rapid cavitation arising from powerful transient bubbles generated in fractions of microseconds. A rating for the type of sludge was derived based on the finding that particles in secondary sludge were more readily disrupted than both primary sludge and mixed sludge. While sonication density exhibited the most significant role in cavitation bubble formation and behaviour, particle disruption could be optimised for energy input by sonicating at higher sonication density and shorter sonication time. Based on theoretical consideration, it was deduced that within an optimum sludge solids content ranging between 2.3% and 3.2%, superior particle disruption could be accomplished within a minute for secondary sludge sonicated at a density of 0.52 W/mL. Useful guidelines for sonication system installation, equipment protection and process reliability could be established from knowledge derived from a good understanding on the influence of solids content on sludge sonication.
本研究对低频超声处理下污泥破碎过程中超声处理操作条件、污泥性质、空化气泡的形成及行为之间的相关性进行了考察。评估了超声处理时间、超声处理强度、污泥类型和固体含量对污泥破碎的影响。在超声处理的初始阶段实现了最剧烈的颗粒破碎,随后逐渐减弱。这种爆炸效应可能是由于在微秒级内产生的强大瞬态气泡引起的快速空化所致。基于二级污泥中的颗粒比初级污泥和混合污泥中的颗粒更容易破碎这一发现,得出了污泥类型的评级。虽然超声处理强度在空化气泡的形成和行为中起着最重要的作用,但通过在较高的超声处理强度和较短的超声处理时间下进行超声处理,可以优化能量输入的颗粒破碎效果。基于理论考虑,推断出在2.3%至3.2%的最佳污泥固体含量范围内,对于以0.52 W/mL的强度进行超声处理的二级污泥,可在一分钟内实现优异的颗粒破碎效果。从对固体含量对污泥超声处理影响的充分理解中获得的知识,可以为超声处理系统的安装、设备保护和工艺可靠性制定有用的指导方针。