Zhang Guangming, Zhang Panyue, Fan Maohong
State Key Lab of Urban Water Resource Environment, Harbin Institute of Technology, 202 Haihe Road, Harbin, Helongjiang 150090, China.
Ultrason Sonochem. 2009 Mar;16(3):334-8. doi: 10.1016/j.ultsonch.2008.10.014. Epub 2008 Nov 7.
Source water eutrophication has caused serious problems in drinking water supplies, with enhanced coagulation widely used to remove the resulting algae. This paper investigates the use of sonication to improve the removal by coagulation of Microcystis aeruginosa, a common species of toxic algae. The results show that sonication significantly enhances the reduction of algae cells, solution UV254, and chlorophyll a without increasing the concentration of aqueous microcystins. The main mechanism involved the destruction during ultrasonic irradiation of gas vacuoles inside algae cells that acted as 'nuclei' for acoustic cavitation and collapse during the "bubble crush" period, resulting in the settlement of cyanobacteria. Coagulation efficiency depended strongly on the coagulant dose and sonication conditions. When the coagulant dose was 0.5mg/l, 5s of ultrasonic irradiation increased algae removal efficiency from 35% to 67%. As further sonication enhanced the coagulation efficiency only slightly due to better mixing, optimal sonication time was 5s. The most effective sonication intensity was 47.2W/cm2, and the highest removal ratio of M. aeruginosa was 93.5% by the sonication-coagulation method. Experiments with reservoir water showed that this method could be successfully applied to natural water containing multiple species of algae.
水源富营养化已给饮用水供应带来严重问题,强化混凝被广泛用于去除由此产生的藻类。本文研究了超声处理对提高铜绿微囊藻(一种常见的有毒藻类)混凝去除效果的作用。结果表明,超声处理显著提高了藻类细胞、溶液UV254和叶绿素a的去除率,且未增加水体中微囊藻毒素的浓度。主要机制是超声辐照期间藻类细胞内充当声空化“核”的气泡在“气泡破碎”阶段发生破坏和崩溃,导致蓝藻沉降。混凝效率强烈依赖于混凝剂剂量和超声处理条件。当混凝剂剂量为0.5mg/l时,5秒的超声辐照使藻类去除效率从35%提高到67%。由于更好的混合作用,进一步的超声处理仅略微提高了混凝效率,因此最佳超声处理时间为5秒。最有效的超声强度为47.2W/cm2,超声 - 混凝法对铜绿微囊藻的最高去除率为93.5%。对水库水的实验表明,该方法可成功应用于含有多种藻类的天然水体。