Rosso Diego, Stenstrom Michael K, Larson Lory E
Civil and Environmental Engineering Department, University of California, Irvine, CA 92697-2175, USA.
Water Sci Technol. 2008;57(7):973-8. doi: 10.2166/wst.2008.218.
Aeration is the most energy-intensive operation in wastewater treatment, amounting to 45-75% of plant energy costs. Fine-pore diffusers are today almost ubiquitous in municipal wastewater aeration, due to their advantageous aeration efficiency (mass of oxygen transferred per unit energy required). Nevertheless, older municipal treatment facilities and many industrial treatment plants are still equipped with coarse-bubble or surface aerators. Fine-pore diffusers are subject to two major disadvantages: a) fouling, if not cleaned periodically; b) decrease in oxygen transfer efficiency caused by dissolved surfactants. Coarse-bubble and surface aerators are typically not subject to the traditional problems affecting fine-pore diffusers. Nonetheless, they achieve oxygen transfer at the expense of increased energy intensity. The increased biomass concentration associated with high mean cell retention time (MCRT) operations has a beneficial effect on aeration. Nutrient-removing selectors are able to further increase aeration efficiency, as they sorb and utilize the readily available substrate which otherwise would accumulate at bubble surfaces and dramatically decrease aeration efficiency. We summarise here our 30-year long experience in aeration research, and results obtained with clean- and process-water tests are used to show the beneficial effects of high MCRT operations, the beneficial effect of selectors, and the decline of aeration efficiency due to dissolved surfactants.
曝气是废水处理中能耗最高的操作,占工厂能源成本的45%-75%。由于其有利的曝气效率(每单位所需能量转移的氧气质量),微孔曝气器如今在城市废水曝气中几乎无处不在。然而,较老的城市处理设施和许多工业处理厂仍配备有粗气泡或表面曝气器。微孔曝气器有两个主要缺点:a) 如果不定期清洗,会发生堵塞;b) 溶解的表面活性剂会导致氧气转移效率降低。粗气泡曝气器和表面曝气器通常不会受到影响微孔曝气器的传统问题的困扰。尽管如此,它们是以增加能源强度为代价来实现氧气转移的。与高平均细胞停留时间(MCRT)操作相关的生物量浓度增加对曝气有有益影响。除营养选择器能够进一步提高曝气效率,因为它们吸附并利用了容易获得的底物,否则这些底物会在气泡表面积累并显著降低曝气效率。我们在此总结了我们30年来在曝气研究方面的经验,并利用清水和工艺水测试获得的结果来展示高MCRT操作的有益效果、选择器的有益效果以及溶解表面活性剂导致的曝气效率下降。