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反向弯曲作为一种物理/机械处理方法以减轻微气泡扩散器的污垢。

Reverse flexing as a physical/mechanical treatment to mitigate fouling of fine bubble diffusers.

作者信息

Odize Victory O, Novak John, De Clippeleir Haydee, Al-Omari Ahmed, Smeraldi Joshua D, Murthy Sudhir, Rosso Diego

机构信息

Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA E-mail:

DC Water and Sewer Authority, 5000 Overlook Ave., SW, Washington, DC 20032, USA.

出版信息

Water Sci Technol. 2017 Oct;76(7-8):1595-1602. doi: 10.2166/wst.2017.171.

Abstract

Achieving energy neutrality has shifted focus towards aeration system optimization, due to the high energy consumption of aeration processes in modern advanced wastewater treatment plants. A study on fine bubble diffuser fouling and mitigation, quantified by dynamic wet pressure (DWP), oxygen transfer efficiency and alpha was carried out in Blue Plains, Washington, DC. Four polyurethane fine bubble diffusers were installed in a pilot reactor column fed with high rate activated sludge from a full scale system. A mechanical cleaning method, reverse flexing (RF), was used to treat two diffusers (RF1, RF2), while two diffusers were kept as a control (i.e., no reverse flexing). There was a 45% increase in DWP of the control diffuser after 17 months of operation, an indication of fouling. RF treated diffusers (RF1 and RF2) did not show significant increase in DWP, and in comparison to the control diffuser prevented about 35% increase in DWP. Hence, reverse flexing potentially saves blower energy, by reducing the pressure burden on the air blower which increases blower energy requirement. However, no significant impact of the RF treatment in preventing a decrease in alpha-fouling (αF) of the fine pore diffusers, over time in operation was observed.

摘要

由于现代先进污水处理厂曝气过程能耗高,实现能源中立已将重点转向曝气系统优化。在华盛顿特区的蓝平原进行了一项关于微气泡扩散器结垢与缓解的研究,通过动态湿压力(DWP)、氧转移效率和α进行量化。在一个试验反应器柱中安装了四个聚氨酯微气泡扩散器,该反应器柱由一个全尺寸系统的高速活性污泥进料。采用一种机械清洗方法——反向弯曲(RF)来处理两个扩散器(RF1、RF2),同时保留两个扩散器作为对照(即不进行反向弯曲)。运行17个月后,对照扩散器的DWP增加了45%,这表明存在结垢现象。经RF处理的扩散器(RF1和RF2)的DWP没有显著增加,与对照扩散器相比,可防止DWP增加约35%。因此,反向弯曲通过减轻增加鼓风机能量需求的空气鼓风机的压力负担,有可能节省鼓风机能源。然而,在运行过程中,未观察到RF处理对防止微孔扩散器的α结垢(αF)随时间下降有显著影响。

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