Kishida N, Kim J H, Chen M, Tsuneda S, Sasaki H, Sudo R
Department of Chemical Engineering, Waseda University, Shinjuku-ku, Tokyo 169-8555, Japan.
Water Sci Technol. 2004;50(10):45-50.
To establish an automatic control system of external carbon addition in biological nitrogen removal, a bench-scale sequencing batch reactor with real-time control strategy was designed in this study. An oxidation-reduction potential (ORP) profile was used for automatic control of external carbon addition. The mean removal efficiency of total organic carbon was over 98%. Complete denitrification in an anoxic phase and complete denitrification and nitrification in anoxic and oxic phases were accomplished, respectively, because the oxic and anoxic periods were also appropriately controlled with ORP and pH profiles, respectively. Mean removal efficiency of total nitrogen was over 95%. When concentration of influent wastewater was changed, volume of additional carbon was automatically changed with the influent fluctuation, and flexible hydraulic retention time was achieved in this system.
为建立生物脱氮过程中外部碳添加的自动控制系统,本研究设计了一种具有实时控制策略的实验室规模序批式反应器。利用氧化还原电位(ORP)曲线实现外部碳添加的自动控制。总有机碳的平均去除效率超过98%。由于分别通过ORP曲线和pH曲线对好氧和缺氧阶段进行了适当控制,分别实现了缺氧阶段的完全反硝化以及缺氧和好氧阶段的完全反硝化和硝化。总氮的平均去除效率超过95%。当进水废水浓度发生变化时,额外碳的添加量会随进水波动自动变化,并且该系统实现了灵活的水力停留时间。