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The Low Methanol Diet - A Utility's Recipe for Process Optimization through Advanced Controls and Operational Excellence

机译:低甲醇饮食 - 通过先进控制和运营卓越的过程优化的效用配方

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The AlexRenew WRRF (204 ML/d AADF) has recently been upgraded to meet an annual average TN concentration of 3 mgN/L. Recent upgrades have been targeted to increase efficiency including an attempt to "activate" the anammox granules for mainstream nitrogen removal. Customized strategies were developed using Bio Win for aeration and supplemental carbon dosing. The control algorithms include ammonia-based aeration control (ABAC), intermittent aeration, automated methanol dosing and automated ORP control to prevent anaerobic conditions in the post-anoxic zone. Since the systems were placed in service in 2016, the facility has reduced aeration requirements by 30% and methanol consumption by 50% compared to previous years, all the while meeting the more stringent final effluent total nitrogen limits. The facility has saved almost $300,000 per year in chemical expenditures. The increased reliance on instrumentation and controls has created additional demands on AlexRenew's staff and required implementation of a probe maintenance program.
机译:所述AlexRenew WRRF(204毫升/ d AADF)最近已经升级,以满足3 MGN / L年均TN浓度。最近的升级已经针对性地提高效率,包括试图“激活”厌氧氨氧化颗粒主流脱氮。定制策略使用生物赢了通风和补充碳剂量发展。所述控制算法包括基于氨的曝气控制(ABAC),间歇曝气,自动化甲醇给药和自动化ORP控制,以防止在后缺氧区厌氧条件。由于系统置于服务在2016年,该设施30%,甲醇消耗的50%与前几年相比减少曝气的要求,所有的同时满足更严格的最终流出物总氮限制。该设施每年节约近30万$的化学支出。在仪器仪表和控制更加依赖,对AlexRenew的工作人员创造了额外的需求和需要实施一个探头维修方案。

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