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Long-term biosolids planning with an operational mega reservoir for combined sewer overflow-impacted stormwater capture

机译:具有可运行的大型水库的长期生物固体规划,用于下水道溢流影响的联合雨水收集

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The Metropolitan Water Reclamation District of Greater Chicago adopted the Tunnel and Reservoir Plan (TARP) to reduce combined sewer overflow (CSO) events in the Chicago region. The Thornton Composite Reservoir (TCR) became operational in 2015 providing an additional 30 million m(3) of CSO-impacted stormwater capacity. In the United States, no other mega reservoirs are in operation to provide as a reference to study the long-term impacts of biosolids operations in water resource recovery facilities. The mean daily volume pumped from the Calumet TARP system to the Calumet Plant increased 144-238 m(3) from 2012-2014 to 273-360 m(3) from 2016-2018. Overall annual digester feed solids for the 2016-2018 post-TCR period were 28,182 Mg, which was 11 percent less than the mean for the 2012-2014 period of 31,745 Mg. Annual digester draw solids for the 2016-2018 post-TCR period were 19,422 Mg, which were 4 percent less than the 2012-2014 pre-TCR period mean of 20,190 Mg. This paper demonstrated a decrease in digester feed loading to the Calumet Plant and, ultimately, a decrease in digester draw solids with an overall increase in plant and TARP flow in the years following operation of the TCR for the capture and treatment of CSO-impacted stormwater. (C) 2019 Water Environment Federation
机译:大芝加哥大都会水回收区采用了隧道和水库计划(TARP),以减少芝加哥地区的下水道联合溢流(CSO)事件。桑顿综合水库(TCR)于2015年投入运营,提供了额外的3,000万立方米(3)受CSO影响的雨水能力。在美国,没有其他大型水库在运营,以作为研究生物固体运营对水资源回收设施的长期影响的参考。从Calumet TARP系统泵送到Calumet工厂的日平均流量从2012-2014年增加144-238 m(3),从2016-2018年增加到273-360 m(3)。 TCR后2016-2018年期间的年消化池饲料固体总量为28,182 Mg,比2012-2014年间31,745 Mg的平均值低11%。 2016-2018年TCR后期的年消化池固形物为19,422 Mg,比2012-2014 TCR前期的20,190 Mg低4%。本文表明,在为捕获和处理受CSO影响的雨水而运行TCR之后的几年中,Calumet工厂的消化池给料量减少了,最终,消化池抽出物的固体含量降低,工厂和TARP流量总体增加了。 。 (C)2019水环境联合会

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