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Use of a Bench-Scale Sequencing Batch Reactor To Simulate A Full-Scale Plug-Flow Reactor For Treatment of a High-strength Industrial Waste Strength Industrial Waste Stream Isolated From a Municipal Wastewater

机译:使用台式规模化分批反应器模拟全尺寸塞流反应器处理从市政废水中分离出来的高强度工业废料强度工业废料流

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A bench-scale sequencing batch reactor (SBR) was used first to test the treatability of an isolate, higg-strength industrial waste stream that enters the Elkhart Wastewater Treatment Plant. Because the SBR is the ideal plug-flow reactor (PFR), it was then also used to evaluate the feasibility of isolating one of the plant's PFRs and operating it as a side-stream treatmetn train for this industrial stream. The SBR resutls showed that the waste stream was readily treatable within the 12-hour reaction cycle applied. Additionaly, the SBR's simulation of the full-scale PFR demonstrated that the industrial waste stream could be treated to acceptable levels within the hydraulic configuration of one of the existing PFR tanks isolated from the remainder of the system. This study demonstrates the utility of the bench-scale SBR n effectively studying complex, full-scale treatment problems, at negligible cost in equipment and oeprator time. Results such as these provide plant managers and facility planners with specific treatment data to make sound judgments on capital facility improvements and process enhancements to address various regulatory compliance issues. The study method also provides an excellent educational tool for plant operators to broaden their knowledge base for biologica waste treatment.
机译:首先使用台式规模的顺序批处理反应器(SBR)来测试进入Elkhart废水处理厂的分离的,高强度的工业废水的可处理性。由于SBR是理想的活塞流反应器(PFR),因此它也被用于评估隔离某台工厂的PFR并将其作为该工业流的侧流处理方法的可行性。 SBR结果表明,在应用的12小时反应周期内,废物流易于处理。另外,SBR对全尺寸PFR的模拟表明,在与系统其余部分隔离的现有PFR储罐之一的液压配置内,可以将工业废水处理到可接受的水平。这项研究表明,台式规模的SBR n可以有效地研究复杂的,大规模的处理问题,而设备和操作人员的时间却可以忽略不计。这样的结果为工厂经理和设施计划者提供了特定的处理数据,以便对基本设施的改进和流程增强做出合理的判断,以解决各种法规遵从问题。该研究方法还为工厂经营者提供了极好的教育工具,以扩大他们在生物废物处理方面的知识基础。

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