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UV-C LED AND WHEN WILL IT BE PRIMETIME IN WASTEWATER

机译:UV-C LED以及何时将成为废水中的黄金

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In the wastewater industry, energy and operation costs are major factors in selection of a disinfection technology. UV-C LED systems are based on a solid-state technology, which generally tends to operate with low electrical consumption and less relative space to conventional UV technology. A comparison of LED UV to UV systems applied to wastewater indicates that there can be large cost savings for this technology as applied to wastewater systems. An UV-C LED pilot study is ongoing at Mill Creek Wastewater Treatment Plant located in Cincinnati, Ohio, USA. This wastewater facility is an activated sludge wastewater treatment plant that is highly impacted by wet weather flows that currently uses hypochlorite for disinfection of the treated effluent. The UV-C LED system would acts as a disinfection step after secondary treatment replacing the hypochlorite system. The main focus of this study is to understand the performance, limitations, and challenges of LED UV in the wastewater environment with aspirations of a future large-scale system. The factors that were examined included disinfection efficacy, energy use, operating cost, and life-cycle cost. The results from the pilot will feed into a municipal system design using UV-C LEDs, decreasing not only the costs and maintenance of the systems but also reduce or eliminate harmful chemical usage. New technologies often begin life at very high cost and low accessibility to some markets. There are often limits in place that prevent fully utilizing newer technology; but, over time costs come down, availability increases and new possibilities open up. Ultraviolet Light Emitting Diode (LED) technology can be seen to follow the same path. This technology has been used for limited applications such as sensors and low-flow water treatment products. It is the premise that advancements in output power and efficiency of UV-C LEDs will see it grow into new markets including city level water treatment. This paper will present an economic case study to answer questions for deploying UV LED technology in the water and wastewater markets.
机译:在废水工业中,能源和运营成本是选择消毒技术的主要因素。 UV-C LED系统基于固态技术,与传统的UV技术相比,该技术通常趋向于以较低的功耗和相对较小的空间运行。将LED UV与应用于废水的UV系统进行比较表明,与应用于废水系统相比,该技术可以节省大量成本。位于美国俄亥俄州辛辛那提市的米尔溪废水处理厂正在进行UV-C LED的中试研究。该废水处理厂是一个活性污泥废水处理厂,受到潮湿天气的影响很大,目前使用次氯酸盐对处理过的废水进行消毒。 UV-C LED系统将在替代次氯酸盐系统的二次处理后充当消毒步骤。这项研究的主要重点是了解未来大型系统的愿望,以了解LED UV在废水环境中的性能,局限性和挑战。检查的因素包括消毒功效,能源使用,运营成本和生命周期成本。该试验的结果将被应用到使用UV-C LED的市政系统设计中,不仅降低了系统的成本和维护成本,而且减少或消除了有害化学物质的使用。新技术通常以很高的成本开始生产,而进入某些市场的机会却很少。经常存在一些限制,无法充分利用更新的技术。但是,随着时间的流逝,成本下降,可用性提高,新的可能性也随之打开。可以看到紫外线发光二极管(LED)技术遵循相同的路径。该技术已用于有限的应用,例如传感器和低流量水处理产品。前提是,UV-C LED的输出功率和效率的提高将使其进入包括城市级水处理在内的新市场。本文将提供一个经济案例研究,以回答有关在水和废水市场中部署UV LED技术的问题。

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