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Simple Continuous-Flow Device for Combined Solar Thermal Pasteurization and Solar Disinfection for Water Sterilization

机译:用于组合太阳能热杀菌和太阳消毒的简单连续流量装置,用于水灭菌

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摘要

A collection unit and reflective concentrators were used to thermally preheat water to at least 70 °C for thermal pasteurization prior to a solar disinfection stage. The device is offered as a novel combined cycle to be used for either solar thermal pasteurization, during seasonalpeaks in solar irradiation, or as a solar preheat for UV solar disinfection which would occur in a flow-through solar disinfection trough. Inexpensive materials were used in order to simulate in field functionality and applicability to rural regions with low solar input. Solar incidence at Oregon State University, with latitude 45.5°, was recorded during trials conducted during May 1 to June 10 for the purpose of directly scaling the water treatment volumetric flowrate of the device for any future tests in other locations. This scaling by solar irradiation makes this dataset useful for other locations with higher or lower solar input and needing more or less treated water. The simple gravity-fed continuous system presented in this article makes use of a large cold water reservoir, a shell-and-tube heat exchanger, and a solar collector. The system, operating at flowrates of 100-150 mL/min is able to reach outlet temperatures of 74°C.  The system is projected to produce 55 L of purified water daily when operating on a sunny day with peak UV radiation above 700 W/m2. System cost was $55 with an added optional $15 for the shell-and-tube heat exchanger.
机译:在太阳消毒阶段之前,使用收集单元和反射浓缩器将水预热至至少70℃以进行热量杀菌。该装置作为新颖的组合循环提供,用于太阳能照射的季节性斑块期间用于太阳能火山化,或者作为UV太阳消毒的太阳能预热,这将在流通太阳能消毒槽中发生。使用廉价材料以模拟现场功能和适用于具有低太阳能输入的农村地区。在俄勒冈州立大学的太阳能发病率为45.5°,在5月1日至6月10日进行的试验期间记录了用于直接缩放设备的水处理体积流量,以便在其他地点的任何测试中进行水处理体积流量。通过太阳能照射的这种扩展使得该数据集可用于太阳能投入或更低或更低的太阳能输入的其他位置,并且需要更多或多或少处理水。本文中提出的简单重力馈电连续系统利用大型冷水储存器,壳管热交换器和太阳能收集器。该系统,在100-150ml / min的流量下操作能够达到74°C的出口温度。在阳光良好的日子在700W / m 2以上的峰值紫外线辐射操作时,系统预计将每天生产55升净水。系统成本为55美元,壳管式热交换器添加了可选的15美元。

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