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首页> 外文期刊>Science of the total environment >High-performance low-cost solar collectors for water treatment fabricated with recycled materials, open-source hardware and 3d-printing technologies
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High-performance low-cost solar collectors for water treatment fabricated with recycled materials, open-source hardware and 3d-printing technologies

机译:高性能低成本太阳能收集器,用于水处理,采用再生材料,开源硬件和3D印刷技术制造

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摘要

Solar technologies constitute an excellent alternative for water treatment in low-income countries where the poverty of a large part of the population hinders their access to safe water. From a technical point of view, the use of compound parabolic collectors (CPC) has been consolidated in the last decades. However, the relatively high cost of tooling conventional manufacturing processes for these collectors makes them difficult to afford in the most impoverished regions. This work presents the development of low-cost CPC and parabolic through solar collectors (PTC) by 3D printing of the structure and the use of recycled reflective materials. Besides, open-source hardware has been used to control system operation, including a supplementary UV LED system to compensate for the operation under low solar irradiance. Regarding the tested reflective materials, an optimum is obtained using an aluminium adhesive sheet that leads to an efficiency of 80% compared to a commercial CPC made of high-quality anodised aluminium, being the cost 20 times lower. On the other hand, incorporating a low-cost solar tracking system in a printed PTC reactor could lead to efficiencies up to 300% compared to the commercial CPC, while the cost was 4.5 times lower. Finally, the LED compensation system was successfully validated, allowing the operation with a constant treatment capacity during operation in cloudy conditions. In conclusion, the developed collectors are high-performance solar water treatment systems with a significantly lower investment cost, making them affordable worldwide.
机译:太阳能技术构成了低收入国家水处理的优秀替代方案,其中大部分人口的贫困会阻碍他们对安全水的进入。从技术角度来看,复合抛物线收集者(CPC)的使用在过去的几十年中已得到巩固。然而,这些收集器的常规制造过程的相对高成本使得它们难以在最贫困的地区负担得起。这项工作介绍了通过太阳能收集器(PTC)的低成本CPC和抛物线的开发,通过3D打印结构和使用再生反射材料。此外,开源硬件已被用于控制系统操作,包括补充UV LED系统,以补偿低太阳辐照度下的操作。关于测试的反射材料,使用铝粘合剂片获得最佳,与由高质量阳极铝制成的商业CPC相比,效率为80%,成本为20倍。另一方面,与商业CPC相比,在印刷的PTC反应器中将低成本的太阳能跟踪系统结合在印刷的PTC反应堆中可能导致高达300%的效率,而成本为4.5倍。最后,成功验证了LED补偿系统,允许在多云条件下运行期间具有恒定处理能力的操作。总之,发达的收藏家是高性能太阳能水处理系统,投资成本明显降低,使其能够实惠。

著录项

  • 来源
    《Science of the total environment》 |2021年第25期|147119.1-147119.10|共10页
  • 作者单位

    Department of Chemical and Environmental Technology ESCET Universidad Rey Juan Carlos C/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Department of Chemical and Environmental Technology ESCET Universidad Rey Juan Carlos C/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Department of Chemical and Environmental Technology ESCET Universidad Rey Juan Carlos C/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Department of Chemical and Environmental Technology ESCET Universidad Rey Juan Carlos C/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Department of Chemical and Environmental Technology ESCET Universidad Rey Juan Carlos C/ Tulipan s/n 28933 Mostoles Madrid Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arduino; Water treatment; Solar reactor; Photo reactor; CPC reactor; PTC reactor;

    机译:arduino;水处理;太阳能反应堆;照片电抗器;CPC反应堆;PTC反应器;

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