太阳能海水淡化:为提供节能的清洁水做出贡献

W. Widjonarko, Gamma Aditya Rahardi, Bayu Rudiyanto, Ahmad Ishamul Ayady Akma, Abdelrahim Ahmed Mohammed Ate
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摘要

这项研究的重点是开发一个由太阳能电池板供电的海水淡化系统的原型。海水淡化过程由太阳能集热器和150wp太阳能电池板加热。主要目标是设计、开发和评估原型的有效性、可负担性和可扩展性。效率是通过每单位太阳能产生的淡水量来衡量的。在三个蒸馏试验中,确定了加热器的加入提高了系统的性能。然而,由于太阳能电池板和集热器的低热量输出,整体效率受到限制。辐照度与温度之间存在正相关关系,但蒸发不完全表明需要进一步研究以优化这一过程。该系统由太阳能收集器、加热器和蒸馏装置组成。三次蒸馏试验表明,增加一个加热器改善了系统的性能,导致最高可实现的效率为0.99%,生产16毫升淡水。这项研究展示了可再生能源为海水淡化提供动力的潜力,并为未来的可持续海水淡化技术奠定了基础,尽管它存在局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar-powered seawater desalination: A contribution to provide energy-efficient clean water
This study focuses on developing a prototype for a seawater desalination system powered by solarpanel. The desalination process is heated by a solar collector and 150 WP solar panel. The primaryobjective is to design, develop, and evaluate the prototype's efficacy, affordability, and scalability.The efficiency was measured by the quantity of freshwater produced per unit of solar energy. Ofthe three distillation tests, it was determined that the addition of a heater enhanced theperformance of the system. However, the overall efficiency was limited due to the solar panel andcollector's low heat output. A positive correlation was observed between irradiance andtemperature, but incomplete evaporation indicated the need for additional research to optimizethe process. The system consisted of a solar collector, a heater, and a distillation apparatus. Threedistillation tests revealed that the addition of a heater improved the system's performance,resulting in a maximum achievable efficiency of 0.99% and the production of 16 ml of fresh water.This study demonstrates the potential for renewable energy sources to power seawaterdesalination and lays the groundwork for future sustainable desalination technologies despite itslimitations.
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