基于阳离子聚丙烯酰胺、明矾、石灰和臭氧的多结太阳能电池饮用水净化系统的设计

Muhammad Shehram, U. Rani
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引用次数: 1

摘要

在一个饮用水即将枯竭的世界里,有必要引入基于太阳能的水净化系统的新技术和方法。巴基斯坦等发展中国家正面临纯净水短缺及其储存过程的问题。我们提出的水净化设计通过使用多结太阳能电池、阳离子聚丙烯酰胺明矾和石灰。利用多结太阳能电池来提高系统的效率。它们利用太阳光的全光谱,通过不同的材料吸收不同颜色的光,每种材料都有自己的带隙能量。太阳能电池产生的能量将污染的水煮沸30分钟,达到120度,用于净化,并去除细菌、原生动物、病毒,因为水煮沸30分钟后,所有细菌都会死亡。明矾用于净化,因为明矾、阳离子聚丙烯酰胺和石灰或混凝剂被用来去除水中的砷。为了从水中去除COVID-19,需要注入臭氧气体O3。木炭滤纸用于过滤储存在电池中的沸水能量,以驱动系统用于夜间用途。建议的设计是经济的,环保的,并在最大的时间内工作。目前,已经安装了基于物联网的智能水净化系统,该系统利用太阳能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Multijunction Solar Cells Based Potable Water Purification System using Cationic Polyacrylamide Alum Lime and Ozone to Remove Covid-19
In a world where potable water is just about to run dry, it is necessary to introduce new technologies and methods of solar-based water purification systems. Developing countries like Pakistan are cladding a shortage of purified water and its storage process. Our proposed design for water gets purified by using multijunction solar cells, cationic polyacrylamide alum, and lime. Multijunction solar cells are utilized to enhance the efficiency of the system. They utilize the complete spectrum of sunlight and absorb the different colors of light by different materials, and each material has its own bandgap energy. The solar cells generate power which is used to boil the contaminated water for 30 minutes up to 120 degrees for the purification purpose and remove bacteria, protozoa, and viruses because all germs become dead when water boils for 30 minutes. Alum is used for the purpose of purification because alum, cationic polyacrylamide, and lime or coagulant are utilized to remove arsenic from water. To remove COVID-19 from water, ozone gas O3 is injected. Charcoal filter paper is utilized to filter the boiling water energy stored in the battery to drive the system for nighttime purposes. The proposed design is economical, environmentally friendly, and works at maximum time. Nowadays, an IOT-based smart water purification system has been installed which works on solar energy.
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