实施物联网监测和保护干电池HHO发电机的产氢

Robby Setiadi, A. Taqwa, Y. Bow
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引用次数: 0

摘要

在过去的几十年里,研究人员一直在进行各种研究,寻找替代能源,以减少对化石燃料的依赖,并预测未来的能源短缺。其中一种替代能源是氢,它可以通过各种方法获得,包括电解水。氢具有可燃、无臭、无色、无味的特点,需要制定严格的监测和保护系统,以减轻潜在的危害。在本研究中,针对使用干电池式HHO发电机的电解槽的运行,设计了一套监测和保护系统。该系统采用了物联网的概念,其中数据通过互联网连接。接收到的数据包括氢气浓度读数、电解槽运行自动化、电解槽运行状态、系统氢气泄漏检测等。得到的研究结果表明,电解液浓度越高,电解过程的电压越高,氢气的生成速度越快,同时伴随着温度的升高。如果系统发生漏电,电解液浓度和供电电压越大,火灾三角的发生就会越快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of the Internet of Things for Monitoring and Protecting Hydrogen Production in Dry Cell HHO Generators
In the last few decades, researchers have been conducting various studies in search of alternative energy sources to reduce dependence on fossil fuels and anticipate future energy scarcity. One such alternative energy is hydrogen, which can be obtained through various methods, including electrolysis of water. Hydrogen possesses the characteristics of being flammable, odorless, colorless, and tasteless, necessitating the development of a rigorous monitoring and protection system to mitigate potential hazards. In this study, a monitoring and protection system was designed for the operation of an electrolyzer using a Dry Cell type HHO Generator. The system employs the concept of the Internet of Things, where data is connected through the internet network. The data received includes hydrogen concentration readings, electrolyzer operation automation, electrolyzer operating status, and hydrogen gas leak detection in the system. The research results obtained showed that the higher the concentration of electrolyte and the voltage supplied to the electrolysis process, the faster the production of hydrogen gas is accelerated, accompanied by an increase in temperature. If a leakage occurs in a system, the occurrence of the fire triangle will be faster when the concentration of electrolyte and the voltage supplied are greater.
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