利用无线传感器网络实时监测地下水硝酸盐浓度

Gifty Buah, I. Nti, R. Sowah
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引用次数: 0

摘要

近年来,人们对过量硝酸盐离子引起的地下水污染的认识有所提高。这是一个必要的问题,因为地下水是许多人的重要饮用水来源,主要是婴儿摄入被硝酸盐污染的水,导致血液中含氧量低,这是一种致命的情况,在生物学上称为高铁血红蛋白血症或蓝婴儿综合症。随着每年施用硝酸盐肥料将更多的硝酸盐离子引入地下水,化粪池系统渗漏,更多的生命受到威胁。鉴于此,美国环境保护署(EPA)制定了每升(ml/L)硝酸盐浓度为10毫克的饮用水标准。一个有效的监测系统必须定期测量地下水中硝酸盐离子的浓度,以符合这一标准。为了解决有效监测地下水中硝酸盐浓度的问题,同时考虑到能源效率和用户的移动性,我们开发了地下水中硝酸盐离子的实时监测系统,该系统使用无线传感器网络,由位于现场(地下水)的硝酸盐传感器组成,收集硝酸盐浓度数据,并通过蓝牙和互联网无线发送数据,以显示在android应用程序中。在android应用程序中以数字和图形两种方式显示硝酸盐浓度读数,当硝酸盐浓度超过8mg/L时向应用程序用户发送通知。开发的监测系统对地下水中硝酸盐离子的浓度进行检测和测量,并通过在线数据库将获得的数据通过蓝牙和互联网传输到android应用程序,运行延时为90秒。该系统实时运行并显示硝酸盐离子浓度,增强了对地下水硝酸盐离子超标污染的早期检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time Monitoring of Nitrate Concentrations in Groundwater Using Wireless Sensor Network
In recent times, there has been an increase in awareness of groundwater pollution caused by excess nitrate ions. This is a necessary concern as groundwater is a significant source of drinking water for many people, and intake of water polluted with nitrate, primarily by infants, causes low levels of oxygen in the blood, a fatal condition known in biological terms as methemoglobinemia or the blue baby syndrome. As more nitrate ions are introduced into groundwater by applying nitrate fertilizers each year, seepage from septic systems, more lives are threatened. In view of this, the Environmental Protection Agency (EPA) has set a drinking water standard of 10 milligrams per liter (ml/L) nitrate concentration. An effective monitoring system must regularly measure nitrate ions’ concentration in underground water to adhere to this standard. To address the issue of effectively monitoring nitrate concentrations in groundwater while considering energy efficiency and mobility of the user, a real-time monitoring system for nitrate ions in groundwater was developed using a wireless sensor network consisting of nitrate sensors which were situated in the field (groundwater) to collect nitrate concentration data and send the data wirelessly via Bluetooth and the internet to be displayed in an android application. The readings of nitrate concentration were displayed in an android application both numerically and graphically, and a notification was sent to the application user when the nitrate concentration exceeded 8mg/L. The developed monitoring system detected and measured the concentration of nitrate ions in groundwater and transmitted the data obtained to the android application via Bluetooth and the internet through an online database in a delay time of 90 seconds of operation. The system operated and displayed the concentration of nitrate ions in real-time, enhancing early detection of groundwater pollution due to excess nitrate ions.
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