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Development of a mobile sensor for potable water quality monitoring.

机译:开发用于饮用水水质监测的移动传感器。

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摘要

A mobile sensor is designed and fabricated for water quality monitoring in a potable water distribution system. In contrast to traditional stationary water sensors, a mobile sensor moves with the water flow, which allows it to locate a contamination in water distribution pipes and provide a faster response. The wireless mobile sensor was fabricated and tested in water distribution pipes for monitoring pH, Ca2+, Mg 2+, HCO3-/CO32-, NH4+, Cl-, and residual chlorine based on micro electrochemical sensor. Moreover, an energy-harvesting system is designed for the mobile sensor.;The spherical mobile sensor consists of a multi-analyte-biochip (MAB), microfluidics, electronics, and an energy harvesting system. The MAB measures key environmental analytes. The microfluidics has a MP6 micropump with a pumping rate of 6 ml/min, with microtubing that takes samples from the water environment to the sensor. The electronics consists of DAQ and a wireless transmitter that communicates to the stationary signal receiver located outside the pipe. The energy-harvesting system allows the mobile sensor to sustain function without power supply.;The multi-analyte biochip (MAB) was designed and fabricated via standard microfabrication technology. Each MAB has nine solid-state working electrodes (WEs) equidistance from their paired Ag/AgCl reference electrodes (REs), enabling multiplex measurements of analytes. The working electrodes were functionalized with the conductive polymer conjugate poly(3,4-ethylene dioxythiophene) (PEDOT) and an ion-selective membrane for the analyte of interest. A diffusion limited membrane base three-electrode sensor was fabricated for residual chlorine. The MAB is housed in a microfluidic flow-cell chamber wirebonded to the PCB that connects to the DAQ unit and wireless transmitter.;The mobile sensor was designed to be deployed at a water treatment plant and retrieved at a hydrant. The sensor network has a base station that is connected to multiple stationary receivers. Each stationary receiver collects wireless data from multiple mobile sensors. The mobile sensor was designed to harvest energy from device rotation and impact with the pipe. The energy harvest system consists of multi-pole, air-core permanent magnet, spring, coil, and diode rectifier packaged within a rigid body device of arbitrary geometry.
机译:设计并制造了一种用于在饮用水分配系统中监控水质的移动传感器。与传统的固定式水传感器相比,移动传感器随水流移动,这使它能够在配水管中定位污染物并提供更快的响应。该无线移动传感器是在微水传感器的基础上在配水管中制造并测试的,用于监测pH,Ca2 +,Mg 2 +,HCO3- / CO32-,NH4 +,Cl-和残留氯。此外,还为移动传感器设计了能量收集系统。球形移动传感器由多分析物生物芯片(MAB),微流控技术,电子设备和能量收集系统组成。 MAB可测量关键环境分析物。微流控系统具有一个MP6微型泵,其泵速为6 ml / min,并带有微型管,可将样品从水环境中移至传感器。电子设备由DAQ和无线发射器组成,该无线发射器与位于管道外部的固定信号接收器进行通信。能量收集系统使移动传感器无需电源即可维持功能。多分析物生物芯片(MAB)是通过标准微制造技术设计和制造的。每个MAB都具有与其配对的Ag / AgCl参比电极(RE)等距的九个固态工作电极(WE),从而可以对分析物进行多重测量。使用导电聚合物共轭聚(3,4-乙撑二氧噻吩)(PEDOT)和用于目标分析物的离子选择性膜对工作电极进行功能化。制备了扩散受限的膜基三电极传感器,用于残留氯。 MAB容纳在通过引线键合至PCB的微流体流通池腔室中,该流通池腔室连接至DAQ单元和无线变送器。;该移动传感器旨在部署在水处理厂并在消防栓处取回。传感器网络具有一个基站,该基站连接到多个固定接收器。每个固定接收器从多个移动传感器收集无线数据。移动传感器的设计目的是从设备旋转和撞击管道中收集能量。能量收集系统由多极,空心永磁体,弹簧,线圈和二极管整流器组成,封装在任意几何形状的刚体设备中。

著录项

  • 作者

    Wu, Ruoxi.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Civil.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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