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Journal article

Integrated water quality monitoring system with pH, free chlorine, and temperature sensors

Abstract

Accurate, efficient, inexpensive, and multi-parameter monitoring of water quality parameters is critical for continued water safety from developed urban regions to resource-limited or sparsely populated areas. This study describes an integrated sensing system with solution-processed pH, free chlorine, and temperature sensors on a common glass substrate. The pH and temperature sensors are fabricated by low-cost inkjet printing of palladium/palladium oxide and silver. The potentiometric pH sensor has a high sensitivity of 60.6mV/pH and a fast response of 15s. The Wheatstone-bridge-based temperature sensor shows an immediate response of 3.35mV/°C towards temperature change. The free chlorine sensor is based on an electrochemically modified pencil lead, which exhibits a stable and reproducible sensitivity of 342nA/ppm for hypochlorous acid. Such a free chlorine sensor is potentiostat-free and calibration-free, so it is easy-to-use. The three sensors are connected to a field-programmable gate array board for data collection, analysis and display, with real-time pH and temperature compensation for free chlorine sensing. The developed sensing system is user-friendly, cost-effective, and can monitor water samples in real-time with an accuracy of >82%. This platform enables water quality monitoring by nonprofessionals in a simple manner.

Authors

Qin Y; Alam AU; Pan S; Howlader MMR; Ghosh R; Hu N-X; Jin H; Dong S; Chen C-H; Deen MJ

Journal

Sensors and Actuators B Chemical, Vol. 255, , pp. 781–790

Publisher

Elsevier

Publication Date

February 1, 2018

DOI

10.1016/j.snb.2017.07.188

ISSN

0925-4005

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