Issue 1, 2011

Non-steady response of BOD biosensor for the determination of biochemical oxygen demand in wastewater

Abstract

A biochemical oxygen demand (BOD) biosensor for effective and expeditious BOD7 estimations was constructed and the non-steady phase of the output signal was extensively studied. The modelling approach introduced allows response curve reconstruction and a curve fitting procedure of good quality, resulting in parameters indicating the relationship between response and organic substrate concentration and stability properties of the BOD biosensor. Also, the immobilization matrixes of different thicknesses were characterized to determine their suitability for bio-sensing measurements in non-stationary conditions, as well as for the determination of the mechanical durability of the BOD biosensor in time. The non-steady response of the experimental output of the BOD biosensor was fitted according to the developed model that enables to determine the stability of the biosensor output and dependency on biodegradable organic substrate concentration. The calibration range of the studied BOD biosensor in OECD synthetic wastewater was 15–110 mg O2 L−1. Repeatability tests showed relative standard deviation (RSD) values of 2.8% and 5.8% for the parameter τd, characterizing the transient output of the amperometric oxygen sensor in time, and τs, describing the dependency of the transient response of the BOD biosensor on organic substrate concentration, respectively. BOD biosensor experiments for the evaluation of the biochemical oxygen demand of easily degradable and refractory municipal wastewater showed good concurrence with traditional BOD7 analysis.

Graphical abstract: Non-steady response of BOD biosensor for the determination of biochemical oxygen demand in wastewater

Article information

Article type
Paper
Submitted
26 Mar 2010
Accepted
22 Sep 2010
First published
01 Nov 2010

J. Environ. Monit., 2011,13, 95-100

Non-steady response of BOD biosensor for the determination of biochemical oxygen demand in wastewater

S. Velling, A. Mashirin, K. Hellat and T. Tenno, J. Environ. Monit., 2011, 13, 95 DOI: 10.1039/C0EM00082E

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