Impedance properties of biomass in support of practical mensuration in rain gardens

Impedance microbiology was explored to provide insights into how a sensor that can monitor the growth of bacteria in vegetated bioretention systems (rain gardens) may be designed for in situ, real-time use. The impedance properties of Pseudomonas Putida samples were monitored under AC signals of 100...

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Bibliographic Details
Main Authors: Farhad Jalilian, Caterina Valeo, Angus Chu, Rustom Bhiladvala
Format: Article
Language:English
Published: Frontiers Media S.A. 2023-10-01
Series:Frontiers in Sensors
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fsens.2023.1242886/full
Description
Summary:Impedance microbiology was explored to provide insights into how a sensor that can monitor the growth of bacteria in vegetated bioretention systems (rain gardens) may be designed for in situ, real-time use. The impedance properties of Pseudomonas Putida samples were monitored under AC signals of 100 mV peak-to-peak and sweeping frequencies of 20 Hz–300 kHz, to determine relationships between these properties and biomass in the laboratory. The capacitance of the samples was found to be the most sensitive impedance parameter, with average change in magnitude of 37% due to bacterial growth. For verification, optical density measurements were taken and calibrated by direct hemocytometry counts of similar samples, simultaneously with the impedance testing. The experiments revealed that exponential relationships enable a good estimate of the biomass available in the medium, based on the change in capacitance. The detection range of the proposed system (in the range of tested strain) is approximately ∼9.2 × 106 cells/mL to ∼5 × 108 cells/mL.
ISSN:2673-5067