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. 2004 Jan 15;19(6):607-13.
doi: 10.1016/s0956-5663(03)00272-0.

Continuous determination of biochemical oxygen demand using microbial fuel cell type biosensor

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Continuous determination of biochemical oxygen demand using microbial fuel cell type biosensor

In Seop Chang et al. Biosens Bioelectron. .

Abstract

A mediator-less microbial fuel cell (MFC) was used as a biochemical oxygen demand (BOD) sensor in an amperometric mode for real-time wastewater monitoring. At a hydraulic retention time of 1.05 h, BOD values of up to 100 mg/l were measured based on a linear relationship, while higher BOD values were measured using a lower feeding rate. About 60 min was required to reach a new steady-state current after the MFCs had been fed with different strength artificial wastewaters (Aws). The current generated from the MFCs fed with AW with a BOD of 100 mg/l was compared to determine the repeatability, and the difference was less than 10%. When the MFC was starved, the original current value was regained with a varying recovery time depending on the length of the starvation. During starvation, the MFC generated a background level current, probably due to an endogenous metabolism.

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