A dual-signal bioelectrochemical method for detecting water toxicity
A bioelectrochemical, dual-signal technology, applied in the field of biochemical detection, can solve problems such as time extension and achieve low-cost results
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Embodiment 1
[0041] (1) Strain used: Shewanella oneidensis, purchased from ATCC American Type Culture Collection, strain number ATCC700550.
[0042] (2) Obtaining Shewanella bacterium liquid: insert Shewanella bacterium into LB medium (containing yeast extract 5g / L, tryptone 10g / L and sodium chloride 5g / L, pH=7.0) Species were cultivated overnight at 30°C with a shaking rotation speed of 200rpm to obtain bacterial liquid.
[0043] (3) Preparation of reaction buffer for bioelectrochemical sensors: 0.6ml LB medium and 11.4ml M9 medium were thoroughly mixed, and sodium lactate, calcium chloride, and magnesium sulfate were added to make the final concentrations respectively 18mM, 0.1mM, and 1mM.
[0044] (4) Centrifuge the overnight cultured Shewanella liquid at 5000rpm, and add the obtained bacterium pellet into the reaction buffer solution, and control the OD value at 1.0.
[0045] (5) Assembly of the bioelectrochemical sensor: the working electrode, saturated calomel electrode, and platinum ...
Embodiment 2
[0050] It is basically the same as Example 1, but with the following changes: the OD value of the bacteria is controlled at 0.5. Current suppression results as image 3 shown. A bacterial cell OD value of 0.5 can also detect the toxicity of DCP.
Embodiment 3
[0052] It is basically the same as Example 1, but with the following changes: the OD value of the bacteria is controlled at 1.5. Current suppression results as image 3 shown. The cell OD value of 1.5 can also detect the toxicity of DCP.
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