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In this paper, an improved portable biosensing system has been developed for biological compounds detection.
For all the studied compounds, detection limits obtained were similar or even lower than previously reported.
Multi-hydrogenated compounds detection based on photoacoustic (PA) spectroscopy is reported.
In this communication the results of the application of the designed electronic tongue system to explosive compounds detection are shown.
The compounds detection was performed in UV at λ = 230 nm bandwidth 4 nm/reference λ = 360 nm bandwidth 8 nm/reference.
For all compounds detection limits were below their threshold levels and repeatability, in terms of relative standard deviation, was good, with values between 3 and 11%.
Similar(53)
Speed of response of one compound detection with the IMIS was 0.7 s.
The biosensor's performance in phenolic compound detection was based on mediated electron transfer by Hb.
The enzymatic mechanism involved in laccase-immobilized SmBO3 for phenolic compound detection is the same as the bare laccase [4].
Currently, the main qualitative and quantitative techniques for phenolic compound detection are HPLC (Rao et al. [1999]; Zheng et al. [2007]).
Therefore, Feynman-α variance-to-mean and covariance-to-mean formulae containing both Δ and d were derived by means of the compound detection probabilities.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com