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The selectivity of optode to Hg2+ ions in universal buffer is good, with Cu2+ ions as the main interference.
Mathematical models are derived for describing the main interference types and their influence on the accuracy and time response of these schemes.
The selectivity of the optode to Cu2+ ion in the presence of other metal ions including Pb2+, Mg2+, Ca2+, Ba2+, Zn2+, Ni2+, Co3+, Mn2+, Cd2+, Bi3+, Fe3+ and Al3+ is high, with the exception of Hg+2 ion as the main interference which can be eliminated with iodide as the masking agent.
In the following, the main interference models are reviewed.
Shadowing, multi-path, and inter symbol interference (ISI) are the main interference that existed in VLC.
The main interference arises from the fundamental and harmonic components of power lines.
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In addition, Nafion used as an immobilization film for eliminate the main interferences in relatively high concentrations, which led to an excellent selectivity.
In the next section we discuss the main interferences and how they can compromise Sr isotope data, leading to errors in excess of those that can be tolerated for everyday applications.
Mains interference was removed with a 50 Hz notch filter (4th order Butterworth filter) and, for each epoch, baseline correction was used to remove DC offset.
Mains interference is a problem because its fundamental frequency (50 Hz in Australia and the U.K., 60 Hz in the U.S.A).
Mains interference had extremely low kurtosis (typically <−1) and a frequency spectrum dominated by 50 Hz line noise.
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