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Inductively coupled plasma-optical emission spectrometry (ICP OES) is a powerful analytical tool for the determination of metals.
A novel continuous powder introduction microwave-induced plasma atomic emission spectrometry method (CPI-MIP-AES) has been developed for trace determination of metals in ground and tap water samples after preconcentration on activated carbon.
Such remarkable analytical features associated with the portability characteristics of BIA demonstrated the promising application of the proposed method for routine and on-site determination of metals in fuel bioethanol.
Solubilization of the metals from dust by a complexing agent, instead of the strong acid normally encountered in other methods, allows selective determination of metals according to their chemical form.
Multivariate linear regression aided by a successive projections algorithm (SPA-MLR) was applied in the evaluation of anodic stripping voltammetry data obtained in the simultaneous determination of metals under conditions where there were significant complications due to interference processes such as the formation of intermetallic compounds and overlapping peaks.
Photometric determination of metals concentration was conduct in 2-4 hours after sampling.
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It was characterized by elemental analysis and infrared spectra, and was applied for determination of metal ion in tea samples.
Solid-phase extraction (SPE) is often used for preconcentration and determination of metal ions from industrial and natural samples.
In the present work, determination of metal solubilities is based on a simple speciation program that assumes the presence of only one dominant complex for each metal.
The ion-channel sensor based on self-assembled monolayer of thioctic acid therefore offers a potential alternative technique for the selective determination of metal ions.
This system establishes LIBS as an effective analytical tool for both qualitative and quantitative determination of metal aerosols in aqueous environments.
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