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Bone consists of the protein collagen and the mineral hydroxyapatite, Ca10(PO4)6(OH)2. The content of archaeological human skeletons measured by graphite furnace atomic absorption sheds light on customs and economic status of individuals in historical times. 37Explain why La3+is added to bone samples to suppress matrix interference inanalysis.

Short Answer

Expert verified

La3+ appears to be a releasing agent, as it preferentially reacts with PO42-, releasing Pb2+ .

Step by step solution

01

Define release agent.

A release agent (also known as a release coating, release agent, or mould release coating) is a substance that prevents other materials from adhering to surfaces. Mould release, die-cast release, plastic release, adhesive release, tyre and web release are all procedures where it can help.

02

Explain why La3+ is added to bone samples to suppress matrix interference in   analysis.

To avoid the chemical matrix effect, La3+is employed. By creating thermally stable compounds, prevents the atomization of Pb2+. La3+ appears to be a releasing agent, as it preferentially reacts withPO42- , releasing Pb2+ .

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Most popular questions from this chapter

Concentrations (pg per g of snow) of metals by atomic fluorescence in the Agassiz Ice Cap in Greenland for the period1988 - 1992areP38b,1.04(ยฑ0.17)ร—102;TI,0.43ยฑ0.087;Cd,3.5ยฑ0.87;Zn,1.74(ยฑ0.26)ร—102; and AI.6-1(ยฑ1-7)ร—103 . The mean annual snowfall was 11.5g/cm2 . Calculate the mean annual flux of each metal in units of ng/cm2 . Flux means how much metal falls on each cm2 .

Explain what is meant by spectral, chemical, ionization, and isobaric interference.

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Laser atomic fluorescence excitation and emission spectra of sodium in an air-acetylene flame are shown here. In the excitation spectrum, the laser (linewidth 5 0.03 nm) was scanned through various wavelengths, while the detector monochromator (bandwidth 5 1.6 nm) was held fixed near 589 nm. In the emission spectrum, the laser was fixed at 589.0 nm, and the detector monochromator wave-length was varied. Explain why the emission spectrum gives one broad band, whereas the excitation spectrum gives two sharp lines. How can the excitation linewidths be much narrower than the detector monochromator bandwidth?

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