Matrix modifier for determining heavy metals absorbed by graphite furnace atoms and preparing method
A graphite furnace atomic and matrix modifier technology, applied in the measurement of color/spectral properties, etc., can solve the problems of unstable volatile analytes, poor reproducibility, increased analysis time, etc., to eliminate interference, reduce or interfere with , the effect of uniform particle distribution
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Embodiment 1
[0030] 1. Preparation of colloidal palladium
[0031] Weigh 0.024g-0.036g (0.4mg / mL-0.6mg / mL) palladium chloride in a round bottom flask, convert it to H with concentrated hydrochloric acid 2 PdCl 4 ·nH 2 O, add 0.030g (0.5mg / mL) polyvinylpyrrolidone (PVP) again, then slowly add 60mL of a mixed solution of 1:1 methanol and water, stir and mix constantly during the addition process, and place the solution in a water bath to heat After reflux for 90 minutes, take it out, and the obtained brown colloidal solution is colloidal palladium.
[0032] 2. Quality control of colloidal palladium
[0033] Drop a drop of colloidal palladium solution sample on the copper grid coated with carbon film, and let it dry naturally. Observed on a transmission electron microscope. The size and particle size distribution of metal particles are obtained by statistical measurement of no less than 200 particles on the enlarged electron microscope photos.
[0034] The heavy metal content of the pre...
Embodiment 2
[0051] Determination of arsenic in food
[0052] Arsenic is easy to combine with sulfhydryl groups, thereby causing changes in the biological activity and function of enzymes, coenzymes and proteins containing sulfhydryl groups. The determination of arsenic in food is a routine project. The food samples were digested by acid and then fixed to volume, and then measured by a graphite furnace atomic absorption spectrophotometer. Inject 20 μL of sample, and the volume of colloidal palladium matrix modifier is 5 μL. The program is shown in Table 2. signal see Figure 7 , Figure 8 .
[0053] Colloidal palladium matrix modifier of arsenic in table 2 - graphite furnace atomic absorption determination procedure
[0054]
[0055] see Figure 7 , Figure 8 As shown, they are respectively food sample addition and food sample background signals under the colloidal palladium modifier at an ashing temperature of 1200 ° C. It can be seen from the figure that after adding the matri...
Embodiment 3
[0057] urine thallium determination
[0058] Thallium and its compounds are highly toxic and accumulative. It mainly damages the central nervous system, peripheral nerves, liver and kidney, and can also cause hair loss. Urinary thallium is a good biological monitoring indicator. Graphite furnace atomic absorption spectrometer measurement, urine samples can be directly analyzed. Inject 15 μL of sample and 5 μL of colloidal palladium matrix modifier. See Table 3 for the program. signal see Figure 9 , Figure 10 .
[0059] Table 3 colloidal palladium matrix modifier for thallium - graphite furnace atomic absorption determination procedure
[0060]
[0061] Figure 9 , 10 The colloidal palladium improver with an ashing temperature of 1100°C participates in the thallium standard and poisoned urine sample signals respectively. It can be seen from the figure that after adding the matrix improver of the present invention to the biological material sample solution, the ash...
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