Method for quickly and accurately determining 4 heavy metals in cigarette smoke
A technology for accurate measurement of cigarette smoke, applied in measurement devices, material analysis by electromagnetic means, instruments, etc., can solve the problem of inability to measure heavy metal content in smoke
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Embodiment 1
[0029] Main reagents and instruments used:
[0030] 30% hydrogen peroxide, (excellent grade, Guangdong Chemical Reagent No. type ultrapure water device), lead, cadmium, arsenic, chromium standard solution (National Center for Standardized Materials, 1000μg / g), high-purity Ar 2 , ELAN9000 Inductively Coupled Plasma Mass Spectrometry (ICP-MS) instrument (Perkin Elmer SCIEX, USA), Multiwave microwave digestion instrument (Anton Paar, Austria), analytical balance (sensitivity 0.1mg), constant temperature oven (BINDER, Germany).
[0031] All glassware used was treated with 10% HNO 3 Soaking to remove metal treatment; 10 common cigarette samples.
[0032] 1. Establishment of standard working curve
[0033] 1.1 Establishment of lead standard working curve
[0034] 1.1.1 Take 20ml of 1000μg / g lead standard solution, dilute to 200ml with distilled water, and make 100μg / g lead standard solution.
[0035] 1.1.2 Take 10ml, 20ml, 30ml, 40ml, 50ml of 100μg / g lead standard solution resp...
Embodiment 2
[0083] Repeat Example 1, with the following differences: use a special polytetrafluoroethylene digestion tank instead of a stoppered Erlenmeyer flask for digestion.
[0084] The results show that the special polytetrafluoroethylene digestion tank and the corked conical flask have basically the same results after digestion, but the cost is more than 10 times higher.
Embodiment 3
[0086] Example 1 was repeated with the following difference: no cooling was performed during the digestion. The results showed that continuous high-temperature digestion would cause tobacco and soot to form a paste, which would stick to the wall of the triangular flask, resulting in incomplete digestion.
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