Cigarette designing method based on smoke perniciousness index
A technology with a hazard index and a design method, which is applied in the fields of tobacco, cigarette manufacturing, and application, can solve the problems that cannot be achieved more effectively, affects the design of cigarettes, and reduces the effects of harm and coke.
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Embodiment 1
[0046] The statistics and detection of all the data in the present invention are based on the ISO 4387 domestic conversion standard, and single-material cigarette products prepared according to the requirements of different material design parameters are used as experimental samples.
[0047] The measurement standard of the sample is: the ISO regime scheme is set according to the provisions of GB / T 19609 (ISO 4387 domestic conversion standard): suction capacity, 35mL; suction frequency, 60s / port; air permeability of the filter rod without artificial closure.
[0048] The detection of physical indicators of cigarettes shall be carried out according to GB / T 22838. The determination of N-nitrosamines in the gas phase of flue gas is carried out according to GB / T 23228-2008.
[0049] The physical parameters of each cigarette sample are shown in Table 1
[0050] Table 1 Parameters of cigarette experimental samples
[0051] Sample serial number Amount of additive (cit...
specific Embodiment 2
[0056] Based on the content described in Example 1, when the air permeability (b3) of the tipping paper is different, the relationship model can be further improved in order to optimize the obtained results. Specifically, in an embodiment, when the tipping paper is air-permeable When degree (b3)=150CU, the relationship model can be as follows:
[0057] X = 3.5396 – 15.0000 × b1 – 0.012187 × b2 + (0.3149 × 10 -5 ) × b4 - (0.6149 × 10 -3 ) × b5 + 1.1684 × b6
[0058] Analysis of the above regression equation shows that: ① When the air permeability of tipping paper is low (b3=150CU), increase the amount of additive (citrate) in cigarette paper (b1), air permeability of cigarette paper (b2) and filter rod pressure drop (b5), can reduce the hazard index value. ② When the air permeability of the tipping paper is low (b3=150CU), reducing the amount of other shredded tobacco (expanded stem) (b6) can reduce the hazard index value.
specific Embodiment 3
[0059] Based on the content described in Example 1, when the air permeability (b3) of the tipping paper is different, the relationship model can be further improved in order to optimize the obtained results. Specifically, in an embodiment, when the tipping paper is air-permeable When degree=300, the described relationship model can be as follows:
[0060] X = -1.4803 + 0.07451 × b2 + (1.5801 × 10 -3 ) × b5 – 2.9856 × b6
[0061] Analysis of the above regression equation shows that: ①When the air permeability of the tipping paper is medium (b3=300CU), reducing the air permeability of the cigarette paper (b2) and the pressure drop of the filter rod (b5) can reduce the hazard index value. ②When the air permeability of the tipping paper is low (b3=300CU), increasing the amount of other shredded tobacco (expanded stem) (b6) can reduce the hazard index value.
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