Cigarette filter tip containing amino-cage silsesquioxane nanoparticle additive
A technology of silsesquioxane and nano-additives, applied in the direction of e-liquid filter, tobacco, application, etc., can solve the problems of inability to remove ammonia, weak correlation, reducing the amount of ammonia released from cigarettes, etc. Simple implementation, obvious effect
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Embodiment 1
[0018] Octaaminophenyl cage-type silsesquioxane is used as a binary compound filter additive material, sieved to 50-300 mesh particles, and the addition amount is 5mg / cig., so as not to add any filter modification material Cigarettes were used as control samples, and the cigarette smoking test was carried out on a smoking machine according to standard smoking conditions, and the detection of ammonia release in mainstream smoke was carried out according to the standard YC / T377-2010. The analysis results are shown in Table 1.
Embodiment 2
[0020] Octaaminopropyl cage-type silsesquioxane is used as a binary compound filter additive material, sieved to 50-300 mesh particles, and the addition amount is 20mg / cig., so as not to add any filter modification material Cigarettes were used as control samples, and the cigarette smoking test was carried out on a smoking machine according to standard smoking conditions, and the detection of ammonia release in mainstream smoke was carried out according to the standard YC / T377-2010. The analysis results are shown in Table 1.
Embodiment 3
[0022] The mixture of octaaminophenyl cage silsesquioxane and octaaminopropyl cage silsesquioxane in a mass ratio of 3:1 is used as a binary compound filter additive material, and is sieved to 50- 300-mesh granules, the addition amount is 30mg / cig., taking the cigarette without adding any filter modification material as the control sample, the cigarette smoking test is carried out on the smoking machine according to the standard smoking conditions, and the test is carried out according to the standard YC / T377-2010 Detection of ammonia release in mainstream smoke. The analysis results are shown in Table 1.
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