Sugary copolymer composite material for reducing phenol-type substances in cigarette smoke and preparation
A composite material and cigarette smoke technology, which is applied in tobacco, smoke oil filter elements, food science, etc., can solve the problems of increasing harmful components, complicated preparation process, and influence on the taste of smoke, so as to reduce the harmful components of phenols and maintain the inherent Quality, the effect of avoiding the loss of aroma components
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Embodiment 1
[0048] The synthesis of the hydrophilic polycation of the sugar-containing binary copolymer is according to the above method, wherein the raw material A is adipic acid, the raw material C is glucose, the raw material E is allylamine hydrochloride, and the product B is divinyl adipate Esters, the product D is glucosyl vinyl adipate, synthesized to obtain a sugar-containing binary copolymer hydrophilic polycation.
[0049] 1647cm in the infrared spectrogram of the above-mentioned sugar-containing binary copolymer hydrophilic polycation -1 The disappearance of the characteristic peak of the C=C double bond at 3000-3100cm -1 The appearance of the characteristic peak of primary ammonium salt at 1000~1100cm -1 The maintenance of the characteristic peak of the sugar C-O vibration at the position indicates that the product is successfully polymerized, and has the following structural formula:
[0050]
[0051] According to the nuclear magnetic resonance detection data of the abov...
Embodiment 2
[0053] The synthesis of the hydrophilic polycation of the sugar-containing binary copolymer is according to the above method, wherein the raw material A is pimelic acid, the raw material C is raffinose, the raw material E is N-methylallylamine hydrochloride, and the product B It is divinyl pimelate, the product D is raffinosyl vinyl pimelate, the molar ratio of product D to raw material E is 5:1, and the sugar-containing binary copolymer hydrophilic polycation is synthesized.
[0054] 1645cm in the infrared spectrogram of the above-mentioned sugar-containing binary copolymer hydrophilic polycation -1 The disappearance of the C=C double bond characteristic peak at 3000cm -1 The appearance of the characteristic peak of secondary ammonium salt at 1000~1100cm -1 The maintenance of the characteristic peak of the sugar C-O vibration at the position indicates that the product is successfully polymerized, and has the following structural formula:
[0055]
[0056] According to th...
Embodiment 3
[0058] The synthesis of the hydrophilic polycation of the sugar-containing binary copolymer is according to the above method, wherein the raw material A is malonic acid, the raw material C is maltose, the raw material E is allylamine hydrochloride, and the product B is diethylene malonate Esters, the product D is maltosyl malonate vinyl ester, the molar ratio of the product D to the raw material E is 2:1, and the sugar-containing binary copolymer is synthesized to obtain a hydrophilic polycation.
[0059] 1646cm in the infrared spectrogram of the above-mentioned sugar-containing binary copolymer hydrophilic polycation -1 The disappearance of the characteristic peak of the C=C double bond at 3000-3100cm -1 The appearance of the characteristic peak of primary ammonium salt at 1000~1100cm -1 The maintenance of the characteristic peak of the sugar C-O vibration at the position indicates that the product is successfully polymerized, and has the following structural formula:
[00...
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