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Macroreticular resin capable of lowering content of phenyl hydroxide in cigarette smoke and preparation method thereof

A cigarette smoke and pore adsorption technology, applied in chemical instruments and methods, other chemical processes, etc., can solve the problem of reducing phenol release, achieve the effect of reducing pollution and improving adsorption rate

Inactive Publication Date: 2013-11-27
HUBEI CHINA TOBACCO IND +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] To sum up, some explorations and researches have been carried out at home and abroad on how to effectively reduce the release of phenol in cigarette smoke. These work mainly focus on the treatment of tobacco leaves and shredded tobacco, and the treatment of filter rods (additives). No research work has been done to selectively reduce the release of phenol in cigarette smoke by adding macroporous adsorbent resin to the mouthpiece

Method used

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  • Macroreticular resin capable of lowering content of phenyl hydroxide in cigarette smoke and preparation method thereof
  • Macroreticular resin capable of lowering content of phenyl hydroxide in cigarette smoke and preparation method thereof
  • Macroreticular resin capable of lowering content of phenyl hydroxide in cigarette smoke and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] In parts by weight, the macroporous adsorption resin contains the following components:

[0037] Oil phase

[0038]

[0039] water box

[0040] 400g deionized water

[0041] Polyvinyl alcohol (PVA) 3 grams

[0042] NaCl 30g

[0043] The porogen is methylbenzene and dimethylbenzene are mixed in a mass ratio of 4:6.

[0044] The specific process of the preparation method of the macroporous adsorption resin is as follows:

[0045] (1) According to the synthetic formula of the macroporous adsorption resin, accurately weigh NaCl and deionized water into a three-necked reaction vessel, and stir at 30-40 rpm (revolutions per minute);

[0046] (2) Place the reaction vessel in an oil bath and raise the temperature to 60°C, add polyvinyl alcohol (PVA), this system is water phase;

[0047] (3) Accurately weigh styrene, 1,4-butanediol diacrylate (BDDA), porogen and dibenzoyl peroxide (BPO) according to the synthetic formula of the macroporous adsorption resin, and mix them evenly into the oil pha...

Embodiment 2

[0058] In parts by weight, the macroporous adsorption resin contains the following components:

[0059] Oil phase

[0060]

[0061] water box

[0062] 400g deionized water

[0063] Polyvinyl alcohol (PVA) 3 grams

[0064] NaCl 30g

[0065] According to the synthetic formula of the macroporous adsorption resin of the present invention, accurately weigh 30 grams of NaCl and 400 grams of deionized water into a three-necked reaction vessel, stir at 30-40 rpm (revolutions per minute); place the reaction vessel in an oil bath Heat up the pot to 60°C, add 3 grams of PVA, the system is the water phase; accurately weigh 25 grams of styrene (ST), 25 grams of 80% divinylbenzene (DVB), dimethyl 60 grams of base benzene and 1.5 grams of dibenzoyl peroxide (BPO), mix evenly into the oil phase, then pour it into the water phase, heat up to 70°C for polymerization, and speed up the stirring speed of the reactor to 40-50rpm , To make the small droplets formed by the oil phase uniformly dispersed in th...

Embodiment 3

[0071] In parts by weight, the macroporous adsorption resin contains the following components:

[0072] Oil phase

[0073]

[0074] water box

[0075] 400g deionized water

[0076] Polyvinyl alcohol (PVA) 3 grams

[0077] NaCl 30g

[0078] According to the synthetic formula of the macroporous adsorption resin, accurately weigh 30 grams of NaCl and 400 grams of deionized water into a three-neck reaction vessel, stir at 30-40 rpm (revolutions per minute); place the reaction vessel in an oil bath Heat up to 60℃, add 3 grams of PVA, this system is the water phase; accurately weigh 28 grams of styrene (ST) and 22 grams of 1,4-butanediol diacrylate (BDDA) according to the macroporous adsorption resin synthesis formula. 60 grams of dimethylbenzene and 2 grams of azobisisobutyronitrile (AIBN) are mixed uniformly into the oil phase, and then poured into the water phase, heated to 70°C for polymerization reaction, and at the same time accelerate the stirring speed of the reactor to 40 -50rpm to...

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Abstract

The invention discloses a macroreticular resin capable of lowering the content of phenyl hydroxide in cigarette smoke and a preparation method thereof. The macroreticular resin comprises the following components in parts by mass: oil phase: 20-30 parts of phenethylene, 10-30 parts of cross-linking agent, 40-60 parts of pore-foaming agent and 1-2 part (s) of initiator; water phase: 300-400 parts of deionized water, 2-3 parts of dispersant and 25-40 parts of NaCl; the mass ratio of the oil phase to the water phase is 1: (3-4). The macroreticular resin provided by the invention can effectively and selectively reduce the release amount of phenyl hydroxide in mainstream smoke of cigarettes by more than 30%, and the addition amount of the macroreticular resin in a mouthpiece can be optionally adjusted as required; the macroreticular resin can selectively absorb poisonous substances such as phenyl hydroxide in smoke while keeping the smoke aroma unchanged and the release amount of tar oil approximately unchanged or slightly reduced without causing adverse impact on the smoking quality of cigarettes, thereby achieving the purpose of selectively reducing the release amount of phenyl hydroxide in cigarette smoke.

Description

Technical field [0001] The invention relates to a preparation method of a macroporous adsorption resin, in particular to a macroporous adsorption resin for reducing the content of phenol in cigarette smoke and a preparation method thereof. Background technique [0002] Macroporous adsorption resin is a kind of macroporous adsorption resin that does not contain exchange groups and has a macroporous structure. It is an organic polymer polymer that is insoluble in acids, alkalis and various organic solvents. It is a class developed in modern times. Organic polymer adsorbent. The separation technology using macroporous adsorption resin is one of the new separation technologies developed in the late 1960s after ion exchange resin, and has been widely used in environmental protection, food, traditional Chinese medicine, metallurgy and other fields. It has many advantages such as high physical and chemical stability, large specific surface area, large adsorption capacity, good selectiv...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08F212/08C08F212/36C08F222/14C08J9/28B01J20/26B01J20/30
Inventor 尹团章王娜庞登红熊国玺张磊朱巍黄龙
Owner HUBEI CHINA TOBACCO IND
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