Preparation method and application of composite nicotine salt and electronic tobacco tar
A technology of nicotine salt and linoleic acid, applied in the field of electronic cigarettes, can solve the problems of fragrance, the effect of relieving smoking addiction, and the safety of use is not ideal, and achieve the effect of excellent smoking experience, close fragrance, and relieving smoking addiction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2019-11-22
- Estimated Expiration
- Not applicable · inactive patent
Smart Images

Figure 1
Abstract
Description
technical field
[0001] The invention belongs to the technical field of electronic cigarettes, and in particular relates to a preparation method and application of electronic cigarette oil compounded with nicotine salt solution. Background technique
[0002] E-cigarettes are electronic products that mimic cigarettes and have the same look, smoke, taste and feel as cigarettes. It is a product that allows users to inhale after turning liquid nicotine salt into steam by means of atomization. The structure of e-cigarette mainly includes three parts: a pipe containing liquid nicotine salt, an evaporator and a battery. The liquid nicotine salt electronic cigarette oil is the key to the smoking quality of electronic cigarettes, and the existing liquid nicotine salt has unsatisfactory fragrance after smoking, effect of relieving smoking addiction and safety of use. Contents of the invention
[0003] In order to solve the above-mentioned problems in the prior art, the present inve...
Examples
Embodiment 1
[0019] This embodiment provides a compound nicotine salt. The raw material components include: 500g of organic acid and 500g of nicotine base. %, citric acid 9%, malic acid 10%, ascorbic acid 1%.
[0020] Further, a method for preparing the compound nicotine salt is provided, comprising the steps of: mixing 100 g of benzoic acid, 50 g of linolenic acid, 250 g of linoleic acid, 45 g of citric acid, 50 g of malic acid, and 5 g of ascorbic acid according to the above mass ratio to obtain a mixed Material S1; mix 250g squalene and 250g squalane uniformly at 1:1 to obtain mixture S2; pour mixture S2 into mixture S1, then add 500g of nicotine base, 250g of glycerol and propylene glycol, and heat Heat to 50°C, stir while heating to fully react, the speed of stirring is 50rpm, that is to say.
Embodiment 2
[0022] This embodiment provides a compound nicotine salt. The raw material components include: 400g of organic acid and 600g of nicotine base. %, citric acid 9%, malic acid 10%, ascorbic acid 1%.
[0023] Further, a method for preparing the compound nicotine salt is provided, comprising the steps of: mixing 80 g of benzoic acid, 40 g of linolenic acid, 200 g of linoleic acid, 36 g of citric acid, 40 g of malic acid, and 4 g of ascorbic acid according to the above mass ratio to obtain a mixed Material S1; mix 250g squalene and 250g squalane uniformly at 1:1 to obtain mixture S2; pour mixture S2 into mixture S1, then add 600g of nicotine base, 250g of glycerol and propylene glycol, and heat Heat to 50°C, stir while heating to fully react, the speed of stirring is 50rpm, that is to say.
Embodiment 3
[0025] This embodiment provides a compound nicotine salt, the raw material components include: 600g of organic acid, 400g of nicotine base, the organic acid is composed of the following components in mass percentage: 20% of benzoic acid, 10% of linolenic acid, 50% of linoleic acid %, citric acid 9%, malic acid 10%, ascorbic acid 1%.
[0026] Further, a method for preparing the compound nicotine salt is provided, comprising the steps of: mixing 120 g of benzoic acid, 60 g of linolenic acid, 600 g of linoleic acid, 54 g of citric acid, 60 g of malic acid, and 6 g of ascorbic acid according to the above mass ratio to obtain a mixed Material S1; mix 250g squalene and 250g squalane uniformly at 1:1 to obtain mixture S2; pour mixture S2 into mixture S1, then add 400g of nicotine base, 250g of glycerol and propylene glycol, and heat Heat to 50°C, stir while heating to fully react, the speed of stirring is 50rpm, that is to say.