Preparation method of ethyl silicate
A preparation process, a technology of ethyl silicate, applied in the directions of silicon organic compounds, chlorine/hydrogen chloride, etc., can solve the problems of low economic efficiency of hydrochloric acid, multiple operating costs, and reduced yield, and achieve clean production, significant economic and social Benefit, the effect of improving yield
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0019] Be 80% silicon tetrachloride and 95% ethanol 1:0.8 mass ratio batching by 200g content, put into reactor after silicon tetrachloride is measured, then add silicon tetrachloride amount 0.1% Active copper powder 0.2g. Add 95% ethanol to the specified liquid level in the ethanol high level tank, and set aside. Then turn on the vacuum pump to evacuate, control the vacuum degree of 0.01-0.05MPa, and gradually add ethanol to the reaction kettle dropwise. Slowly raise the temperature of the kettle to reflux. The HCl produced during the reaction is absorbed by water to produce hydrochloric acid by-product. After reflux for about 0.5 hours, the temperature is raised to evaporate unreacted ethanol. After the distillation, the solution was cooled down, a certain amount of activated carbon was added, stirred and precipitated for one hour, and then filtered, the filtrate was distilled to remove ethanol, and the fraction at 160-180°C was collected to obtain ethyl silicate 206 with a...
Embodiment 2
[0022] Be 80% silicon tetrachloride and 95% ethanol 1:1 mass ratio batching by 100g content, put into reactor after silicon tetrachloride is metered, then add the active copper of silicon tetrachloride amount 0.8% Powder 0.8g. Add 95% ethanol to the specified liquid level in the ethanol high level tank, and set aside. Then turn on the vacuum pump to evacuate, control the vacuum degree of 0.01-0.05MPa, and gradually add ethanol to the reaction kettle dropwise. Slowly raise the temperature of the kettle to reflux. The HCl produced during the reaction is absorbed by water to produce hydrochloric acid by-product. After reflux for about 0.5 hours, the temperature is raised to evaporate unreacted ethanol. After the distillation, the solution was cooled down, a certain amount of activated carbon was added, stirred and precipitated for one hour, and then filtered, the filtrate was distilled to remove ethanol, and the fraction at 160-180°C was collected to obtain ethyl silicate 105 wi...
Embodiment 3
[0024] Be 90% silicon tetrachloride and 95% ethanol 1:1.2 mass ratio batching by 150g content, put into reactor after silicon tetrachloride is measured, then add the active zinc of silicon tetrachloride amount 0.2% Powder 0.3g. Add 95% ethanol to the specified liquid level in the ethanol high level tank, and set aside. Then turn on the vacuum pump to evacuate, control the vacuum degree of 0.01-0.05MPa, and gradually add ethanol to the reaction kettle dropwise. Slowly raise the temperature of the kettle to reflux. The HCl produced during the reaction is absorbed by water to produce hydrochloric acid by-product. After about 1 hour of reflux, the temperature is raised to evaporate unreacted ethanol. After the distillation, the solution was cooled down, a certain amount of activated carbon was added, stirred and precipitated for one hour, then filtered, the filtrate was distilled to remove ethanol, and the fraction at 160-180°C was collected to obtain ethyl silicate 158 with a yi...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com