Electrolyte solution for preparing sodium silicate storage battery and method for preparing electrolyte
A sodium silicate and storage battery technology, applied in the direction of lead-acid storage batteries, etc., can solve the problems of land loss of use value, etc., achieve the effect of solving hydrogen evolution flash explosion, overcoming serious pollution of acid mist, and extremely easy to handle
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 2
[0028] Weigh the raw materials to configure the electrolytic stock solution according to the following ratio:
[0029] Sodium silicate (Na 2 OSoO 2 ) content in Table 2, the silicon dioxide (SiO 2 ) The particle volume percentage is 31-37.9%.
[0031] Sodium carbonate 9-10%;
[0032] Poly-3-chlorobutene 0.014~0.028%;
[0033] Polyaminosiloxane 0.38~1.18%;
[0034] The balance is water, and the above percentages are volume percentages.
[0035] Put the prepared electrolytic stock solution into a high-pressure container and heat it to 100-400°C. The pressure in the high-pressure container is 2.85-6.17MPa, keep it for 21-31 hours, and cool to room temperature to obtain nano-scale silicon dioxide (SiO 2 ) granulated clear sodium silicate liquid electrolyte. Table 2 is a comparison table of acid mist in the preparation process of the electrolyte prepared according to different contents of sodium silicate in this embodiment:
[0036] ...
Embodiment 3
[0039] Weigh the raw materials to configure the electrolytic stock solution according to the following ratio:
[0040] Sodium silicate (Na 2 OSoO 2 ) 12 to 15%, the silicon dioxide (SiO 2 ) The particle volume percentage is 31-37.9%.
[0041] The content of sodium sulfate is shown in Table 3;
[0042] Sodium carbonate 9-10%;
[0043] Poly-3-chlorobutene 0.014~0.028%;
[0044] Polyaminosiloxane 0.38~1.18%;
[0045] The balance is water, and the above percentages are volume percentages.
[0046] Put the prepared electrolytic stock solution into a high-pressure container and heat it to 100-400°C. The pressure in the high-pressure container is 2.85-6.17MPa, keep it for 21-31 hours, and cool to room temperature to obtain nano-scale silicon dioxide (SiO 2 ) granulated clear sodium silicate liquid electrolyte. Table 3 is the acid mist comparison table during the preparation process of the electrolyte prepared according to different contents of sodium sulfate in this embodimen...
Embodiment 4
[0050] Weigh the raw materials to configure the electrolytic stock solution according to the following ratio:
[0051] Sodium silicate (Na 2 OSiO 2 ) 12 to 15%, the silicon dioxide (SiO 2 ) The particle volume percentage is 31-37.9%.
[0052] Sodium sulfate 11-16%;
[0053] The content of sodium carbonate is shown in Table 4;
[0054] Poly-3-chlorobutene 0.014~0.028%;
[0055] Polyaminosiloxane 0.38~1.18%;
[0056] The balance is water, and the above percentages are volume percentages.
[0057] Put the prepared electrolytic stock solution into a high-pressure container and heat it to 100-400°C. The pressure in the high-pressure container is 2.85-6.17MPa, keep it for 21-31 hours, and cool to room temperature to obtain nano-scale silicon dioxide (SiO 2 ) granulated clear sodium silicate liquid electrolyte. Table 4 is the acid mist comparison table in the preparation process of the electrolyte prepared according to different contents of sodium carbonate in this embodiment...
PUM
Property | Measurement | Unit |
---|---|---|
percent by volume | aaaaa | aaaaa |
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