High-Quality Potassium Silicate, Sodium Silicate, Lithium Silicate for Global Markets
PRODUCT PARAMETERS
Description
Overview of Sodium Silicate Liquid
Sodium silicate liquid, also known as water glass, is a versatile inorganic compound comprising sodium oxide (Na₂O) and silica (SiO₂) in aqueous solution. It is widely used across industries such as construction, detergent manufacturing, foundry, and drilling fluids due to its unique properties including adhesive strength, heat resistance, and chemical stability.
Features of Sodium Silicate Liquid
Adhesive Strength: Provides excellent bonding capabilities, making it ideal for foundry work and abrasive wheels.
Heat Resistance: Effective in high-temperature applications like refractory materials and cement production.
Chemical Stability: Resistant to many chemicals, ensuring durability in harsh environments.
Versatility: Used in detergents, fireproofing, and as a sealant in various industrial processes.
Water Solubility: Easily mixes with water, facilitating its use in multiple applications.

Specifications of Sodium Silicate Liquid Fluidized Bed Ammonia Synthesis Microwave Titanium Stainless Steel Decarboxylation Reactor Machine
Requirements of Salt Silicate Liquid Fluidized Bed Ammonia Synthesis Microwave Titanium Stainless-steel Decarboxylation Activator Machine
Core Construction and Materials
The reactor body is built from state-of-the-art titanium-stainless steel alloy. This product withstands rust and deals with high temperatures well. All wetted components make use of the exact same alloy to avoid contamination throughout chain reactions.
Reaction System Layout
This machine incorporates a fluidized bed with microwave heating for effective ammonia synthesis. The fluidized bed keeps salt silicate bits uniformly put on hold in liquid. Microwaves warm the blend promptly and evenly. This setup boosts response rate and item yield.
Running Parameters
The device performs at temperatures from 150 ° C to 450 ° C. Stress varies from 1 to 20 bar, depending upon the procedure phase. Microwave power outcome changes between 1 kW and 10 kW. Operators can regulate these settings through a digital user interface.
Safety And Security and Control Features
Integrated stress safety valve protect against overpressure. Temperature level sensing units monitor warmth levels in genuine time. An automatic closure triggers if readings exceed risk-free limitations. The control panel shows all crucial information plainly. Alarms warn customers of any type of unusual problems.
Utility Needs
The equipment requires a three-phase electrical supply (380 V, 50/60 Hz). Cooling water should move at 2– 5 L/min to manage heat from the microwave generator. Pressed air (0.6– 0.8 MPa) powers pneumatically-driven shutoffs and actuators.
Dimensions and Capacity
General size is 2200 mm (L) × 1200 mm (W) × 1800 mm (H). The primary reaction chamber holds up to 200 liters. Feed and discharge ports are common 50 mm flanges. The total weight has to do with 1,200 kg.
Maintenance Accessibility
All solution factors are easy to reach. Assessment windows allowed drivers check out interior activity without stopping the process. Cleansing ports permit quick elimination of residue after each set.

Applications of Sodium Silicate Liquid Fluidized Bed Ammonia Synthesis Microwave Titanium Stainless Steel Decarboxylation Reactor Machine
Applications of the Salt Silicate Fluid Fluidized Bed Ammonia Synthesis Microwave Titanium Stainless Steel Decarboxylation Activator Maker
Versatile Industrial Efficiency
This activator machine incorporates numerous advanced technologies right into one effective system. It uses a fluidized bed style with salt silicate fluid to sustain secure reactions. The system likewise integrates microwave heating, which quickens chemical procedures and boosts power efficiency. Its core chamber is developed from titanium and stainless-steel. These products resist corrosion and take care of high temperatures well.
The device is generally used in ammonia synthesis. It creates optimal problems for converting nitrogen and hydrogen into ammonia. This process take advantage of the even warm distribution of the fluidized bed and the rapid reaction of microwave power. Because of this, output quality remains regular while power use drops.
Specialized Chemical Processing
Beyond ammonia manufacturing, this reactor masters decarboxylation jobs. It gets rid of carboxyl groups from organic substances cleanly and effectively. Labs and manufacturing facilities use it to fine-tune bio-based products, pharmaceutical intermediates, and fine chemicals. The stainless steel and titanium building makes sure no unwanted responses occur throughout processing.
Operators likewise make use of the system in silica-related applications. Salt silicate liquid serves as both an assistance tool and a catalyst in specific formulas. The fluidized bed maintains bits suspended, which boosts contact in between substances and raises reaction prices.
Temperature level control is specific many thanks to microwave innovation. Individuals established precise parameters and get repeatable results whenever. Maintenance is simple due to the fact that the inner surfaces remain clean and smooth. Fewer deposits mean much less downtime and lower operating costs.
This activator fits industries that need trustworthy, scalable, and clean chemical synthesis. It works well in fertilizer production, specialty chemical production, and research study atmospheres where control and purity matter most.
Company Introduction
Welcome to Iberocruceros, a leading supplier in the international market for high-quality potassium silicate, sodium silicate, and lithium silicate.
Our products are meticulously crafted to meet the diverse needs of various industries, including construction, agriculture, and manufacturing. With state-of-the-art production facilities and a commitment to excellence, we ensure superior product quality and customer satisfaction.
We pride ourselves on our innovative solutions, competitive pricing, and reliable delivery services. Partner with us for your silicate needs and experience the difference that expertise and dedication can make. Let’s build a sustainable future together.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.

5 FAQs of Sodium Silicate Liquid Fluidized Bed Ammonia Synthesis Microwave Titanium Stainless Steel Decarboxylation Reactor Machine
Frequently Asked Questions
What does this reactor machine do?
This machine handles complex chemical processes like decarboxylation, ammonia synthesis, and sodium silicate treatment. It uses microwave heating inside a fluidized bed chamber made of titanium stainless steel. The design helps reactions happen faster and more evenly.
Why is the chamber made of titanium stainless steel?
Titanium stainless steel resists corrosion and high heat. Many chemicals used in these reactions are aggressive. This material keeps the reactor safe and lasts longer. It also stays stable during microwave exposure.
How does microwave heating help?
Microwave energy heats materials from the inside out. This gives better temperature control than traditional methods. Reactions become quicker and use less energy. It also reduces hot spots that can damage products.
Can it handle sodium silicate safely?
Yes. Sodium silicate is alkaline and sticky when heated. The smooth surface of the titanium stainless steel chamber prevents buildup. The fluidized bed keeps particles moving, so nothing sticks or clogs the system.
Is this machine hard to operate?
No. The control panel is simple. Operators set time, power, and temperature. The system runs automatically after that. Safety sensors stop the machine if something goes wrong. Training takes just a few hours. Most users run it without issues.
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