Double Sides Laboratory Glove Box Gas Management System with Inert 3 Ports Organic Gas Purification
Product Details:
Place of Origin: | Hunan, China |
Brand Name: | TENCAN |
Certification: | CE ISO |
Model Number: | GBP1000S-3 |
Payment & Shipping Terms:
Minimum Order Quantity: | 1 set |
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Price: | Negotiable |
Packaging Details: | Plywood Case+Foam |
Delivery Time: | 25-35 working days After getting deposit |
Payment Terms: | T/T, Western Union |
Supply Ability: | 100 sets per month |
Detail Information |
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Product Name: | Purification System Glove Box | Model No.: | GBP1000S-3 |
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Water Content: | Less Than 1PPM | Oxygen: | '-3000pa~+3000pa |
Leakage Rate: | Less Than 0.05 Vol %/h | Bearing Pressure: | '-3000pa~+3000pa |
Operating Side: | Double Sides | Purification Column: | Single Or Double At Buyer's Option |
Highlight: | Organic Gas Purification Laboratory Glove Box,3 Ports Laboratory Glove Box,Double Sides Laboratory Glove Box |
Product Description
China Tencan 3 Glove Ports Single Side Glove Box With Purification System for Water and Oxygen Removal
Brief Introduction
The Purification System Glove Box represents a specialized laboratory apparatus designed to accommodate a high-purity inert gas fill, while continuously circulating and filtering out active substances from within. Commonly referred to as both the "vacuum glove box for water and oxygen removal" and the "inert gas purification glove box," this device serves multiple primary functions: eliminating water content, reducing oxygen levels, and removing other organic gases. It finds extensive application in creating high-purity environments devoid of water, oxygen, and dust particles.
Working principle
The box and purification system are integrated to form a tightly sealed working environment. As inert gas or nitrogen is continuously infused into the box, active substances within are cyclically extracted, ensuring the interior maintains a consistently high level of cleanliness and a pure inert gas atmosphere (with water content no greater than 1 ppm and oxygen content no more than 1 ppm).
Structure Principle
The Purification System Glove Box primarily comprises two components: the main box body and a transition chamber. We offer custom designs and specifications tailored to our clients' unique requirements.
The main box body features two (or more) glove operation interfaces positioned either at the front or back, allowing for simultaneous operation by one or multiple individuals, thereby enhancing the efficiency of glove box utilization. Additionally, observation windows on either the front or back side provide clear visibility into the box's interior, enabling users to monitor the operational process seamlessly. The transition chamber is equipped with air suction and charging nozzles on its valves, facilitating air extraction or infusion as needed. Furthermore, the main box body is installed with a valve and nozzle system that can maintain air pressure balance inside the box when necessary.
The transition chamber serves as a buffer zone between the main box body and the external environment. It consists of two sealing doors, two valves, and a chamber body. Both sealing doors effectively isolate the interior of the main box body from the outside, enabling users to freely move items in and out of the box without the need for repeated evacuation and inflation cycles, thereby simplifying the process and reducing inconvenience.
Applications
It is applicable for creating a pure environment by eliminating water, oxygen, and dust.
R&D and production of battery industry (Lithium ion battery, powder battery, solar cell, lithium ion phosphate battery ).
R&D and manufacture of special lamp (HD lamp, metal halide lamp, ceramic metal halide lamp).
Welding (resistance welding, TIG welding, laser welding, plasma welding, brass solder)
R&D and production of OLED
R&D and production of pharmaceuticals
R&D and production of super capacitors
Fine chemical industry
Nuclear industry
R&D and production of new energy materials
Specifications
Specifications of Standard Model of Purification Glove Box | ||||||
No. | Model No. | Box Dimensions | Total Dimensions | Operating Sides |
Numbers of Gloves |
Options |
1 | GBP800S-2 | 1200*800*930mm | 1915*830*1830mm | Single | 2 | Single or double purification columns |
2 | GBP1000S-2 | 1200*1000*930mm | 1915*1060*1830mm | Single | 2 | Single or double purification columns |
3 | GBP1000D-4 | 1200*1000*930mm | 1915*1060*1830mm | Double | 4 | Single or double purification columns |
4 | GBP1200S-2 | 1200*1200*930mm | 1915*1260*1830mm | Single | 2 | Single or double purification columns |
5 | GBP1200D-4 | 1200*1200*930mm | 1915*1260*1830mm | Double | 4 | Single or double purification columns |
6 | GBP800S-3 | 1500*800*930mm | 2215*1060*1830mm | Single | 3 | Single or double purification columns |
7 | GBP1000S-3 | 1500*1000*930mm | 2215*1060*1830mm | Single | 3 | Single or double purification columns |
8 | GBP1000D-6 | 1500*1000*930mm | 2215*1060*1830mm | Double | 6 | Single or double purification columns |
9 | GBP1200S-3 | 1500*1200*930mm | 2215*1260*1830mm | Single | 3 | Single or double purification columns |
10 | GBP1200D-6 | 1500*1200*930mm | 2215*1260*1830mm | Double | 6 | Single or double purification columns |
11 | GBP800S-4 | 1900*800*930mm | 2615*1060*1830mm | Single | 4 | Single or double purification columns |
12 | GBP1000S-4 | 1900*1000*930mm | 2615*1060*1830mm | Single | 4 | Single or double purification columns |
13 | GBP1000D-8 | 1900*1000*930mm | 2615*1060*1830mm | Double | 8 | Single or double purification columns |
14 | GBP1200S-4 | 1900*1200*930mm | 2615*1260*1830mm | Single | 4 | Single or double purification columns |
15 | GBP1200D-8 | 1900*1200*930mm | 2615*1260*1830mm | Double | 8 | Single or double purification columns |
Notes:
Cabinet water and oxygen content under the standard condition:
Water content ≤1ppm, oxygen content≤1 ppm (Note: Standard condition is that an atmospheric pressure, constant temperature of 20 degree).
Leakage Rate: ≤0.05Vol%/ h (subject to change value of oxygen content in box)
Used Gas:
a) Working Gas: N2,Ar,He and etc.
b) Controlling Gas: Compressed air or Inert Gas.
C) Restoring Gas: Mixed gas of working gas and hydrogen.
If there is only a water removal system or an oxygen removal system in place, the restoring gas will be identical to the working gas.
Remarks: All single-sided boxes equipped with four gloves constitute an assembled glove box system. The number of these assembled boxes can be customized based on customer needs, and the quantity of purification columns is tailored to match those requirements.
Technical Parameters
TECHNICAL DATA OF TENCAN INERT GAS GLOVE BOX WITH PURIFICATION SYSTEM | |
Items | Data |
Water content under the standard condition (Note: The standard condition is one atmospheric pressure, constant temperature of 20 degrees) | ≤1ppm |
Oxygen content under the standard condition (The standard condition is one atmospheric pressure, constant temperature of 20 degrees ) | ≤1ppm |
Max Vacuum Degree which the transition cabinet bears | <100pa |
Leakage Rate | ≤ 0.05vol%/h |
Gas presure range inside the box | -3000pa~+3000pa |
Functions
FUNCTIONS OF TENCAN INERT GAS GLOVE BOX WITH PURIFICATION SYSTEM | |
Items | Descriptions |
Automatic Control | Controlled and monitored automatically by the program control unit. |
Box body gas replacement (manual/automatic) |
Prior to initial use, the cabinet's air should be exchanged with inert gas or nitrogen. This can be conveniently accomplished using the system-provided automatic gas replacement function of the cabinet, or alternatively, the gas exchange can be performed manually. |
Transition cabinet replacement (manual/automatic |
When material is placed inside a box, the gas in the transition cabinet needs to be replaced. This can be done using the automatic gas exchange function provided by the airlock system, or alternatively, the gas replacement can be carried out manually. |
Gas purification control |
Once the work status and results are set, the system's purification procedures can be configured to "Auto," enabling the system to automatically maintain the cabinet's atmosphere condition and complete the work. Alternatively, manual control can be selected. |
Pedal air-pressure control |
Utilize the foot controller to manipulate the inflation or exhaust system, thereby controlling the gas pressure within the cabinet. |
Reduction of purification system |
The system automatically handles the reduction of purification materials, requiring only the setting of reduction conditions. By enabling the "reduce" function, the system will complete the reduction process without the need for manual monitoring throughout. |
On-line operating condition detection |
The control system offers users a component operating condition detection feature, which can be utilized to monitor the operational status of equipment components and diagnose the fault sources of each function and component. |
System parameter setting |
The system settings function allows users to configure system parameters in order to achieve their desired working conditions and feature set. |
Data logging function |
The system provides operating parameter record of the equipment, this record can be traced back to monitor production or experiment. |
Control of gas reserve function |
When the temporary cutting of control-gas supply, or cutting off control-gas source for some time, the control-gas reserve will protect the equipment continue working. |
Standby function of cycle gas cooled | Purification system provides a heat exchange for cooling the circulating gas, can be used alone by injecting the coolant to control the temperature of the circulating gas. |
Multi-level safety system |
The control system incorporates various security measures, such as multilevel security prompts, alarms, and disable functions, to ensure the safety of both operating personnel and equipment. |
Protection function when purification cycle blocked |
When the circulation system becomes obstructed, the control system triggers alerts and proactively adjusts the air speed to safeguard the motor. Additionally, this function can identify issues such as system cycle blockages, pipeline inefficiencies, filter-controlled dust obstructions, and other related problems. |