7000CMH High Efficiency Industry Air Desiccant Dehumidifier

Product Details
Customization: Available
Usage: Industry
Certification: CE, ISO9001: 2008
Gold Member Since 2011

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Year of Establishment
1995-07-07
Number of Employees
52
  • 7000CMH High Efficiency Industry Air Desiccant Dehumidifier
  • 7000CMH High Efficiency Industry Air Desiccant Dehumidifier
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Basic Info.

Model NO.
ZCS-7000
Timing Function
With Timing Function
Function
Washable Air Filter, Automatic Humidistat Control
Type
Desiccant Dehumidifier
Capacity
50kg/H
Dehumidifier Type
Desiccant Adsorption
Transport Package
Wooden Case
Specification
ISO9001: 2015
Trademark
FOUDANCE
Origin
Zhejiang, China
HS Code
84798920
Production Capacity
1000sets/Year

Product Description

 
Model ZCS-7000
Process Airflow(m3/h) 7000
Reactivation Airflow(m3/h) 2330
Rated Dehumidification Capacity(kg/h) 54.6
Reactivation Heating Power(kw) 54
Process Fan Power(kw) 4
Reactivation Fan Power(kw) 2.2
Driving Motor Power(kw) 0.1
Installed Power(kw) 60.3
Overall Dimension(mm) 2930*1520*2320
Weight (kg) 950
Power Supply 380V/3P/50Hz

Desiccant rotor dehumidifiers can be an excellent choice for softgel capsule drying applications in the pharmaceutical industry. Here's a closer look at how a desiccant rotor dehumidifier can benefit the drying of softgel capsules:
  1. Precise Humidity Control:
    • Softgel capsules require a very low humidity environment, typically in the range of 5-10% relative humidity (RH), to ensure proper drying and prevent moisture-related issues.
    • Desiccant rotor dehumidifiers are highly effective at achieving and maintaining these extremely low humidity levels, which is crucial for the successful drying of softgel capsules.
  2. Continuous Operation:
    • Softgel capsule drying is a critical step in the manufacturing process, and any interruptions or fluctuations in humidity control can have significant impacts on product quality.
    • Desiccant rotor dehumidifiers are designed for continuous, uninterrupted operation, which ensures consistent dehumidification performance and minimizes the risk of drying failures or inconsistencies.
  3. Energy Efficiency:
    • The desiccant rotor technology used in these dehumidifiers is generally more energy-efficient than traditional refrigerant-based systems, particularly in applications that require low humidity levels.
    • This can result in lower operational costs for the softgel capsule drying process, which is an important consideration in the pharmaceutical industry.
  4. Compact Design:
    • Desiccant rotor dehumidifiers can have a more compact and modular design compared to larger, centralized dehumidification systems.
    • This allows for easier integration into existing softgel capsule drying facilities, where space may be limited, and can also facilitate scalability as production demands change.
  5. Versatility:
    • Desiccant rotor dehumidifiers can be customized with additional features, such as integrated heating or cooling systems, to create a complete and tailored solution for the softgel capsule drying process.
    • This flexibility allows for optimization of the drying environment to meet the specific requirements of the pharmaceutical application.
  6. Reduced Maintenance:
    • Desiccant rotor dehumidifiers generally require less maintenance compared to refrigerant-based systems, as they have fewer moving parts and do not require regular refrigerant recharging.
    • This can contribute to lower maintenance costs and uninterrupted operation, which is essential in a pharmaceutical manufacturing setting.
When selecting a desiccant rotor dehumidifier for softgel capsule drying, it is important to carefully evaluate the specific requirements of the application, such as the desired humidity level, air volume, and any regulatory or industry-specific standards that need to be met. Consulting with a specialized dehumidification supplier can help ensure the optimal configuration and integration of the desiccant rotor dehumidifier for your softgel capsule drying process.
 

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