Description
Technical Parameters
Core Advantages
Dual-Tower PSA Structure for Uninterrupted Supply
The plant adopts a dual-tower PSA structure, with two molecular sieve towers working alternately. One tower adsorbs nitrogen to produce oxygen while the other desorbs nitrogen for regeneration. This alternating operation realizes 24-hour uninterrupted oxygen supply, avoiding oxygen shortage caused by single-tower downtime and ensuring continuous oxygen supplement for aquaculture water.
Precision Purification to Protect Aquatic Environment
The plant is equipped with a multi-stage precision filter that removes oil, water and dust from ambient air before it enters molecular sieve towers. The filter adopts a detachable structure for easy cleaning and replacement. This purification process prevents impurities from entering aquaculture water, avoiding water pollution and protecting the living environment of aquatic organisms.


Intelligent Control with Automatic Adjustment
The plant is configured with a PLC control unit and a dissolved oxygen sensor that connects to aquaculture water. It collects real-time dissolved oxygen data, automatically adjusts air intake and adsorption cycle, and maintains stable dissolved oxygen levels in water. The control panel displays operation status clearly, enabling operators to grasp equipment conditions without complex operation.
Corrosion-Resistant Design for Aquaculture Environment
All key components of the plant, including molecular sieve towers and pipelines, are coated with anti-corrosion layers. The air compressor and control unit adopt waterproof and moisture-proof structures, which can resist corrosion from high humidity and salt mist in marine and freshwater aquaculture environments, extending component service life.
high quality
Advanced Equipment
Professional Team
One-Stop Solution
Applications
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Freshwater Fish Farming
It delivers oxygen to intensive freshwater fish ponds to prevent hypoxia during high-density breeding.
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Marine Cage Culture
It provides stable oxygen supply for offshore marine cages under wave and salt mist conditions.
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Shrimp and Crab Culture Ponds
It supplements oxygen for high-density shrimp and crab ponds to meet their oxygen demand during molting.
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Aquaculture Hatcheries
It maintains stable oxygen levels in hatching tanks to improve the survival rate of larvae and fry.
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Closed Recirculating Aquaculture
It supplements oxygen lost in water treatment processes of closed recirculating aquaculture systems.
System Benefits
- Avoids oxygen supply interruptions caused by traditional cylinder replacement.
- Reduces manual labor required for oxygen cylinder transportation and storage.
- Prevents water pollution caused by impurity leakage from oxygen cylinders.
- Adjusts oxygen output automatically to match aquaculture oxygen demand.
- Simplifies equipment maintenance and reduces long-term operation costs.
Why Choose Aquaculture PSA Oxygen Plant
Solves Key Oxygen Supply Pain Points in Aquaculture
Traditional oxygen supply relies on cylinders, which require frequent transportation and replacement, easily causing supply interruptions. This plant generates oxygen on-site, eliminating the need for cylinder transportation and storage. Its dual-tower structure ensures uninterrupted supply, solving the problem of oxygen shortage in high-density aquaculture and avoiding economic losses caused by aquatic organism hypoxia.
Traditional oxygen supply relies on cylinders, which require frequent transportation and replacement, easily causing supply interruptions. This plant generates oxygen on-site, eliminating the need for cylinder transportation and storage. Its dual-tower structure ensures uninterrupted supply, solving the problem of oxygen shortage in high-density aquaculture and avoiding economic losses caused by aquatic organism hypoxia.
Adapts to Complex Aquaculture Working Conditions
Aquaculture environments often have high humidity, salt mist or large temperature changes, which easily damage common oxygen equipment. This plant adopts anti-corrosion and moisture-proof designs, with anti-corrosion coatings on components and waterproof control units. It can operate stably in both freshwater and marine aquaculture environments, without frequent maintenance due to environmental factors.
Aquaculture environments often have high humidity, salt mist or large temperature changes, which easily damage common oxygen equipment. This plant adopts anti-corrosion and moisture-proof designs, with anti-corrosion coatings on components and waterproof control units. It can operate stably in both freshwater and marine aquaculture environments, without frequent maintenance due to environmental factors.
Simplifies Operation and Reduces Comprehensive Costs
The plant adopts intelligent automatic control, requiring no professional operators after simple training. Its detachable filter and modular structure facilitate daily maintenance and component replacement. Compared with cylinder supply, it eliminates transportation and storage costs, and its low energy consumption reduces long-term operation expenses, lowering the comprehensive cost of aquaculture oxygen supply.
The plant adopts intelligent automatic control, requiring no professional operators after simple training. Its detachable filter and modular structure facilitate daily maintenance and component replacement. Compared with cylinder supply, it eliminates transportation and storage costs, and its low energy consumption reduces long-term operation expenses, lowering the comprehensive cost of aquaculture oxygen supply.
FAQ
Will the plant affect the pH value of aquaculture water?
It only supplements oxygen without adding chemicals, so it will not change water pH.
Can the plant be installed outdoors in rainy areas?
It has a waterproof structure that can operate normally in outdoor rainy environments.
How long does it take to install the entire oxygen plant?
It adopts modular design, and the entire installation can be completed in a short time.
Can it be used in winter aquaculture with low temperatures?
It has low-temperature adaptation performance, suitable for winter aquaculture scenarios.
Do I need to shut down the plant during aquaculture water change?
It can run continuously during water change, without affecting oxygen supply.
How often to replace the filter of the plant?
Replace the filter regularly according to the actual use frequency and water quality.
Can it be connected to the existing water circulation system?
It can be seamlessly connected to the existing aquaculture water circulation system.
Will the plant produce noise that disturbs aquatic organisms?
Its compressor adopts low-noise design, which will not disturb aquatic organisms.
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