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PSA Oxygen Plant for Aquaculture: Smart Oxygen for Healthy Fish

Sep 24 , 2025

Table of Contents

1. Introduction

2. Why Aquaculture Needs Pure Oxygen

3. Understanding the [PSA Oxygen Plant] 

4. Product Description & Working Principle

5. Smart & Innovative Features

6. Technical Specifications

7. Key Advantages

8. Environmental and Economic Impact

9. Case Study: Smart Fish Farm

10. Applications

11. FAQs

 

1. Introduction

The need for consistently high and high-purity oxygen for fish and shrimp farms worldwide is increasing every year in the developed aquaculture sector. The integrated or closed systems of modern fish hatcheries and farms demand constant dissolved-oxygen levels, and a locally installed [PSA oxygen plant] can provide oxygen on demand 24/7 at a much lower cost and carbon footprint.

 

2. Why Aquaculture Needs Pure Oxygen

Ensures dissolved oxygen (DO) levels never drop below the critical 5 mg/L threshold.

Allows higher stocking densities and faster growth rates for farmed fish.

Helps control disease outbreaks and enhance water quality.

 

3. Understanding the PSA Oxygen Plant

The PSA oxygen generator is a highly automated, compact device based on PSA (Pressure Swing Adsorption) technology for nitrogen removal from the air to produce [9095% pure oxygen], which is easily used in [aquaculture oxygenation].

 

4. Product Description & Working Principle

A twin tower arrangement of molecular sieves filled with zeolite which selectively adsorbs nitrogen from the air.

The automated valve logic then cycles the PSA module pressure between high and low pressure to desorb oxygen.

No chemicals or heat are involved. The system needs only electricity and intake air to operate.

 

5. Smart & Innovative Features

IoT Monitoring for D.O. Levels: Farmers can track the dissolved-oxygen (D.O.) levels through a mobile app and get automated alerts.

AI Flow Control: Dynamic output of oxygen produced according to the biomass of the aquaculture species and real-time DO data.

Hybrid Energy Option: The PSA system can be integrated with solar panels or windmills for standalone, off-grid power.

 

6. Technical Specifications

Purity: 9095%

Flow Rate: 5500 Nm³/h

Pressure: 0.10.5 MPa

Power Consumption: 350 kW

 

7. Key Advantages

Reduce oxygen supply cost by up to 40% over liquid oxygen tank trucks.

Feed conversion ratio (FCR) improvement and better fish weight gain.

Simple, continuous operation, 24/7, with minimal scheduled maintenance.

 

8. Environmental and Economic Impact

Zero chemical emissions and a very small carbon footprint.

Suitable for [recirculating aquaculture systems (RAS)].

Eliminates the need for transportation and oxygen cylinders.

 

9. Case Study: Smart Fish Farm

A shrimp farm in Peru installed a 150 Nm³/h industrial size [PSA oxygen generator], which has improved survival rates by 20% with simultaneous reduction in power cost using solar-assisted hybrid energy.

 

10. Applications

Fish hatcheries and nurseries

Prawn and shrimp farms

Intensive salmon or tilapia farms

[RAS aquaculture] farms

Supplementary oxygen in emergencies during algal blooms

 

11. FAQs

Q1: How often do the molecular sieves need to be replaced?

A: Replacement is normally needed every 46 years. It depends on the ambient air quality.

 

Q2: Can it run continuously?

A: Yes, PSA systems are designed for 24/7 operation in [aquaculture applications].

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