WELCOME TO OUR BLOG

We're sharing knowledge in the areas which fascinate us the most
click
June 27th, 2026

How to Design a Zero-Discharge Aquaculture System

Recirculating aquaculture system is an advanced land-based farming model that relies on full water recycling and treatment to avoid wastewater release. It integrates fish tanks, filtration, biofiltration, oxygenation, and disinfection systems to enable stable, sustainable high-density aquaculture. YUTANK delivers complete RAS-based recirculating system solutions for industrial fish farming projects.
June 26th, 2026

RAS vs Pond Farming: Which Is Better?

RAS vs Pond Farming compares two major aquaculture production models: modern land-based recirculating systems and traditional pond farming. The comparison focuses on water quality control, stocking density, biosecurity, cost efficiency, and scalability. YUTANK provides complete RAS system solutions designed for high-density and industrial aquaculture production.
June 25th, 2026

What Equipment Is Needed for High-Density Fish Farming?

High-density fish farming requires a fully integrated land-based aquaculture system combining tanks, filtration, oxygenation, disinfection, and monitoring equipment. This article explains the essential systems needed to maintain stable water quality, improve survival rates, and achieve efficient production in modern RAS-based aquaculture projects.
June 23rd, 2026

How to Choose Fish Tank Material for Aquaculture

Choosing the right fish tank material is essential for stable and efficient aquaculture production. Different materials such as HDPE, PP, FRP, and stainless steel directly affect water quality, fish health, and system durability. YUTANKE also provides advanced Honeycomb PP aquaculture tanks designed for high-density and modular RAS farming systems, offering stronger structure and better scalability for modern fish farming projects.
June 15th, 2026

RAS Hatchery System for Fish Fry: Key Features and Benefits

A RAS hatchery system provides a controlled environment for raising fish fry, ensuring stable water quality, optimal oxygen levels, and safe biofiltration. It integrates tanks, mechanical and biological filtration, oxygenation, and automated monitoring to improve survival rates, reduce disease risk, and support consistent high-density fry production.
June 13th, 2026

Land Based Tanks for Aquaculture: Design, Types and Applications

Land based tanks are an essential part of modern aquaculture systems, providing a controlled environment for fish and shrimp farming on land. They allow better water quality management, higher stocking density, and improved biosecurity compared with traditional pond farming.
June 12th, 2026

Oxygen System for Fish Farming: Design and Key Considerations

An oxygen system is essential for fish farming, ensuring stable dissolved oxygen levels for fish health, growth, and survival. It supports biofilter activity in RAS systems, improves water circulation, and reduces stress and disease risk.
June 10th, 2026

How Much Water Can RAS Save?

RAS can greatly reduce water consumption by filtering, treating, and reusing most of the water inside the aquaculture system. Compared with traditional pond farming or flow-through systems, RAS helps lower daily water demand, reduce wastewater discharge, and improve water quality control.
June 6th, 2026

Tilapia RAS Farming: Tank, Filter, Oxygen and Control

Tilapia RAS farming depends on four key parts: tank design, filtration, oxygen supply, and automatic control. These systems work together to keep water quality stable, remove waste, maintain dissolved oxygen, and support healthy fish growth.
June 3rd, 2026

RAS System for Shrimp Farming: Key Design Points

A RAS system for shrimp farming is designed to provide stable water quality, stronger biosecurity, and better control over the farming environment. By using tanks, mechanical filtration, biofiltration, oxygenation, disinfection, and monitoring systems, shrimp farmers can reduce water exchange and improve production stability.