The primary purpose of the Nano Bubble Air Diffuser Aerator is to provide efficient aeration and oxygen supply for aquariums, ponds, fish farming, and water treatment processes.
The Manvac Oxygen Equipment is made from high-quality, durable rubber, ensuring a long service life and reliable performance even in demanding conditions.
The aerator provides an air flow capacity of 0.1 to 0.4 m³/h.m, which ensures sufficient oxygen supply for various applications.
The micropore technology features pores that range from 0.012 to 0.03 mm, allowing for fine and even distribution of oxygen across the system, which enhances the oxygen transfer efficiency.
The bubble diameter can be adjusted to range from 0.08 to 3 mm, providing flexibility in aeration performance based on specific needs.
The equipment can effectively service areas between 0.8 to 5 m²/m, making it versatile for different-sized environments, including various aquaculture settings.
Yes, the Manvac Oxygen Equipment is designed to be energy-efficient, using minimal energy to deliver optimal aeration and helping to reduce operational costs.
It can be used for oxygenation and aeration in sewage treatment processes, improving water quality in rivers and lakes, and aeration in aquaculture.
The total weight of the equipment is 22 kg, making it compact yet powerful for its performance.
By providing efficient oxygen transfer through fine bubbles, the aerator enhances dissolved oxygen levels in the water, promoting healthier conditions for aquatic life and improving overall aquaculture productivity.
The equipment requires an efficient clean air blower to operate effectively, ensuring optimal performance in aeration.
The construction materials and design of the aerator, specifically the micropore rubber, contribute to its anti-blocking and anti-corrosive properties, ensuring longevity and reliability.
Yes, the aerator is suitable for use in both freshwater and seawater environments, with adjustable bubble sizes to accommodate different water viscosities.
Smaller bubbles have a larger surface area and remain in the water for longer periods, allowing for more efficient oxygen transfer and improved mobility of water.
The outer diameter of the micropore aeration tube is 16 ± 1 mm.
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