Reverse osmosis & water treatment systems

Micro High-throughput Ring

Micro High-throughput Ring

The micro high-throughput ring is synthesized from special information memory materials.

  • Catagory :Scale Inhibition and Removal Equipment
  • Tags :Biological ,Automation,Sewage,Integration
  • Availability :Biological ,Automation,Sewage,Integration
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Micro High-throughput Ring

The micro high-throughput ring is synthesized from special information memory materials. It utilizes dedicated equipment to measure and store the molecular vibration waveforms of substances in water. Based on these waveforms, multiple ultra-fine oscillations are developed and stored at the subatomic level within the micro high-throughput ring using specialized techniques. At the moment when the micro high-throughput ring is installed on the pipeline, ultra-precision vibration waves are continuously and constantly released, transmitting through the pipe wall into the water.

The release of such ultra-fine oscillations does not require any external energy input and relies solely on the thermal energy of the surrounding environment. By utilizing water as the medium for transmitting and storing vibration waves, ultra-fine oscillations propagate rapidly along the direction of water flow, reaching every corner of the water in the pipe network. Under the action of ultra-fine oscillations, the activity of water is greatly enhanced. Large water molecule clusters are decomposed into smaller individual water molecules, improving the water's solubility, permeability, and ability to encapsulate scale. This process breaks down and disintegrates existing scale and rust and disrupts the normal living conditions of bacteria and algae, thereby effectively protecting pipelines and equipment from various types of corrosion.

Simultaneously, ultra-fine oscillations act on relevant substances such as calcium and iron in water, as well as various metal salts, altering their physical characteristics. For example, the solubility of calcium carbonate increases, and crystallization rarely occurs even when the water temperature rises; existing scale will gradually dissolve; new pipelines will not develop scale deposits; new rust will no longer form, and existing rust layers will be dissolved until they disappear. Ultimately, a protective oxide layer will form on the inner walls of the pipelines, enabling self-cleaning and significantly extending the service life of the equipment.


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