News
Project Background
As an important cattle and sheep breeding country in Southeast Asia, Malaysia has long been confronted with the problem that impurities in water sources (such as sediment, algae and suspended matter) affect the health of livestock. Recently, a certain company's cattle and sheep breeding base in Malaysia successfully introduced SS316 stainless steel basket filter to solve the problem of filtering sand, stones and impurities in the breeding water, significantly improving the drinking water quality for livestock and ensuring the sustainable development of the breeding industry.
Technical solution
The blue filter adopted this time has the following core advantages:
High-efficiency filtration: Double-layer filter screens with a precision of 150μm/300μm effectively intercept sand, stones and organic impurities, suitable for different water quality stages.
Industrial-grade durability: Made of SS316 stainless steel, it has strong corrosion resistance and is suitable for high-temperature (30-80℃) and high-pressure (16bar) environments.
High-flow design: Maximum flow rate of a single unit is 30m³/h, with ANSI standard DN50 flange interface, meeting the centralized water supply requirements of livestock farms.
Convenient maintenance: Equipped with a 1"BSPT sewage outlet and pressure gauge, it can quickly clean the filter residue and reduce operation and maintenance costs.
Safety seal: NBR/EPDM sealing ring, resistant to aging and environmentally friendly, meeting the water quality safety standards for animal husbandry.
Implementation effect
Since installation, the water quality of the breeding farm has improved significantly
The sediment removal rate has increased by 90%, and the rate of livestock diarrhea has decreased by 35%.
The filter has strong anti-clogging performance, and the backwashing cycle has been extended to once a week, reducing manual intervention.
The equipment has a long service life. The SS316 material is suitable for the hot and humid climate in Malaysia and there is no rust problem.
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