You don’t have to choose between high performance and sustainable water solutions with Prime RO FilmTec™ elements

NOTICE: With the launch of the Prime RO FilmTec™ element portfolio, some of our legacy  BWRO FilmTec™ element products have become obsolete. To find the best replacement option, please visit our Replacement Advisor or contact us.

Achieve reduced energy consumption by up to 20% while improving permeate quality by up to 60% with the Prime RO brackish water FilmTec™ reverse osmosis (RO) elements for industrial applications.

The Prime RO brackish water FilmTec™ elements boost performance to a prime level while reaching an unparalleled sustainability impact. Based on the historical FilmTec™ BW30 element industry-standard RO membrane with decades of proven performance, Prime RO FilmTec™ elements offer compatibility with existing systems. This next-generation brackish water reverse osmosis (RO) element offers enhanced water quality and reduced energy consumption while maintaining the well-known and reliable long-term performance associated with the FilmTec brand.

The Prime RO brackish water FilmTec™ element portfolio means you don’t have to compromise– high performance and sustainability go hand in hand.

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

Select next-generation water treatment technologies from the Prime RO FilmTec™ element portfolio for industrial applications. You don’t have to compromise – high performance and sustainability go hand in hand.

 
 
 

PROven

Based on the historical FilmTec™ BW30 element, with more than 40 years of manufacturing experience.

 

PROgressive

Continuous innovation to reach unparalleled combination of product specifications, durability and cleanability.

 

PROductive

Enables customers to benefit from up to 20% in energy consumption savings while improving permeate quality by up to 60%.

PROficient

Outstanding performance and durability compared to other available alternatives.

 

PROminent

Sustainability benefits: approximately 85,000 metric tons of CO2 emissions reduced per year.

 
 
 
 
 
 
 
 
 
 
 
 
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