Black Berkey Purification Elements Features: Most powerful gravity filter element on market Tested with 10,000 times the concentration of pathogens. Fits most gravity filters Provides years of efficient water purification. Lasts up to 3,000 gallons (6,000 gallons per set of two). Filters 3.5 Gallons per Hour Re-cleanable and self-sterilizing. Comes with two Black Berkey purification elements More About the Black Berkey Purification Elements. Set of 2 replacement filters. Will fit the following Berkey systems: Travel Berkey, Big Berkey, Royal Berkey, Imperial Berkey, Crown Berkey, Berkey Light. Black Berkey Purification Elements are more powerful than any other gravity filter element currently available. In fact, we tested the Black Berkey purification elements with more than 10,000 times the concentration of pathogens per liter than is required by standard test protocol. This concentration of pathogens is so great that the post filtered water should be expected to contain 100,000 or more pathogens per liter (99.99% reduction – the requirement for pathogenic removal). Incredibly the purification elements removed 100%. Absolutely no pathogens were cultured from the effluent or were able to be detected, even under an electron microscope, setting a new standard in water purification. Black Berkey purification elements are so powerful, they can remove red food coloring from water without removing the beneficial minerals your body needs. Virtually no other filtration element can duplicate this performance.
- Viruses (99.999%)
- Pathogenic bacteria (99.9999%)
- Chloramine (below lab detectable limit)
- Trihalomethanes (99.8%)
- Pharmaceuticals (99.9%)
- Most heavy metals
- 2.25 ” x 2.25 ” x 9.75 “
- Black Berkey Filters are made of a carbon composite containing high-grade coconut shell carbon combined with a proprietary blend of 5 other types of media.
- The Black Berkey Filter formulation has been tested by State and EPA accredited laboratories to exceed NSF/ANSI Standard 531
- 3,000 gallons per filter. (6,000 gallons per set of 2)
