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10" Standard | KX 0.5 Micron Carbon Block Filter with Lead & Cyst Reduction

SKU 06-250-10-MATRIKX
Availability:
In Stock for Immediate Shipment
Original price $15.95 - Original price $15.95
Original price
$15.95
$15.95 - $15.95
Current price $15.95

kx technologies
KX MATRIKX Pb1 Lead, VOC, Cyst, Chlorine, Chloramine, Taste and Odor Reduction

10 Inch Standard Size | 06-250-10-MATRIKX | 0.5 Micron | Replaces 06-250-125-975 & 06-250-10-GREEN


The KX MATRIKX Pb1 is a powerful, multifunctional filter cartridge for residential and commercial water treatment, providing exceptional lead and cyst reduction (including Cryptosporidium, Giardia, Entamoeba and Toxoplasma). KX MATRIKX Pb1 activated carbon block filters reduce soluble lead using an ion-exchange ­filter medium with high specifi­city for soluble lead. Particulate ­filtration is used to intercept insoluble lead-containing particles. Manufactured with KX’s proprietary extrusion process, MATRIKX Pb1 fi­lters offer high levels of chemical reduction in potable drinking water, including chlorine taste and odor.

KX MATRIKX 06-250-10-MATRIKX is the factory recommended direct replacement for 06-250-125-975 and 06-250-10-GREEN, which have been discontinued by the manfuacturer and are no longer available.


Matrikx® Pb1® Carbon Block Filters now Feature Chloramine Reduction.

  • Lead reduction
  • Chlorine and Chloramine reduction
  • VOC reduction
  • Cyst reduction
  • 0.5 micron nominal filtration reduces sand, rust and sediment
  • High dirt holding capacity
  • High Adsorptive Capacity and Efficiency
  • 100% Coconut Shell Activated Carbon
  • NSF and WQA certified for Material Safety
  • Performance validated by independent laboratories
  • Manufactured in an ISO 9001 & 14001 certified facility
  • Certified for Sustainability by WQA - S-803
  • California Prop. 65 Compliant

Specifications for 10" Matrikx Pb1

KX Part #: 06-250-10-MATRIKX
Replaces Part #:
KX 06-250-125-975
KX 06-250-10-GREEN
GreenBlock FX10PB1
Filter Size:
(Nominal)
10" Standard (2½" x 10")
Filter Dimensions: 2.75" OD x 9.75"L
For Contaminants:
Lead, Cyst, VOC, Chlorine, Chloramine, Taste, Odor, Sediment, Dirt, Rust
Nominal Filtration: 0.5 Micron
Chlorine Reduction Capacity: >30,000 gallons @ 1 gpm
(>114,000 liters @ 3.8 lpm)
Chloramine Reduction: >2,000 gallons @ 0.5 gpm
(>7,600 liters @ 1.9 lpm)
VOC Reduction Capacity: >500 gallons @ 0.5 gpm
(>1890 liters @ 1.9 lpm)
Lead Reduction Capacity: >3,750 gallons @ 0.75 gpm
(>14,000 liters @ 2.8 lpm)
Initial ΔP @ Flow: 12psid @ 1gpm
Manufacturer: KX Technologies
Brand: MATRIKX Pb1
10" Standard Housings:
AMI Filter Housings
Ametek/Pentek Housings

KX Filters are NSF WQA California 65 Compliant

Product Specifications KX MATRIKX Carbon Filters


Benefits of KX MATRIKX Extruded Carbon Filters

  • Chlorine Taste and Odor Reduction as well as Dirt and Sediment Removal: for better tasting drinking water, and protection of downstream equipment.
  • No release of carbon fines: Extruded carbon filters do not release activated carbon particles ("gray water") during startup or operation. Extensive flushing or "activation" of extruded filter elements is not required.
  • No channeling, fluidizing, or bypassing: Extruded carbon is a rigid structure that prevents movement of the adsorbent particles or the formation of channels and defects in the adsorbent structure.
  • Low pressure drop: Water flows through an extruded filter element in the "radial" direction (from the outside of the filter element to the inside). This results in nearly fifteen times more prefiltration surface area and a much lower flow "density".
  • Low binder content and high dirt capacity: Only a small amount of thermoplastic binder is used in the extrusion process, about one-half of what is used in a molded carbon block.

About KX MATRIKX Sustainability

KX Filters with GreenBlock Sustainable

Matrikx® filters are made from 100% coconut shell carbon, a renewable, and ecologically sustainable material. The carbon is processed into blocks using a unique binder system and proprietary manufacturing techniques to produce filters with a greater number of micro-pores and available carbon surface area, which display superior adsorption capacity and kinetic dynamics.