Zeolite Molecular Sieves

NaY Molecular Sieve

Y-type zeolite with high specific surface area and large pore volume, applied in VOC adsorption and catalyst support roles.

Overview

NaY offers a three-dimensional large-pore structure with very high BET surface area (≥700 m²/g), making it effective for VOC adsorption and as a catalyst / adsorbent support. It is available as powder and, where specified, formed products.

Technical Data

ParameterSpecification
SiO₂/Al₂O₃~100
Na₂O<0.05 wt%
Powder D503.5 μm
Relative crystallinity≥90%
BET surface area≥700 m²/g
Total pore volume0.5 ml/g
Average pore diameter3.0 nm

Values shown are manufacturer specifications or typical values unless marked (*). Parameters marked (*) are reproduced from source documentation and may contain unit or OCR ambiguities — they are reference values only and must be confirmed against the current product specification before use in engineering design. Design values are confirmed per project after operating conditions are reviewed. Please contact us for current data sheets.

Key Features

  • Very high specific surface area (≥700 m²/g)
  • Large pore volume (0.5 ml/g)
  • Good hydrothermal stability

Typical Applications

  • VOC adsorption
  • Catalyst and adsorbent support
  • Gas purification and separation

Application Limits & Conditions

Formed-product specifications for NaY are being confirmed by our R&D department; powder specifications above are as documented. Contact us for the current formed-product data sheet.

Data to Provide for a Quotation

To receive a material recommendation and quotation, please share your operating conditions:

  • Gas flow rate (Nm³/h) and inlet / target outlet concentration
  • Gas composition and main pollutant components
  • Operating temperature and humidity
  • SO₂ and dust concentration (where applicable)
  • Existing reactor dimensions and current catalyst / adsorbent type
  • Required service life and any special requirements

FAQ

Frequently Asked Questions

How does NaY compare with ZSM-5?

NaY has a larger pore system and higher surface area but is more hydrophilic and less acid-resistant than high-silica ZSM-5. Selection depends on humidity, VOC composition and regeneration conditions.

Discuss this product for your gas conditions

Send us your operating conditions — we will confirm applicability and return a material recommendation.