GreenMem®

Leading the Way in Organic Solvent Nanofiltration
at the industrial scale

Organic Solvent Nanofiltration (OSN) utilizes specially designed membranes to achieve precise filtration and separation within organic solvent mixtures. These membranes act as small barriers, allowing desired molecules to pass through while blocking larger impurities and unwanted components. Membranes can be applied across various industries including oil, pharmaceutical, petrochemical, semiconductor, and specialty chemicals.

Not all OSN membranes are constructed similarly. SepPure Technologies’ OSN membrane, GreenMem®, is a superior choice. Here’s why:

1.     Energy Efficiency: GreenMem® membranes are designed to be energy-saving pioneers. They deliver high filtration performance while requiring less power, not only leading to lower operational costs, but also reducing the industry’s carbon footprint.

2.     Chemical-Resistance: GreenMem® are the most advanced nanofiltration membranes in the market! They boast superior chemical resistance, ensuring they can withstand harsh chemical conditions. While the application of conventional membranes have been limited to water and wastewater sector for decades, GreenMem® is pioneering industrial-scale organic solvent nanofiltration across diverse industries.

3.     Extended Service Life: Thanks to their robust construction, GreenMem® membranes offers  a prolonged service life. This reliability translates into consistent filtration performance over extended periods, ultimately mitigating the need for frequent replacements and associated costs.

 
 
 

Designed for:

  • Solvent Recovery

  • Free Fatty Acid Removal

  • Wax & Lipid removal

  • Hydrocarbon Separations

  • Monomer Removal

  • Product Upgrading

  • API Concentration & Purification

  • Solvent Exchange

  • Homogeneous Catalyst Recovery

  • And much more!

 
 

Our hollow fibre configuration makes for high packing density membranes and large effective surface area

 
 

Our design allows for dense packing of hollow fibers, maximizing the effective surface area for filtration while minimizing footprint. This translates to processing larger volumes without bulky equipment, making it ideal for various applications across industries.