Products
Gnusys™ offers a leading solution efficiently for preventing droplets and chemicals from reaching the outside air.
Our engineers develop Gnusys™ media in a unique pyramid shape with 3D interlocking thermoplastic monofilament fiber, maximize the probability of mist collection or gas liquid interface for mass transfer to occur. And it's wide-open structured, enabling a long time filtering without blockness worry while staying easy to wash, durable to use. It also a recyclable material that can be reused and revalued.

Based on the unique structure and characteristics of Gnusys™ media, we have developed a series of products, including but not limited to Gnusys™ Mist Eliminator, Coalescers, Scrubber and Tower Packing, Drift Eliminators.
The Gnusys™ Mist Eliminator has a unique three-dimensional pyramid-shape structure made up of interlocking thermoplastic monofilament wires. This structure maximizes the chance of contact with droplets entrained in the air stream by orienting the fibers so that almost all of them are perpendicular to the direction of the air stream. The stepped arrangement not only changes the steam flow path, but also achieves efficient droplet removal by impingement, interception and centrifugation.
Scrubbers and Tower Packing play crucial roles in industrial gas treatment, widely used in petrochemicals, power generation, environmental protection and other industries. Through intimate contact with the gas stream, the liquid absorbent effectively absorbs or reacts with harmful components, thereby removing pollutants such as particulate matter, acid gases, and organic compounds.This process significantly enhances the efficiency and environmental performance of industrial production.
Tower Packing is an essential component in a packed tower scrubber, which is mainly used to increase the gas-liquid contact area, thereby improving the efficiency of mass and heat transfer.
Gnusys™ Scrubber and Tower Packing is a structured, 3D interlocking thermoplastic monofilament fiber. Its unique structure and shape facilitate thorough contact and mixing between gas and liquid phases, promoting efficient substance transfer. Compare with the traditional random or dumped packing, characterized by high mass transfer efficiency and low pressure drop, making it particularly suitable for applications that demand superior mass transfer performance.
Gnusys™ Gas-liquid Coalescer, with its unique filament structure, maximizes the contact area for contaminant collection. They capture finely dispersed droplets that are often too small for gravitational settling, conjoin them into larger droplets, and then can be filtered and separated. As a result, it can effectively improve production efficiency and reduce energy consumption costs. This coalescing process allows our products to be widely used in the oil-water separation industry, such as for the removal of very fine aerosols in oil-water installations.
In the cooling tower, the interaction between water and air produces water droplets known as "drift." Unlike the pure water vapor or solid water droplets formed by condensation in the air stream discharged from the cooling tower, drift may carry the chemical substances, microorganisms, suspended solids and other pollutants in the cooling tower.This can result in corrosion or damage to the cooling tower components, a reduction in cooling efficiency, increased maintenance costs, environmental pollution and so on.
Gnusys™ Drift Eliminator is designed to capture large water droplets caught in the cooling tower air stream. The eliminators prevent the water droplets and mist from escaping the cooling tower.
Gnusys™ Drift Eliminator, we use the coarsest diameter of monofilaments, combined with a unique structural design that causes airflow to abruptly change direction, this generates centrifugal force that separates water droplets from the airstream, causing them to deposit on the eliminator's surface and ultimately return to the cooling tower. It can effectively reduce water loss, improve the efficiency of resource use, and reduce the impact on the environment.