Products
The zeolite rotor production line precisely controls core processes such as coating, impregnation, and calcination. By implementing a digital manufacturing information system (MES), it enables automated control of key processes—including calcination, slitting, and polishing—as well as end-to-end data traceability. Our proprietary molecular sieve formulation and high-temperature calcination technology for green bodies ensure the rotors maintain structural stability and resist powder shedding during long-term operation. The unique pore channel design enables our products to achieve a specific surface area comparable to that of high-end imported rotors under the same loading conditions. Currently, we offer a full range of products with diameters ranging from 800 mm to 4,800 mm, as well as custom green bodies, and have successfully launched specialized rotors designed for complex components such as styrene and methanol.
Wire mesh demisters are used to separate liquid droplets entrained in gas streams to ensure mass transfer efficiency, reduce the loss of valuable materials, prevent clogging of outlet pipelines, avoid compromising subsequent processes, and improve the operation of downstream compressors. Rising droplets collide with the wire mesh due to inertia and are intercepted by it; they then fall under their own weight, diffuse across the surface of the fine wires, and finally coalesce into larger droplets at the mesh junctions before falling back into the equipment. After passing through the wire mesh demister, the gas is essentially free of mist.
Circular lifting cylinder with small holes
High precision, high efficiency and low resistance filter materials are used. Wide fold design, to meet the requirements of large air volume, efficient filtration, easy to clean ash. Top opening, bottom hole, screw lifting or horizontal installation, elastic hollow rubber sealing ring, good sealing. The metal parts are fingerprint resistant and galvanized, and stainless steel is also available.
Manufactured by welding or stitching high-purity fiber materials, the loose weave of the fiber fabric significantly increases its contaminant holding capacity. This fiber material employs a dual-stage filtration mechanism, effectively trapping solid and soft particles. Particulate impurities in the liquid are retained on the fabric surface, while microscopic impurities are captured deep within the material, ensuring that the filter bag will not rupture due to increased pressure during use. Consequently, it offers high filtration efficiency. The surface of the filter bag fabric undergoes high-temperature heat treatment, utilizing instant sintering technology or calendering, which effectively prevents fiber shedding caused by high-speed liquid impact on the fabric surface during filtration.
Flat Bag and Its Elastic Frame
The Flat Bag and Its Elastic Frame are made of high-quality polyester-coated material to ensure the dust collector’s performance. The filter bags are manufactured using hot-melt technology, achieving near-zero leakage. The flat-bag design significantly reduces the equipment’s installation footprint and ensures a compact structure. Technical requirements for the cage specify that the bag cage must be constructed of a spring-frame structure; the spring-type support rings must be evenly distributed and possess sufficient strength and stiffness to prevent damage and deformation; the surface of the spring-type bag cage must be smooth and free of burrs, and it must undergo anti-corrosion treatment to meet requirements for corrosion resistance and high-temperature resistance.
The ultra-high filtration efficiency of Sintered Plates is achieved by sintered polyethylene matrix coated with PTFE membrane,which reflects the advantages of rigid matrix combined with membrane filtration;This is different from the filtration efficiency of bag filters,which is based on the secondary filtration of adhered dust.From the measured data,it can be seen in most cases,the residual concentration of dust collector exhaust can be maintained lower than 1mg/m3.