Strategic partner

Global series












Exhibitor List

Company RIGHTLEDER (SHANGHAI) TECHNOLOGY CO., LTD.
Country China
Products Membrane processes
Plants
Recycling technology and equipment for renewable resources,treatment and utilization of waste
Hall E3
Booth A38
Website www.rightlleder.cn
Introduction Rightleder Environmental is a nationally recognized high-tech enterprise. Our business involves the fields of water purification treatment, reclaimed water reuse, zero discharge and comprehensive utilization of waste water resources and material concentration, separation and purification. We customize the whole process solution for global users, which integrates the application research and development of membrane material and membrane separation technology, process design, system integration, project construction, operation and maintenance.

Products

NETERFO THRESHOLD SEPARATION SYSTEM
Neterfo ultimate separation system is a special membrane technology for advanced treatment, reuse and reduction of high-salt wastewater such as reverse osmosis concentrated water, cleaning wastewater, and circulating sewage.The system is equipped with PON pollution-resistant technology, POM wide flow channel viaduct bypass technology and many other patented technologies of Rightleder, achieving ultra-high recovery rate and extremely low energy consumption.
RYPERM CURVED MICRO-CONDUCTIVITY SYSTEM
The RYPERM ® curve micro-conductivity system is an upgrade to conventional reverse osmosis systems, and an upgrade to existing reverse osmosis systems. It mainly serves water using for industrial production, aquaculture and irrigation, boiler water supply, as well as areas with scarce water resources or areas with high water charges. Compared with conventional equipment, the water utilization rate is increased by 10-20%, the energy consumption is reduced by 10-20%, and the total amount of water used by enterprises is greatly reduced to achieve sustainable development.
HUNCOTTE MULTI-FREQUENCY TRANSNATURE ABSORPOTION SYSTEM
The Huncotte ®multi-frequency modified adsorption system uses multi-frequency ion regeneration exchangers combined with COD specific adsorption resins to achieve efficient water treatment. Multi-frequency pulse regeneration mode and honeycomb uniform water distribution device are adopted to meet the needs of more stable discharge, more thorough regeneration, less acid-base consumption and lower energy consumption, so as to reduce the investment cost and operation cost of the system.
The different functional groups in the modified adsorption resin has an adsorption function for specific ions in materials,, and the reverse flow velocity of fixed phase and mobile phase are controlled by patented technology. The treatment efficiency and discharge quality reach a higher level by optimizing feed composition, adsorption ratio, replacement ratio, desorption ratio, temperature, pressure and other factors.
DELYXON CONSTANT CURRENT ION SYSTEM
Delyxon® constant current ionization system is a combination of electrochemical process and dialysis diffusion process. Driven by an external DC electric field, it utilizes the selective permeability of the ion exchange membrane (that is, cations can pass through the cation exchange membrane, and anions can pass through the anion. ), the anions and cations move to the anode and cathode respectively.
WASTOUT MICROWAVE HIPRO PRECIPITATION SYSTEM
Wastout® microwave high-efficiency sedimentation system is our third-generation upgraded product. This product is widely used in any working conditions for the removal of suspended solids and calcium and magnesium hardness. It is an updated product for high-efficiency sedimentation.
WANSCRE DESALINATION AND PURIFICATION SYSTEM
In the Wanscre ®salt separation and purification system, the special nano-scale membrane has a special charge capacity, and there are electrical repulsion and attraction functions for different valence ions, and the degree of looseness of the membrane surface determines its pore. The separation mechanism of macromolecules is similar to that of sieving. The separation behavior of inorganic salts is controlled by the chemical charge intensity, and finally the separation and purification of monovalent salts is achieved.

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