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Catalytic oxidation equipment
- Micro-lectrolysis Catalytic Oxidation Reactor
- Ozone Catalytic Oxidation Reactor
- Ozone High-efficiency Micro-nano Gas Dissolver
- Ozone Tail Gas Destroyer
- Titanium-iridium-ruthenium Electrode Plate Series Electrocatalytic Oxidation Equipment
- Precious Metal Alloy Series Electrocatalytic Oxidation Equipment
- BDD Diamond Series Electrocatalytic Oxidation Equipment
- Multiphase Catalytic Fenton Reactor
- Photocatalytic Oxidation Reactor
- Microchannel Multi-component Catalytic Oxidation Reactor
- Disinfection and sterilization equipment
- Brine desalination and concentration
- Intelligent control system
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Related supporting equipment
- Micro-Nano Bubble Air Flotation Machine
- High-efficiency Anaerobic Reactor
- High-density Sedimentation Tank
- Soid-liquid Separator
- Fluoride Removal Integrated System
- MBR Membrane Bioreactor
- Integrated Treatment Equipment for Domestic Sewage
- High-efficiency Evaporator
- AO Biological Reaction Device
- Low-temperature Desalination Unit
- Liquid Membrane Extraction Equipment
- Grille Machine
0102030405
Grille Machine
The types of grille machines include
1: Rake Type Rotary Grille Machine: Uses rotating rake bars to collect and remove debris from the water.
2: Rotary Drum Grille Machine: Features a rotating drum with a perforated surface to filter debris from water.
3: Flat Panel Grille Machine: Employs flat panels to capture and remove solid particles from flowing water.
4: Step Type Grille Machine: Utilizes stepped bars to separate debris from the water flow.
5: nflow Type Grille Machine: Designed to handle water that flows into the grille, effectively trapping and removing solids.
6: Chain Belt Type Rotary Grille Machine: Incorporates a chain belt mechanism for continuous removal of debris.
7: Reverse Rake Rainwater Grille: Specifically designed for rainwater applications, featuring a reverse rake system to manage and remove debris.
Grille machines are used in various industries, including

Municipal Water Supply: For screening and removing debris from the incoming water supply.
Power Plants: At the intake of cooling water to prevent clogging and damage to equipment.
Textiles: In wastewater treatment to remove solids from dyeing and processing wastewater.
Food Processing: For pre-screening in wastewater treatment, removing contaminants from food production waste.
Paper Manufacturing: To handle and screen paper mill effluents and prevent clogging in treatment systems.
Leather Processing: In wastewater treatment to manage and remove solids from leather production effluents.

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