Ceramic Cutting Wastewater Treatment System - Huzhou, China
Project Overview
Application: Industrial ceramic cutting wastewater treatment and reclamation
Location: Huzhou, China
Technology: Submerged ceramic membrane filtration system
Treatment process
Process Configuration: Chemical-free ceramic membrane filtration
Membrane Technology: Submerged ceramic membrane modules
Treatment Approach: Physical separation without chemical additives
System Integration: Existing storage tanks + integrated filtration equipment
Project Scope & Services
Engineering Package:
Process design and engineering
Equipment supply and procurement
Installation and commissioning
System startup and operator training
Process Solution
The treatment system utilizes the client's existing storage tank infrastructure integrated with a state-of-the-art ceramic membrane filtration unit. The process operates without chemical additives, relying entirely on physical separation through advanced ceramic membrane technology to achieve exceptional clarification of high-turbidity ceramic cutting wastewater. Integration of existing enterprise storage tanks with integrated filtration equipment, requiring no chemical additives.
Design Performance Standards
Effluent Quality: ≤0.5 NTU turbidity
Water Reuse Compliance: Meets industrial process water reclamation standards
Project Benefits & Outcomes
Space Optimization: Compact modular design minimizes additional footprint requirements by leveraging existing infrastructure
Economic Performance:
Low capital expenditure (CAPEX) through existing tank utilization
Minimal operating expenditure (OPEX) with chemical-free operation
Cost-effective water reclamation solution
Operational Excellence:
Exceptional turbidity reduction (>99.9% removal efficiency)
Reliable performance for ceramic cutting wastewater recycle and reuse
Sustainable operation without chemical dependency
Environmental Impact: Enables closed-loop water management in ceramic manufacturing operations, significantly reducing freshwater consumption and wastewater discharge.