Company news

Screw Press vs Filter Press: Choosing the Right Sludge Dewatering Equipment
Sludge dewatering is a critical step in modern wastewater treatment systems. After biological or chemical treatment, wastewater plants generate sludge with high moisture content. Without proper dewatering, sludge transportation, disposal, and management can become costly and inefficient.

How PAM Improves Flocculation and Settling Efficiency in Wastewater Treatment
In many industrial wastewater treatment processes, removing suspended solids efficiently is one of the biggest challenges. Wastewater from industries such as mining, mineral processing, and manufacturing often contains large amounts of fine particles that settle slowly due to their small size and stable suspension characteristics.

Construction Wastewater Treatment: Maximizing Water Reuse and Sludge Reduction
The construction and heavy civil engineering sectors generate significant volumes of wastewater characterized by high concentrations of suspended solids, heavy metals, and variable pH levels. Untreated discharge poses severe environmental compliance risks and results in the loss of valuable water resources.

Global Nations Unite to Accelerate the Green Transition
COPENHAGEN, Denmark — In a landmark move for global cooperation, world leaders, business executives, and environmental organizations gathered this week for the International Green Transition Summit, pledging new commitments to accelerate the shift toward a sustainable, low-carbon future.

How AI and Smart Monitoring Reduce Water Loss in Modern Water Networks
Discover how intelligent leakage management combines AI, smart leakage meters, pressure monitoring, and cloud analytics to reduce non-revenue water, detect hidden leaks earlier, and improve water utility efficiency.

How Filter Presses Help Reduce Mining Waste and Recover Process Water
Mining and mineral processing operations generate enormous volumes of slurry, tailings, and process water every day. Managing this waste stream responsibly has become one of the most pressing operational and environmental challenges facing the industry.

Car Wash Water Recycling: Advanced Solid-Liquid Separation and Dewatering
The car wash industry faces a dual challenge: meeting increasingly strict wastewater discharge regulations while managing rising water costs. Traditional once-through washing methods are no longer viable—both economically and environmentally. The solution lies in closed-loop water recycling, where wash water is continuously treated and returned to the production cycle.

AI Intelligent Microscopy System: Revolutionizing Wastewater Microorganism Detection and Process Optimization
As biological wastewater treatment processes become increasingly advanced, operators need faster and more reliable microscopic analysis to maintain stable performance. Traditional manual microscopy is slow, highly dependent on experienced specialists, and often fails to provide actionable process insights. The AI Intelligent Microscopy System addresses these challenges by combining AI-powered image recognition, intelligent analysis, and an integrated digital platform into one portable solution.

Reducing Battery Waste: Why Lithium-ion Recycling Matters for Clean Energy
Lithium-ion batteries have become an essential part of modern life. They power smartphones, laptops, electric vehicles (EVs), energy storage systems, and many other technologies that support the transition toward clean energy. As the demand for electric vehicles and renewable energy continues to grow, the number of used and discarded lithium-ion batteries is also increasing.

Sodium Battery Wastewater Treatment: Efficient Solid - Liquid Separation System
Sodium batteries are an emerging category of new-energy power sources. Their production process generates alkaline wastewater that requires efficient solid–liquid separation to meet discharge or reuse standards. This document outlines a complete sedimentation and filtration system designed for treating sodium battery manufacturing wastewater, with a treatment capacity of 10 m³/h.







