Group news Industry information
2026-07-11
A new generation of fouling-resistant reverse osmosis (RO) membranes has been officially launched in the water treatment industry, targeting the long-standing operational difficulties under complex water quality working conditions. In practical industrial and municipal water treatment scenarios, raw water often contains complex components including organic pollutants, suspended solids, microbial colonies and mixed inorganic salts. These impurities easily adhere to the surface of traditional RO membranes, causing membrane fouling, flux attenuation and performance degradation. The launch of upgraded fouling-resistant membranes effectively solves the adaptability defects of traditional products, bringing more stable operational solutions for diversified and high-difficulty water treatment projects.
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2026-07-11
High-performance reverse osmosis membranes have gradually become a foundational technology for upgrading water treatment infrastructure, notably raising the operational efficiency of two critical scenarios: seawater desalination and industrial pure water production. As freshwater scarcity becomes a global structural issue, traditional water treatment methods struggle to balance stable output, energy consumption and water quality standards. The continuous progress in membrane material science and precision manufacturing has driven comprehensive performance upgrades for RO membranes, addressing long-standing bottlenecks in large-scale desalination and high-purity water preparation.
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2026-07-11
The continuous advancement of membrane material science and manufacturing technology has become a pivotal driving force for the iterative upgrade of reverse osmosis (RO) membranes, facilitating the widespread promotion of water resource circulation systems across diverse industrial sectors. Against the backdrop of tightening global water resource constraints and escalating environmental governance requirements, various industries are abandoning the traditional linear water use model that relies on continuous freshwater intake and direct wastewater discharge. Instead, efficient water recycling and reuse has become a core direction of industrial green upgrading, and optimized RO membrane technology stands at the center of this industrial transformation.
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2026-07-09
The continuous evolution of membrane manufacturing and material science has become a core driving force for the upgrading of reverse osmosis (RO) membrane applications, greatly boosting the development of industrial water resource recycling systems. As global industrial water scarcity and wastewater discharge pressure continue to intensify, traditional water treatment methods can no longer balance production demands and resource conservation.
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2026-07-09
In recent years, domestic reverse osmosis (RO) membrane technologies have witnessed steady and pragmatic development, gradually expanding their application boundaries and gaining solid traction in two core water treatment fields: seawater desalination and wastewater resource recovery. This industry shift marks a critical upgrade of China’s water treatment material sector, moving from basic civilian water purification scenarios to high-standard, industrial-level water resource recycling fields, reflecting the continuous improvement of independent research and development and industrial supporting capabilities of domestic membrane products.
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2026-06-10
TheouterprotectivemeshandinnersupportframearekeystructuralcomponentsofHYDACfilterelements.Theyworkin
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2026-06-10
Abetavalueof200meansthefilterelementmaintainsastableparticleremovalefficiencyof99.5%forparticlesofth
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2026-06-10
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2026-06-09
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2026-06-09
1.RatedWorkingPressure(Staticpipelinepressure,pressureresistanceoffilterstructure)Disposableglassfib
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