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Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent
Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent

Koch TARGAII10072-35-PEC Ultrafiltration membrane of hollow fibers Equivalent

Mann+Hummel PHF-80-V Hydranautics HYDRAcap®MAX80 Inge dizzer®XL0.9MB80W Asahi Kasei Microza UNA-620AB LITREE LH3-0680-V

Introduction

Ultrafiltration membrane technology has the advantages of good filtering effect, simple operation and low cost. It is used in urban sewage recycling and utilization processes in environmental engineering, seawater desalination processes, papermaking sewage treatment and residents' drinking water purification processes. It can effectively remove organic matter, microorganisms and other harmful substances in sewage, improve sewage purification capacity, achieve sewage treatment effects, effectively alleviate the current water resource shortage situation, and realize the recycling of water resources.


Core Technological Differentiators

1. Intelligent Filtration Matrix

Our patented Dynamic Adaptive Membrane (DAM) technology features:

Phase-changing polymer blends that adjust pore geometry based on feed water conditions

Electroactive surface layers that repel foulants through controlled charge modulation

Nanocomposite reinforcement providing 3x the tensile strength of conventional membranes

2. Self-Sustaining Operation

The integrated Autonomous Maintenance System (AMS) enables:

Continuous surface regeneration through micro-vibration technology

Real-time foulant detection and response

Energy-neutral backwash cycles using hydraulic potential energy

3. Unmatched Material Science

Advanced formulations include:

Ceramic-polymer hybrids for extreme chemical resistance

Biomimetic coatings mimicking lotus leaf hydrophobicity

Carbon nanotube networks enhancing structural integrity

Ultrafiltration membrane of hollow fibers Koch TARGAII10072-35-PEC (3)


Industry-Transforming Applications

1. Critical Process Water Applications

Microelectronics: Producing particle-free water with <5 ppt total organics

Biopharma: Absolute removal of pyrogens and nucleases

High-Purity Manufacturing: Meeting ISO Class 1 water standards

2. Next-Gen Wastewater Reclamation

Municipal: 99.9999% pathogen removal for direct potable reuse

Industrial: Selective recovery of precious metals from effluent streams

Agricultural: Nutrient concentration and recycling systems

3. Emerging Contaminant Defense

Specialized solutions for:

PFAS and microplastic removal

Pharmaceutical residue elimination

Nanomaterial filtration

Ultrafiltration membrane of hollow fibers Koch TARGAII10072-35-PEC (1)


Integrated Smart Filtration Systems

Our complete iFiltration Platform combines:

1. AI-powered performance optimization

2. Wireless condition monitoring

3. Predictive maintenance algorithms

4. Cloud-based data analytics


Sustainable Manufacturing Leadership

1. 100% renewable energy-powered production

2. Zero-waste membrane casting process

3. Closed-loop water recycling system

4. Cradle-to-cradle product lifecycle


Why Global Leaders Trust Our Solutions

1. Application-Proven Reliability

250+ successful installations across 6 continents

Certified for use in FDA-regulated environments

Marine-grade options for offshore applications

2. Total Cost of Ownership Advantages

40% lower energy requirements

60% reduced cleaning costs

3x longer lifespan than industry average

3. Future-Ready Technology Pipeline

Photocatalytic self-cleaning membranes (2025)

Quantum dot-enhanced filtration (2026)

Bioelectric contaminant degradation (2027)

ultrafiltration membranes (6)


Conclusion: The New Standard in Membrane Technology

We stand at the forefront of a filtration revolution, delivering solutions that transcend traditional performance boundaries. Our technology doesn't just meet current water treatment challenges - it anticipates future requirements with scalable, adaptable membrane systems. By fundamentally reimagining membrane architecture and functionality, we provide industrial and municipal partners with a decisive competitive advantage in water management.

Engineers and plant managers worldwide are adopting our systems to:

✔ Achieve regulatory compliance with margin to spare

✔ Future-proof their water infrastructure

✔ Realize unprecedented operational efficiencies

✔ Meet sustainability targets with measurable impact

Contact our innovation team today to schedule a technology demonstration and discover how our next-generation UF solutions can transform your water treatment processes.


Q&A

Q: What are "virus-retentive" UF membranes?

A: Membranes with ≤20 nm pores (NFR/Nano Filtration Range) to remove small viruses (e.g., parvovirus) in biopharma/water treatment.


Q: How does UF enhance MBR (Membrane Bioreactor) efficiency?

A: Replaces clarifiers, allowing higher sludge concentrations and superior effluent quality (turbidity <0.2 NTU).


Q: Is UF suitable for oily wastewater treatment?

A: Yes, but requires pre-treatment (e.g., DAF or coalescers) to avoid irreversible membrane fouling by emulsified oils.


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