Hengelo, the Netherlands, 12 February 2026 Applied Membranes Inc (AMI), a USA-based provider of advanced water and wastewater treatment solutions, will be using NX Filtration’s hollow fiber nanofiltration (HFNF) membranes for advanced wastewater reuse at a pharmaceutical company. The pharmaceutical company seeks to reduce its freshwater intake and wastewater discharge by reusing its process water. AMI selected NX Filtration’s HFNF technology to remove high concentrations of organic compounds from the company’s wastewater stream. Combining this treated wastewater with a reverse osmosis (RO) system enables an efficient and robust water reuse…
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The River Crisis: Why Industry Must Begin to Lead Cleanup
India holds roughly 18% of the world’s population but only about 4% of its renewable freshwater resources, raising the stakes of river degradation. Across the country, untreated industrial wastewater contaminates rivers including the Yamuna, Ganga, Sabarmati and Jojari, with many tributaries critically degraded and facing functional collapse in coming decades. A major contributor is the textile and tannery industry, which consumes vast amounts of water and generates difficult-to-remove waste. Polluted rivers threaten drinking water, farm productivity, public health and local economies. Studies near Kanpur’s tanneries show chromium in groundwater far…
Read MoreDriven by Advance Technologiessustainable Solutions Andcircular Economy Principles
Innovation in wastewater treatment is transforming global water management through advanced technologies, sustainability-driven solutions, and circular economy integration. These innovations enable not only pollutant removal but also energy generation, resource recovery, and ecosystem restoration, aligning with the global vision for industrial decarbonization and sustainable water reuse. Technological Advancements in Wastewater Treatment Advanced wastewater treatment technologies have evolved dramatically beyond traditional activated sludge systems. Key innovations include membrane bioreactors (MBRs), advanced oxidation processes (AOPs), nanotechnology, and electrocoagulation.MBRs combine conventional biological treatment with membrane filtration, offering high contaminant removal (>95% biochemical oxygen…
Read MoreMembrane Group Secures Usd 50 Million Investment Commitment From Gef Capital to Accelerate Scale and Innovation in Sustainable Water Solutions
Membrane Group India
Read MoreNew Nanotech Water Treatment System Unveiled at T-chip Semiconductor Museum Launch
A new nanotechnology-based water purification system that aims to clean polluted rivers and reduce industrial waste was unveiled at the inauguration of India’s first Semiconductor Innovation Museum, T-Chip SIM, in Hyderabad on Sunday. The technology, developed by researchers at the University of Hyderabad, promises to help restore the city’s historic Musi River by converting wastewater into reusable, clean water. Professor Swati Ghosh Acharya from the University of Hyderabad shared that her team has been working on advanced materials designed to tackle industrial and urban water pollution. “We have been developing…
Read MoreIndustrial Wastewater Treatment: Tailored Solutions for Unique Wastewater Challenges
Every company’s wastewater stream is unique, based on their industry, inputs, outputs, processes, volumes, discharge parameters, and seasonal variables, as well as federal EPA, state, and local regulations. Consequently, their wastewater treatment often must be tailored to their specific needs to avoid violations and fines and reliably remain in compliance. Industrial wastewater is often contaminated with a wide range of pollutants, including suspended solids, heavy metals, and organic compounds. Many treatment methods require multiple steps, a variety of chemicals, or extensive labor to achieve even marginally acceptable results. Additionally, the…
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