When we think about water quality, minerals, hardness, or microbial contamination usually come to mind. But in industries that demand ultra-pure water, there’s another critical parameter: TOC – Total Organic Carbon.
In this blog, we’ll explore:
TOC (Total Organic Carbon) is the measure of organic carbon compounds in water. These compounds may come from:
Even when water looks crystal clear, it may still contain trace levels of TOC – and for certain industries, those traces matter a lot.
Not every sector worries about TOC. It’s mainly pharma and microelectronics where TOC can make or break operations.
In pharma, controlling TOC isn’t optional – it’s mandatory.
For semiconductor fabs, TOC is a precision and profitability issue. Ultra-pure water standards for microelectronics.
Reducing TOC requires multiple steps, depending on the purity level required:
Important: UV works best as a final polishing step once water is already clarified, because UV light requires low turbidity to penetrate effectively.
At 185 nm wavelength, UV light goes beyond disinfection – it actually oxidizes organic molecules, reducing TOC.
This makes UV systems indispensable for final-stage TOC polishing.
At Alfaa UV, we design solutions for industries where TOC control isn’t just about water – it’s about compliance, precision, and protecting your high-value processes.
Our WWR Series UV systems deliver:
Learn more about Alfaa UV’s TOC Reduction Applications
Explore our WWR Series UV Systems for ultra-pure water
In both cases, TOC is more than a number – it’s a critical quality factor.
TOC in water treatment may not matter in everyday applications, but in pharma and microelectronics, it’s non-negotiable.
By combining RO, AOP, and UV polishing, industries can achieve consistently low TOC levels. And with partners like Alfaa UV, TOC reduction becomes not just possible, but reliable.
Because in high-stakes industries, there’s no room for compromise on water quality.
TOC stands for Total Organic Carbon, a measure of organic contaminants in water. It’s especially important in ultra-pure water applications like pharma and semiconductors.
Pharma regulations (USP <643>, EP 2.2.44) set strict TOC limits. High TOC can support microbial growth and compromise drug safety.
In semiconductor fabs, even trace TOC can leave residues on wafers, causing defects and reducing chip yield.
Yes. At 185 nm wavelength, UV oxidizes organic molecules, lowering TOC. It works best as a final polishing step after other treatment processes.
Activated carbon, RO, deionization, advanced oxidation processes, and UV treatment are commonly used together for TOC reduction.
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