Steam and Water Analysis System (SWAS) for Chemicals
Take care of your steam generators with SWAS solutions that keep them free of deposits and corrosion
Steam is the safest way to generate heat in the Chemical industry, for example in pass through reactors. To ensure that steam generation works without failures and with minimum energy consumption, and that boilers and pipelines are protected against corrosion and builtup, the feed water must be of consistent quality. Endress+Hauser's space-saving SWAS Compact analysis system, offers latest measurement technology for all critical parameters with very low cooling water and sample consumption.
SWAS Compact saves up to 70% of water consumption
compared to conventional SWAS systems
The outstanding SWAS Compact system, optimally suited for the Chemical industry, offers highest reliability, availability and traceability with lowest sample and cooling water consumption. This is ensured by the patented flow-through assembly with sophisticated sensor arrangement. Efficient steam and water monitoring for cost- and resource-saving chemical production.
How we can help
With our sophisticated SWAS solutions, you have the quality of your feed water completely under control. Take advantage of highly efficient monitoring of multiple, even complex parameters at a central location. Consistently pure water helps to minimize process downtime and prolong the life of your steam boilers. You reliably comply with limit values; traceability and secure data management provides proof of water quality at any time. The turnkey systems are easy to commission and operate.
Get support and save working time with a compact system that is easy to operate and maintain and perfectly fits to your requirements. All of our SWAS panels enable highly efficient, and thanks to CE marking, also strictly compliant monitoring.
Benefit from a complete turnkey SWAS Compact system that analyzes pH, dissolved oxygen, conductivity, and acid conductivity in a single panel solution. Real-time, accurate data from your critical process points without interrupting your production.
With a sample volume of only 10 l/h, thanks to our patented measurement arrangement in the SWAS Compact panel, and 70% less cooling water and energy compared to similar systems, you can save money on raw materials.
You can integrate all SWAS solutions conveniently and seamlessly into your existing PLCs using various interfaces, analog, digital or via IIoT connectivity.
With our steam and water analysis systems, you benefit from secure data management that provides proof of your water quality at any time. Simple connection via plug-and-play allows for quick use at your site.
What we offer
Smart monitoring solutions for steam generators from Endress+Hauser, such as the SWAS Compact panels, provide state-of-the-art measurements for all critical parameters in one central location. This ensures that your components are protected against...
Smart monitoring solutions for steam generators from Endress+Hauser, such as the SWAS Compact panels, provide state-of-the-art measurements for all critical parameters in one central location. This ensures that your components are protected against corrosion and built-up. SWAS solutions from Endress+Hauser have proven themselves in numerous use cases over the past decades. You receive a turnkey solution that you only need to connect to your process connections, and you are ready to go.
Water analysis of all typical critical parameters: e.g. pH/ORP, dissolved oxygen, conductivity (total, cationic/acid, differential), turbidity, TOC. Additional parameters and third-party sensors on demand.
Water analysis of all typical critical parameters: e.g. pH/ORP, dissolved oxygen, conductivity (total, cationic/acid, differential), turbidity, TOC. Additional parameters and third-party sensors on demand.
Measurement of up to eight parameters with one user-friendly Liquiline transmitter.
Turnkey SWAS Compact system for the measurement of total conductivity, acid/cationic and differential conductivity, dissolved oxygen, pH for temperatures up to 50 bar/725 psi and 240 °C/460 °F in one device.
Sample preparation with temperature and pressure reduction system up to 320 bar/4.640 psi and 575°C/1.060 °F available.
Integrated pH value calculation using differential conductivity.
Calculation of the remaining cation exchange capacity.
Automatic system shutdown if condensate temperature exceeds safety limits.
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