Water Treatment

Powering Efficiency in Water Treatment Systems

Industrial water treatment involves processes that remove contaminants from industrial wastewater to meet discharge standards or enable water reuse, employing various physical, chemical, and biological methods like filtration, chemical precipitation, and activated sludge systems to protect public health and the environment from pollution. Treatment can also focus on purifying water for specific industrial uses, ensuring it meets the quality requirements for processes like electronics manufacturing or food production. 

Reverse Osmosis

Reverse osmosis (RO) is a water purification process that uses a semi-permeable membrane to remove ions, unwanted molecules, and larger particles from water. This process is highly effective in removing impurities, making it a widely used technology for water treatment 

EDI

Electrodeionization (EDI) is an advanced water purification technology that uses electricity, ion exchange resins, and selective ion exchange membranes to continuously remove ionized contaminants from water. It is a chemical-free process that enables the production of high purity water without the need for caustic regeneration chemicals such as hydrochloric acid or sodium hydroxide.

Chemical-Physical

Physical-chemical treatments are most commonly known as physical sedimentation processes accelerated with flocculants and coagulants. Mild oxidation, Active Carbon or sand filtration and Mud treatment can sometimes be integrated in this process as well.

Modular solutions

Modular plant construction is an offsite process in which modular units are built in a controlled environment or fabrication shop and then shipped back to the plant, where they can be used as a standalone system or connected to other modular units. Pre-assembled modular units are constructed in sturdy steel frameworks, built to ensure they are structurally sound enough to withstand transport and installation.

Modular plant construction is increasingly considered an alternative to conventional stick-built construction, providing several benefits in safety and quality, schedule efficiency, and reduced on-site disruptions. However, any advertised benefits of modular construction must be carefully evaluated against specific project requirements.

 

Engineering design on purpose

Engineering design on purpose” refers to the methodical, step-by-step approach engineers and designers use to solve problems and create solutions by defining a challenge, researching it, brainstorming potential solutions, and developing and testing prototypes, emphasizing iteration and teamwork to ensure creativity and practicality in the final product or systemThis structured process moves an idea from imagination to realization, with each step informing the next and allowing for refinement based on data and testing. 

Industries Served & Compliance Standards

Industries Served

  • Oil & Gas
  • Steel Industry
  • Power Generation
  • Shipbuilding Industry
  • Paper Industry
  • Test Facility

Standards & Certifications

  • CE Market (Machine Directive, ATEX, PED, UNI EN 1090)
  • API & ISO Standard
  • US (UL, ASME, NFPA 70, etc.)
  • Canada (CSA, CRN registration, Safety Code Act, regional regulations)
  • Technical Passport (Customer Union)
  • Norsok Standard
  • Other Rules and Customer Standard

Contact Us

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