Cooling Water Treatment

Cooling Water Treatment

A represntative Schematic of cooling water system is as below

Phase I

Water Chemistry Trends

Corrosion mitigation and monitoring procedures

Deposition and fouling control

Microbiology and Bio-control

Monitoring and treatment approach

Root cause analysis of failures, if any

Phase II

Recommendations for improvements in current program and procedures.

Design of customised Cooling Water Treatment program. This would include details of product chemistry, mechanism of actions, on site application support service like chemical feed, chemical and microbiological analysis, monitoring of critical KPIs, water conservation and other value added service, the overall implementation of which would lead to the following

Overview

Delivering Performance, Efficiency, and Reliability to the Petrochemical Industry

At Dorf Ketal, our success in the petrochemical sector stems from one principle: listening to our customers. By understanding the unique challenges you face in a rapidly evolving production environment, we have developed innovative chemistries and problem-solving services that deliver the performance, efficiency, and reliability your operations demand.

Corrosion Control

Corrosion Inhibitors are designed for prevention of metal loss in pipelines, headers, critical heat transfer equipment and cooling equipment.

Dorf Ketal has a wide range of both anodic and cathodic inhibitors that are specifically formulated to passivate the metal by reducing the corrosion potential. Some of the chemistries frequently incorporated in the products are based on

Orthophosphates

Meta/Poly Phosphates

Phosphonates

Zinc

Molybdate

Nitrite

Silicates

Azoles

Scale Control

Due to the many impurities in water, there are possibilities of reduced heat transfer, corrosion, restriction in water throughput and equipment downtime. Tailor made specific scale inhibitor programs are extremely critical for scale and fouling control as well as mineral scale prevention.

Scale/Deposit control agents are also known as dispersants, hardness stabilizers or antifoulants and they work on the following principles

Crystal Modification

Threshold Treatment

Agglomeration of Solids

Prevention of accumulation on critical surfaces

Dorf Ketal has a comprehensive range of polymers, polyphosphates, and organic phosphates to control deposits and scale formation.

Microbiological Control

Cooling towers are susceptible to microbiological activity due to the open design and exposure to sunlight. Algae, bacteria, SRB’s and fungi thrive in cooling towers as they have an ideal environment. Inadequate control of microbiology also leads to formation of biolfilm, which is 2.5 times more potent than mineral scales in impairing heat transfer.

Dorf Ketal technical experts do a complete micro study for identifying organisms and evaluate chemistries to adopt a high-kill program. Continuous monitoring of bacterial counts along with visual inspection by Dorf Ketal site staff is a standard process at each customer’s site.

The 3 main product solutions used for microbiological control are

Oxidizing Biocides

Non-oxidizing Biocides

Biodisperants

Oxidizing biocides commonly used are

Chlorine

Bromine

Chlorine Dioxide

Ozone

These kill microorganisms by the electrochemical process of oxidation.

Non-oxidizing biocides commonly used are

Quaternary ammonium compounds

Carbamates

2,2, Dibromo-3-nitrilopropanamide (DBNPA)

Glutaraldehydes

Methylene BisIsothiocynate (MBT)

Isothiazolines

And many more….

Non-oxidizing biocides kill microorganisms by disrupting the cell wall or preventing reproduction/respiration of the cells.

Biodispersants are used as penetrants into biofilms so that the biocide molecule can kill the microorganism on the metal surface.

Some commonly used biodispersants are

Polyamines

Ethoxylated Condensates

Specific Enzymes

Our comprehensive range of innovative chemistries include a range of corrosion and scale inhibitors, biodispersants and microbiocides, which ensure the following benefits for your system

Clean heat transfer surface

Reduced water usage

Reduced maintenance costs

Decreased operating costs

Improved safety and minimized risk