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HEATING & CHILLING CENTRALISED COOLING AT DAIRY PLANT
A major dairy processing plant has moved away from ammonia- based cooling with a bespoke centralised system from ICS Cool Energy
processing plant. The new centralised installation will deliver 1.2MW of process cooling to serve two production areas and is based on three ICS Cool Energy Imperium chillers with a near zero global warming potential (GWP) R-1234ze refrigerant.
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Environmentally-friendly The dairy plant was investing to expand its manufacturing plant and increase the processing capacity and capabilities. As part of the project they decided to replace the existing chillers and install a brand-new centralised cooling system that would cover the demand for the current and new production areas. To assess the energy consumption requirements, heat loads and present a high performance, environmentally friendly solution, the dairy plant reached out to ICS Cool Energy. “We conducted a thorough analysis of
the customer’s usage for the existing plant and looked at the envisaged utilisation of the new production plant to ensure a workable system,” said Ben Young, major account manager at ICS Cool Energy. “While the customer initially leant towards
CS Cool Energy has completed a turnkey installation of a new process cooling system at a leading UK dairy
an ammonia-based system, which was traditionally used on site in the past, they changed their mind after we presented the benefits of a HFO-refrigerant based system.” “Many industries and businesses are
favouring a HFO like the R1234ze over ammonia due to it’s non-toxic nature. The HFO also offers very low GWP value of less than 1,” said Young. “By utilising the latest technology innovations, process cooling systems with HFO refrigerants can create a safer, more trouble free, energy efficient option with equally low environmental impact as ammonia.” ICS Cool Energy team designed the
centralised cooling system around the three Imperium air-cooled screw chillers on a duty, duty, standby arrangement. The setup is capable of delivering a total cooling capacity of 1.2 MW to fulfil the production requirements for 1°C supply water temperature and includes additional standby capacity. The standby capacity was critical for the customer, as being a leading dairy manufacturer, they needed to ensure the continuity of production. As part of this project, ICS Cool Energy
designed and prefabricated a skid off site, which included weir tank, eight circulation pumps, and run and standby heat exchangers. This was needed specifically to ensure equipment could fit within the tight
22 DECEMBER 2021/JANUARY 2022 | PROCESS & CONTROL
designated space. “It proved to be a very rewarding project,”
said Young. “Our team took care of the entire installation process, which included mechanical tie ins, control panel, an additional cooling tower with contract lift onto full commissioning and training. Additionally, we installed a temporary, cooling system from our hire fleet, to ensure we kept our customer’s operations running while we continued the works on the new plant.”
Outperforming ammonia The Imperium units feature ultra-low GWP, hydrofluoro-olefin (HFO) R-1234ze refrigerant, which in chillers can outperform ammonia even by 25% according to the energy efficiency ratio (EER) analysis. R-1234ze is mildly flammable and non-corrosive in comparison to ammonia, which is toxic and, if leaked, can pose serious risks to human health and food and beverage operations. Additionally, the HFO-based cooling systems are more cost efficient thanks to standard design, production and components that allow for routine maintenance. Ammonia requires expensive stainless-steel piping to withstand its corrosive properties, additional maintenance and special devices mounted to monitor the safety of the system.
ICS Cool Energy
www.icscoolenergy.com
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