Water heater
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Water heaters operating in hard water areas (above 150 ppm) typically begin losing efficiency within six weeks
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The manufacturer required a conditioner that was cost-effective, long-lasting, required minimal to no maintenance, and consistently performed with no upper hardness limit
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The selected heater featured a stainless steel heat exchanger, pre-mix zero governor burner, turbo fan system, a maximum set temperature of 85°C, and 96% gross efficiency with a 10-year expected lifespan when adequately protected
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Two sites were selected with a hardness of 280ppm and 366ppm, respectively
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A single ¾” Magcat conditioner was installed with a minimum one-metre run between the unit and heater inlet to allow effective treatment and maximise treatment performance at each site, operating at a set temperature of 65°C
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Both trials were scheduled to run for 12 months; the site with a hardness of 280ppm was installed in August 2024, and the site with a hardness of 360ppm was installed February 2025
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Water heater set temperature: 65°C
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Point 2 – Hot water outlet thermistor – 65 = 65°C
Point 11 – Heat exchanger exit thermistor – 65 = 65°C
Water heater set temperature: 65°C
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Point 2 – Hot water outlet thermistor: 64°C
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Point 11 – Heat exchanger exit thermistor: 65°C
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Reading: Stamford – 366 ppm hardness (after 6 months of catalytic treatment)
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Water heater set temperature – 65°C
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Point 2 – hot water outlet thermistor – 65 = 65°C
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Point 8 – cold water inlet thermistor – 19 = 19°C
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Point 11 – heat exchanger exit thermistor – 65 = 65°C
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The heat exchanger was removed and cut open for inspection
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After one year of continuous use at 280 ppm, no hard scale was found
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Surfaces remained clean, confirming complete prevention of limescale formation
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Water heater set temperature – 65°C
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Point 2 – hot water outlet thermistor – 65 = 65°C
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Point 8 – cold water inlet thermistor – 19 = 19 °C
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Point 11 – heat exchanger exit thermistor – 65 = 65°C
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A competitor’s conditioner was tested under identical conditions at a separate site
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After only three months, efficiency had declined and the heat exchanger showed significant scale accumulation
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