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Cooling systems are monitored continuously for temperature, pressure, flow and conductivity. š—•š˜‚š˜ š˜„š—µš—®š˜ š—®š—Æš—¼š˜‚š˜ š—ŗš—¶š—°š—æš—¼š—Æš—¶š—¼š—¹š—¼š—“š˜†? For many data centre cooling operations, microbial control is still checked through delayed laboratory results. Useful for compliance, but often too slow for operational decision-making. BactoSense changes that by turning microbiology into a š—°š—¼š—»š˜š—¶š—»š˜‚š—¼š˜‚š˜€š—¹š˜† š—ŗš—¼š—»š—¶š˜š—¼š—æš—²š—± š—½š—®š—æš—®š—ŗš—²š˜š—²š—æ, with regular cell count data directly from the cooling circuit. For engineers, this means a clearer baseline, earlier deviation detection and faster verification after corrective actions. Read the success story to see how this worked in a hyperscale data centre application: https://lnkd.in/e-ymfJyF #DataCentreCooling #MicrobiologicalMonitoring #CoolingWater #BactoSense #CriticalInfrastructure

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