Sustainability in Scotch Whisky Production
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AI plain-English summaryScotch whisky distillers are deploying nuclear magnetic resonance scanners and mass spectrometers to track fermentation and distillation in real time, as the liquid flows through pipes and vats. The problem is inefficiency. Whisky production consumes large amounts of energy and raw materials, yet much of what happens inside a fermentation tank or distillation column remains poorly understood. Current knowledge relies on batch sampling and offline analysis, which misses rapid chemical changes as they occur. This project plugs that gap by using a suite of analytical techniques—including NMR spectroscopy, gas chromatography-mass spectrometry, and thermogravimetric analysis—to watch reactions unfold continuously. If successful, the research could give distillers precise, data-driven control over each stage of production. That would allow them to reduce energy use, cut waste, and extract more alcohol from the same grain—improving both the environmental footprint and the economics of an industry that contributes billions to the UK economy. The flow-based methods developed here might also transfer to other continuous manufacturing processes, from biofuels to pharmaceuticals. This is applied science with a clear industrial target. It does not aim to discover new fundamental principles, but to turn existing analytical tools into practical, real-time process monitors.
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