PAPERmaking! Vol2 Nr2 2016

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8. Conclusion As I stated at the outset, effective energy transfer is a basic prerequisite for the success of many industrial processes. And yet, all too often, heat transfer equipment appears to be letting industry GRZQE\IDLOLQJWRGHOLYHUWKHSURPLVHGHI¿FLHQFLHVHLWKHULQWHUPVRIHQHUJ\UHGXFWLRQRU&2 2 emissions. Worse still, the equipment is prone to downtime and malfunction, which consumes engineering and maintenance time that could be better spent on other tasks. Applications in the ceramics or food processing sectors are more likely to suffer the consequences of heat exchangers and therefore have a much shorter life lifespan. Fortunately, technology is providing a solution that is both innovative and has the potential to pay for itself in double quick time. The payback periods for heat pipe heat exchanger applications can be as little as three months, and this is before potential savings on engineering and maintenance time are factored in. The truth of the matter is that British industry has been rightly frustrated with its conventional heat transfer equipment, often choosing to shut it down or bypass it, rather than waste any more time WU\LQJWRJHWLWWRZRUNHI¿FLHQWO\

The good news is that help is at hand with a new generation of heat transfer technology, which SURPLVHVWR¿QDOO\GHOLYHU

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