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Preventing stray chemicals in food, pharmaceutical and industrial products

While legislation requires the food, pharmaceutical and other industries to stick within clear chemical limits, even a few milligrams of a rogue chemical can count a product out. Food giants like Nestle will soon be using software developed by the MUSAC project to get it right.

Chemistry is big business. From medicine to food, industrial processes to environmental management, it is more important than ever before to know exactly which chemicals are present in our lives. With more sophisticated chemicals comes greater responsibility. Now a EUREKA project is helping companies the world over to comply with a new set of legally binding standards. In the near future the International Organisation of Standardisation (ISO) will require companies to state just how reliable their chemical measurements are. As of 2002, a commercial software system is available to help chemists everywhere. It can assess the accuracy of the percentage contents listings of their products, or the risk of pesticide contamination in food and medicines. Matthias Rösslein of Swiss-based project leader, the EMPA Research Institute, explains: "In the past, companies have already been challenged for uncertainty statements. In food control, for example, it is important to show that pesticides are really below a limit defined by government." The MUSAC system will help companies to judge if they are in breach of chemical limit regulations. Rösslein says that these computer-based techniques would have been impossible to develop outside the EUREKA forum. "We had people from laboratories, programmers and those that understand measurement uncertainty. EUREKA brought them together under one roof. It was a new experience and its important that we undertake more interdisciplinary projects in the future." Around 20 partners contributed to the MUSAC project. The finished software system gets a grip on measurement uncertainty in four easy steps. It asks for the quantities of each chemical and possible sources of uncertainty (such as changing lab temperatures) before calculating the margin of error and simulating uncertainty levels over the production base. One method to measure uncertainty is illustrated by a plasma flame: if atoms like cadmium or iron are present, they are excited and then emit a very characteristic light. So important is compliance with the new ISO standards that Nestlé is helping to commercialise the MUSAC system. According to Rösslein, "they are thinking about using this product in their labs worldwide". Some of the MUSAC partners have put together a spin-off company to market the new software. MUSAC also provided the impetus for the development of a related system to quantify uncertainty in physical measurements, such as component length and electric current.EUREKA is A European network for market-oriented R&D,- strengthening European competitiveness,- promoting innovation in market-oriented collaborative projects,- involving industry, research institutes and universities across Europe,- resulting in innovative products, processes and services.

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Austria, Switzerland, Germany

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