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H D Isengard

Publications and source records attributed to H D Isengard.

4 recordsLinked to original sources

Water as a source of errors in reference materials.

In the field of reference materials, long-term stability is of highest importance. Particularly for biological matrices, any kind of deterioration must be avoided during shelf-life. In the production precautions are taken to prevent these, but possible alterations caused by intensive drying have been underestimated until today. This presentation discusses several mechanisms of deterioration related to water activity and water content. Comparison of the results for water and moisture for six reference materials and their water sorption isotherms serve as a base to discuss the importance of accurate dry mass corrections for certified values. It is shown that the method chosen for dry mass correction influences certified contents significantly and a method description must be given. Furthermore, it is confirmed that for biological matrices optimal ranges of water activity and water content exist, where hygroscopicity is low without significant danger of product deterioration. Additionally, handling is facilitated in the optimised ranges.

Adsorption↗

[Comparison of methods to characterise thermally altered frying fats and oils].

During the process of deep fat frying the fat or oil undergoes several chemical and physical changes. To guarantee an effective quality control for used frying fats simple and rapid methods for the measurement of heat abuse are needed. Therefore several frying oils were heated with and without foodstuff and the change of polar parts, acid number, colour acid number, specific absorption and dielectric properties with prolonged heating time were determined. It could be shown that under usual frying conditions acid number and colour acid number, which are often used in praxis, as well as the specific absorption are not unrestrictedly useful to characterise heated frying fats. It turned out, however, that the determination of the dielectric properties with a foodoil-sensor is a useful tool to investigate heat abuse of frying fats and oils in routine analysis.

Cooking↗