Publications by authors named "Marco Gobbino"

The influence of harvest period and harvest method on olive oil composition was investigated by nuclear magnetic resonance (NMR) spectroscopy and by some quality parameters such as free acidity, peroxide value, and UV spectrophotometric indices. This work focuses on two secondary factors (harvest period and harvest method) and investigated their interactions with primary (genetic and pedoclimatic) and secondary (agronomic practices and technological procedures) factors. To avoid misinterpretation, the general linear model analysis (GLM) was used to adjust the result obtained from the analysis of variance (ANOVA).

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Article Synopsis
  • - The paper discusses a study using new non-destructive techniques — unilateral nuclear magnetic resonance (NMR) and evanescent-field dielectrometry (EFD) — to measure moisture distribution in an ancient wall painting from the 11th century.
  • - This study took place in a hypogeous location (subterranean) like the St. Clement Basilica in Rome, where traditional moisture measurement methods are limited, allowing for the mapping of moisture at various depths without harming the artwork.
  • - The analysis aids in understanding how environmental conditions impact moisture in wall paintings, which can guide restoration efforts by monitoring the effectiveness of interventions made to reduce dampness and improve conservation.
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An integrated study of microclimate monitoring, IR thermography (IRT), gravimetric tests and portable unilateral nuclear magnetic resonance (NMR) was applied in the framework of planning emergency intervention on a very deteriorated wall painting in San Rocco church, Cornaredo (Milan, Italy). The IRT investigation supported by gravimetric tests showed that the worst damage, due to water infiltration, was localized on the wall painting of the northern wall. Unilateral NMR, a new non-destructive technique which measures the hydrogen signal of the moisture and that was applied directly to the wall, allowed a detailed map of the distribution of the moisture in the plaster underlying the wall panting to be obtained.

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