0000000000142142

AUTHOR

Carmela Maria Lanza

showing 4 related works from this author

Influence of Soil Salinity on Sensory Characteristics and Volatile Aroma Compounds of Nero d’Avola Wine

2010

The influence of soil salinity on the chemical composition, volatile aromatic compounds, and sensory characteristics of Nero d'Avola wine was examined. Data on vineyard productivity, such as grape yield, are also reported. Physicochemical parameters were determined on the samples analyzed. Solid-phase microextraction was used for the extraction of aromatic volatile compounds, followed by capillary gas chromatography-mass spectrometry. Sensory analyses were performed by visual inspection, smelling, and tasting. Statistical analysis showed that most of the physicochemical parameters and volatile constituents, both primary and fermentation aromas, were influenced by the soil salinity. The comp…

WineSoil salinitybiologyChemistryOrganolepticfood and beveragesHorticulturebiology.organism_classificationSensory analysisSalinitysoil salinity Nero D'Avola wine aroma compounds sensory analysisSettore AGR/14 - PedologiaYield (wine)Wine tastingFood scienceAromaFood ScienceAmerican Journal of Enology and Viticulture
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Study of green Sicilian table olive fermentations through microbiological, chemical and sensory analyses.

2010

The production of five different green table olive cultivars was studied by a combined strategy consisting of chemical, microbiological and sensory analyses. Cultivable microflora of samples collected during processing was monitored by plate counts on seven synthetic culture media. In all samples Enterobacteriaceae, Pseudomonaceae, staphylococci, lactic acid bacteria and spore-forming bacteria were undetectable. Yeasts and moulds were countable from the day 42 (2 log CFU/ml) till the end of fermentation (6 log CFU/ml). The use of three different approaches for microorganism detection, including a culture-independent methodology, revealed the presence of barely three yeast species during the…

Settore CHIM/10 - Chimica Degli Alimentigreen Sicilian table olives.MicroorganismPichia kluyveriYeast communityBiologyCandida parapsilosisSettore BIO/19 - Microbiologia GeneraleMicrobiologySensory analysischemistry.chemical_compoundOleaHumansFood scienceAromaPichia guilliermondiiVolatile Organic CompoundsBacteriaFungifood and beveragesSettore AGR/15 - Scienze E Tecnologie Alimentaribiology.organism_classificationYeastLactic acidSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreechemistryItalyTasteFermentationFermentationFood ScienceFood microbiology
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Preliminary characterization of wild lactic acid bacteria and their abilities to produce flavour compounds in ripened model cheese system.

2007

Aims:  The aim of this work was to preliminary characterize wild lactic acid bacteria (LAB), previously isolated during artisanal Pecorino Siciliano (PS) cheese-making for technological and flavour formation abilities in a model cheese system. Methods and Results:  Twelve LAB were studied for the ability to grow at 10 and 45°C, to coagulate and acidify both reconstituted skim milk and ewe's milk. Moreover, the capacity of the strains to generate aroma compounds was evaluated in a model cheese system at 30- and 60-day ripening. Flavour compounds were screened by sensory analysis and throughout gas chromatography (GC)–mass spectrometry (MS). Most of the strains were able to grow both at 10 an…

Lactobacillus caseifood.ingredientFood HandlingFlavourlactic acid bacteria ; model cheese system ; sensory analysis ; volatile compoundsApplied Microbiology and BiotechnologySensory analysisModels Biologicalaroma microrganism characterizationGas Chromatography-Mass Spectrometrysensory analysischemistry.chemical_compoundfoodCheeseSkimmed milkFood microbiologyAnimalsmodel cheese systemFood sciencevolatile compoundsAromaFlavorlactic acid bacteria model cheese system sensory analysis volatile compoundsAldehydesSheepbiologyChemistryLacticaseibacillus rhamnosusfood and beveragesGeneral MedicineSettore AGR/15 - Scienze E Tecnologie Alimentaribiology.organism_classificationFatty Acids VolatileLactic acidlactic acid bacteriaFlavoring AgentsLactobacillusLacticaseibacillus caseiMilkAlcoholsTasteFood MicrobiologyFemaleLeuconostocBiotechnologyLactobacillus plantarum
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Biochemical alterations and quality of ready to eat Opuntia ficus indica L. Miller differently packaged

2009

media_common.quotation_subjectOpuntia ficusBioengineeringReady to eatSettore AGR/15 - Scienze E Tecnologie AlimentariGeneral MedicineBiologyHorticultureenzymes fresh-cut packagingQuality (business)Food scienceMolecular BiologyBiotechnologymedia_commonNew Biotechnology
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