terclim by ICS banner
IVES 9 IVES Conference Series 9 International Congress on Grapevine and Wine Sciences 9 2ICGWS-2023 9 Physico-chemical properties of vine pruning residues with potential as enological additive

Physico-chemical properties of vine pruning residues with potential as enological additive

Abstract

Grapes are one of the world’s primary fruit crops, and pruning activities generate high amounts of annual wood wastes [1]. These pruning shoots contain valuable phenolic compounds and could have numerous potential applications [1,2]. Consequently, the aim of this work was to evaluate the physico-chemical properties of vine pruning residues with potential as enological additives. For this purpose, grapevine shoots from 12 varieties grown in Chile were collected during the winter of 2021. Samples were characterized by thermal analysis (TGA and DTG), color analysis, and their phenolic composition was analyzed using spectrophotometric and chromatographic techniques. Then, small pieces of wood samples were subjected to a toasting process, placed in contact with model wines (7 days), and compared against oak wood as a control treatment. The model wines obtained were also analyzed their total phenolic content (Folin-Ciocalteu) and antioxidant activity (DPPH). Thermal analysis showed that grapevine shoots from different cultivars had similar temperature intervals for mass losses, but both their color and phenolic composition varied according to grape variety. Like so, the model wines in contact with toasted oak wood pieces obtained from vine-shoots showed differences in their phenolic content and antioxidant capacity. Besides the prior, other compositional features of the vine shoots and treated model wines would be discussed.

Acknowledgements: Thanks to Consorcio Sur-Subantártico Ci2030-ANID Nº20CEIN2-142146 and FIC project Bip 40.047.041-0 for their financial support, and to Univiveros and CII Viña Concha y Toro for providing the vegetal materials.

References:

1)  Çetin, E.S. et al. (2011).  Chemical composition of grape canes. Ind. Crop Prod., 34, 994–998, DOI 10.1016/j.indcrop.2011.03.004

2)  Aliaño-González, M.J. et al. (2022). Wood waste from fruit trees: Biomolecules and their applications in agri-food industry. Biomolecules 12 238. DOI 10.3390/biom12020238

DOI:

Publication date: October 13, 2023

Issue: ICGWS 2023

Type: Poster

Authors

V. Felipe Laurie1*, Verónica Olate-Olave1,2, Ricardo I. Castro3, Clara Silva1

1Facultad de Ciencias Agrarias, Universidad de Talca, Talca, Chile
2Instituto de Investigación Interdisciplinaria (I3), Universidad de Talca, Talca, Chile
3Multidisciplinary Agroindustry Research Laboratory, Universidad Autónoma de Chile, Talca, Chile

Contact the author*

Keywords

vine pruning shoots, phenolic compounds, waste valorization

Tags

2ICGWS | ICGWS | ICGWS 2023 | IVES Conference Series

Citation

Related articles…

Induction of polyphenols in seedlings of Vitis vinifera cv. Monastrell by the application of elicitors

Contamination problems arising from the use of pesticides in viticulture have raised concerns. One of the alternatives to reduce contamination is the use of elicitors, molecules capable of stimulating the natural defences of plants, promoting the production of phenolic compounds (PC) that offer protection against biotic and abiotic stress. Previous studies on Cabernet-Sauvignon seedlings demonstrated that foliar application of elicitors methyl jasmonate (MeJ) and benzothiadiazole (BTH) increased proteins and PC involved in grapevine defence mechanisms. However, no trials had been conducted on Monastrell seedlings, a major winegrape variety in Spain.

Impact of toasting and botanical origin on oak wood (Q. sp.) volatilome using untargeted GCxGC-ToFMS analysis

Many works have been carried out to identify the key aroma volatile compounds of oak wood (e.g., whisky-lactone, furfural, maltol, eugenol, guaiacol, vanillin) using conventional gas chromatography coupled with olfactometry and mass spectrometry (GC-O-MS). Inspired by recent untargeted approaches in the field of food “omics”, this work aims to extend our knowledge on the impact of cooperage process on the volatile composition of oak wood using two-dimensional comprehensive gas chromatography coupled with time of flight mass spectrometry (GCxGC-ToFMS).

Oenological compatibility of biocontrol yeasts applied to wine grapes 

Antagonistic yeasts applied to wine grapes must be compatible with the thereafter winemaking process, avoiding competition with the fermentative Saccharomyces cerevisiae or affecting wine flavour. Therefore, fifteen epiphytic yeasts (6 Metschnikowia sp., 6 Hanseniaspora uvarum, 3 Starmerella bacillaris) previously selected for its biocontrol ability against Alternaria on wine grapes were evaluate for possible competition with S. cerevisiae by the Niche Overlap Index (NOI) employing YNB agar media with 10 mM of 17 different carbonate sources present in wine grapes (proline, asparagine, alanine, glutamic acid, tirosine, arginine, lisine, methionine, glicine, malic acid, tartaric acid, fructose, melibiose, raffinose, rhamnose, sucrose, glucose).

Barrels ad-hoc: Spanish oak wood classification by NIRs 

The wooden barrel is a key factor in enology, since wine chemical composition and sensory properties changes significantly in contact with the barrel[1]. Today’s highly competitive market constantly demands new differentiated products and wineries search innovations continuously.
Wood selection is crucial: barrels stability to keep constant their contribution and the result on products, and additional and differentiated wood contributions to impact their new products. Oak wood selection has traditionally been carried out using parameters such as specie, location and grain, however, it goes one step further nowadays. Large cooperage work with non-destructive techniques that allow classifying oak wood quickly and easily according to their organoleptic contribution[2].

New tool to evaluate color modifications during oxygen consumption in white and red wines

Measuring the effect of oxygen consumption on the color of wines as the level of dissolved oxygen decreases over time is very useful to know how much oxygen a wine can consume without significantly altering its color. The changes produced in wine after being exposed to high oxygen concentrations have been studied by different authors, but in all cases the wine has been analyzed once the oxygen consumption process has been completed. This work presents the results obtained with the use of an equipment designed and made to measure simultaneously the level of dissolved oxygen and the spectrum of the wine, during the oxygen consumption process from saturation levels with air to very low levels, which indicate the total consumption of the dosed oxygen[1,2].