Process for obtaining a powder from wood-based aromatic extract, powder from wood-based aromatic extract obtained thereby, and process for ageing wine using said powder
Patent Information
- Application Number
- DE602017090259
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2017-04-10
- Publication Date
- 2025-07-02
- Estimated Expiration
- 2037-04-10
AI Technical Summary
Existing wine aging methods using wooden barrels and wood chips are costly and can introduce residues, while alternative methods lack quality and efficiency, particularly in releasing aromatic compounds and polyphenols.
A method for producing a wood-based aromatic extract powder through heating, aqueous extraction, and atomization to achieve a high vanillin concentration, which is then added to wine to enhance flavor without residues.
The method provides a cost-effective way to enhance wine flavor with aromatic compounds and polyphenols, ensuring residue-free aging and improved organoleptic qualities.
Description
[0001] The present application relates to a process for obtaining a wood-based aromatic extract powder, to a wood-based aromatic extract powder thus obtained and to a method for aging a wine using said powder.
[0002] According to a first method of aging, the wine is aged in wooden barrels, particularly oak.
[0003] According to one embodiment, a wooden barrel is made from staves that are cut from logs of wood, particularly oak. After natural drying for several years, the staves are shaped to obtain staves that have a first face shaped to the internal shape of the barrel and a second face shaped to the external shape of the barrel.
[0004] The staves are then positioned inside a hoop positioned at one of their ends. Next, the staves are heated and moistened to bend them and put the other hoops of the barrel in place.
[0005] After being shaped, the wooden barrel undergoes a heating phase called "bousinage." Depending on the intensity of the heating, certain aromas will develop more than others, such as roasted aromas, such as vanilla, for example. The intensity of the heating is adjusted according to the organoleptic characteristics sought during the aging of the wine.
[0006] Finally, the funds are in place.
[0007] When wine is aged in a wooden barrel, the wood releases aromatic compounds into the wine that complement the aromas already present in the wine. It also releases polyphenols and tannins that improve the organoleptic characteristics and the wine's ability to age over time.
[0008] This first method of aging in wooden barrels is expensive because wooden barrels are expensive and must be renewed regularly, generally after two to three aged wines.
[0009] According to a second aging method, the wine is aged in a "neutral" vat, generally made of stainless steel. Wood chips larger than 2 mm are introduced into the vat to macerate in the wine for a given period of time. Depending on the method of production, these wood chips may have undergone heating similar to the staves of a wooden barrel. Thus, like a wooden barrel, the wood chips release aromatic compounds, polyphenols, and tannins into the wine.
[0010] To give an order of magnitude, the quantity of chips introduced into the wine is between 2 and 10 g / l and the maceration time can vary from one to several months.
[0011] After this maceration phase, the wood chips are removed from the wine.
[0012] This second method of aging is not fully satisfactory because there is a risk of leaving possible pieces of wood chips inside the wine at the end of the maceration phase, which requires a filtration step likely to alter the wine. In addition, this second method of aging is perceived as less qualitative by consumers. According to document FR2396798, a substance, intended to be used in the production of alcoholic liquids, has a vanillin content of between approximately 30 and 100 mg / l. The process described in this document includes a first extraction of phenolic derivatives and sugars from the wood at a temperature between 80 and 100°C and a second partial extraction of lignin and its derivatives under pressure at a temperature between 130 and 150°C.According to this document FR2396798, the extraction must be carried out in such a way as to obtain a low extraction of lignin and the start of its degradation, in particular into vanillin.
[0013] The present invention aims to remedy the drawbacks of the prior art.
[0014] For this purpose, the subject of the invention is a method for obtaining a wood-based aromatic extract powder comprising a step of heating at least one piece of dried raw wood, the heating step being configured to optimize a subsequent extraction of vanillin, an aqueous extraction step in order to obtain a solution containing components extracted from the wood and a step of atomizing said solution in order to obtain the wood-based aromatic extract powder, the parameters of the heating, extraction and / or atomization steps being adjusted to obtain an aromatic extract powder comprising a vanillin concentration of between 1800 and 3800 mg / kg.
[0015] This solution makes it possible to add aromatic compounds, polyphenols and tannins to the wine in the same way as the previously mentioned aging methods, at a lower cost, without the risk of leaving wood chip residue.
[0016] To obtain the required vanillin concentration, the production process includes the following parameters, taken individually or in combination: The raw wood is sessile oak with a fine grain between 2 and 3 mm. The pieces of wood have a grain size between 2 and 6 mm. The heating step is carried out at a temperature between 150 and 280°C. The extraction step is carried out at a temperature between 80 and 100°C. The atomization step is carried out at a temperature between 140 and 190°C. The parameters of the atomization step are configured to obtain a grain size less than or equal to 300 µm.
[0017] The invention also relates to a composition comprising from 30 to 100% by weight of wood-based aromatic extract powder and from 0 to 70% by weight of at least one yeast manoprotein.
[0018] Finally, the invention also relates to a breeding method which consists of dissolving between 50 and 200 mg / l of this composition in the wine.
[0019] Other features and advantages will emerge from the detailed description of the invention which follows, a description given by way of example only.
[0020] The process for obtaining a wood-based extract is carried out using raw sessile oak wood (Quercus Petrae L.) with a fine grain between 2 and 3 mm. Other species and other grains are possible, but this type of wood and this type of grain have the best potential for vanillin extraction.
[0021] The selected raw wood undergoes a drying step to lower the moisture content of the wood. According to one procedure, the wood is subjected to natural drying for a period of 18 to 24 months. This drying step allows a moisture content of approximately 15% to be obtained. According to one embodiment, the wood is presented in the form of pieces of wood or shavings between 2 and 6 mm. This dimension of the wood will allow the duration of certain stages of the process to be reduced.
[0022] Next, the wood undergoes a heating stage. This stage aims to develop the desired aromas.
[0023] The temperature of the heating stage is between 150 and 280°C. The heating characteristics, including temperature, intensity, and duration, are adjusted to optimize the subsequent extraction of vanillin.
[0024] Preferably, the raw wood selection and / or heating steps are carried out in batches. At the end of the heating step, a representative sample is taken from each batch and analyzed in order to select for the subsequent steps the batch or batches containing the minimum quantities required for the desired extractable compounds (vanillin, gamma-octalactone, eugenol, furfural, polyphenols, etc.).
[0025] After the heating stage, the pieces of wood are subjected to an aqueous phase extraction stage.
[0026] As a guide, to carry out this aqueous extraction, a quantity of 70 to 100 kg of pieces of wood is introduced into 600 to 800 l of water.
[0027] This aqueous extraction is carried out at atmospheric pressure, at a temperature between 80 and 100°C. The extraction lasts between 1 and 9 hours and preferably between 4 and 8 hours.
[0028] The characteristics of the extraction step (temperature, duration) are adjusted to optimize vanillin extraction.
[0029] The extraction step can be followed by a concentration step aimed at concentrating the components extracted from the wood in the aqueous phase. For this purpose, a falling film concentrator can be used.
[0030] Finally, the aqueous solution containing the components extracted from the wood, preferably concentrated, is subjected to an atomization step in order to obtain a fine powder composed of the components extracted from the wood. The atomization step is carried out at a temperature between 140 and 190°C. The powder obtained has a particle size less than or equal to 300 µm.
[0031] The various parameters of the process described above are adjusted so that the concentrations of the various molecules present in the wood-based aromatic extract powder are included: For tannins between 300 and 700 g / kg, For vanillin between 1800 and 3800 mg / kg.
[0032] According to another characteristic of the invention, the wood-based aromatic extract powder obtained from the process of the invention is mixed with at least one yeast manoprotein to obtain a final composition.
[0033] Preferably, this final composition comprises: From 30 to 100% by weight of wood-based aromatic extract powder, From 0 to 70% by weight of at least one yeast manoprotein.
[0034] This final composition makes it possible to reinforce the beneficial effects of the wood-based aromatic extract powder (taste, smell) and those of the manoproteins (roundness in the mouth, protein stability, increased fruity sensation, etc.).
[0035] Preferably, the final composition comprises about 50% by weight of wood-based aromatic extract powder and about 50% by weight of at least one yeast manoprotein. For this final composition, the concentrations of the different molecules are: For tannins between 150 and 350 g / kg, For vanillin between 900 and 1900 mg / kg.
[0036] To improve the organoleptic characteristics of the wine, the final composition comprising at least the wood-based aromatic extract powder is introduced and dissolved in the wine during the aging phase, after all fermentation or maceration phases. The quantity of the final composition introduced and dissolved in the wine is between 50 and 200 mg / l.
[0037] Unlike wood chips, wood-based aromatic extract powder dissolves in wine like yeast. Therefore, the wine aging process does not involve removing the elements introduced into the wine to release aromatic compounds, polyphenols, and tannins. Finally, the cost of wood-based aromatic extract powder is much lower than that generated by using wooden barrels.
Claims
1. Process for obtaining a wood-based aromatic extract powder, comprising a step of heating at least one piece of dried raw wood, the step of heating being configured to optimize a subsequent extraction of vanillin, a step of aqueous extraction in order to obtain a solution containing components extracted from the wood and a step of atomizing said solution in order to obtain the wood-based aromatic extract powder, the parameters of the steps of heating, of extraction and / or of atomization being adjusted in order to obtain an aromatic extract powder comprising a vanillin concentration of between 1800 and 3800 mg / kg.
2. Process for obtaining a wood-based aromatic extract powder according to Claim 1, characterized in that the raw wood is sessile oak with a fine grain of between 2 and 3 mm.
3. Process for obtaining a wood-based aromatic extract powder according to Claim 1 or 2, characterized in that it comprises a step of natural drying for 18 to 24 months.
4. Process for obtaining a wood-based aromatic extract powder according to one of the preceding claims, characterized in that the pieces of wood have a particle size of between 2 and 6 mm.
5. Process for obtaining a wood-based aromatic extract powder according to one of the preceding claims, characterized in that the step of heating is carried out at a temperature of between 150 and 280°C.
6. Process for obtaining a wood-based aromatic extract powder according to one of the preceding claims, characterized in that the step of extraction is carried out at a temperature of between 80 and 100°C.
7. Process for obtaining a wood-based aromatic extract powder according to one of the preceding claims, characterized in that the step of atomization is carried out at a temperature of between 140 and 190°C.
8. Process for obtaining a wood-based aromatic extract powder according to one of the preceding claims, characterized in that the parameters of the step of atomization are configured in order to obtain a particle size of less than or equal to 300 µm.
9. Wood-based aromatic extract powder obtained using the process according to one of the preceding claims, characterized in that it comprises a vanillin concentration of between 1800 and 3800 mg / kg.
10. Wood-based aromatic extract powder according to Claim 9, characterized in that it comprises a tannin concentration of between 300 and 700 g / kg.
11. Composition comprising from 30% to 100% by weight of wood-based aromatic extract powder according to Claim 9 or 10 and from 0% to 70% by weight of at least one yeast mannoprotein.
12. Composition according to the preceding claim, characterized in that it comprises approximately 50% by weight of wood-based aromatic extract powder and approximately 50% by weight of at least one yeast mannoprotein.
13. Method for maturing a wine comprising a step of dissolving a composition according to one of Claims 11 and 12 in the wine.
14. Method for maturing a wine according to the preceding claim, characterized in that an amount of composition of between 50 and 200 mg / l is introduced into the wine.