Showing posts with label Wine Words Defined. Show all posts
Showing posts with label Wine Words Defined. Show all posts

Wednesday, July 29, 2009

Pinot Noir Winemaking 101 decision Chart from Oregon Pinot Camp



A few wine terms worth knowing

Saignée
Saignée (the French word for the medieval medical process of bleeding) is used when a winemaker desires to impart more tannin and color to a red wine. The process involves the removal of some almost-colorless juice from the must in the fermenter at a very early stage – it is also known as “bleeding” the fermenter. The red wine is intensified as a result of the bleeding because the volume of juice in the must is reduced relative to the surface area of remaining grape skins. And in some senses, the must involved in the maceration is concentrated. (Typically, the removed juice is fermented separately, producing a rosé wine as a byproduct.)

Destemmers
The winemaker may choose to have some or all of the clusters go through a destemmer that removes the individual berries from the stem. Those clusters go into a destemmer or destemmer-crusher. This is simply a device that tumbles the entire clusters inside a perforated drum, allowing the berries to fall through the perforations and the stems to exit separately out the other end into a bin for disposal. In some machines, the berries then pass between two long, soft rotating cylinders with a variable slot that serves to “pop” varying percentages of the berries before exiting the bottom. Gentleness, capacity, and ease of cleaning are the primary differences in these machines. Some winemakers choose to use a percentage of un-destemmed whole clusters in their fermentation. This is achieved by bypassing the destemmer and simply dumping the chosen amount of clusters directly into the fermenter.

SO2
SO2 is added to almost every must and wine and is one of the most basic and important quality control measures available to the winemaker. SO2 acts as both an oxidase enzyme inhibitor and as a microbial growth inhibitor. SO2 is added to the must early (within minutes or hours) to prevent browning and to inhibit native flora. If the native bacteria and yeast grow out of control, the result can lead to higher volatile acidity (VA), off flavors and aromas, and possibly fermentations that stop with sugar still in the wine (stuck fermentation).

The impact of SO2 additions is strongly affected by the pH of the must. If tartaric acid additions have been made, the acidity and pH will change, affecting the activity of the SO2. Almost all of the SO2 added to the must will be bound up during the fermentation and eliminated at pressing. It is almost always added again at the end of malolactic fermentation to protect the young wine from oxidation during the aging process.

Yeast and Yeast nutrients
Once a suitable environment has been created in the fermenter, yeast can be added to start active fermentation, or yeast will not be added at all if the winemaker has decided to let the ferment go native. There are many types of commercial yeast available to winemakers, all with their own special characteristics, from aromatic enhancement to high alcohol tolerance. The timing and quantity of yeast additions affects how quickly the fermentation starts and how rapidly it progresses.

Yeasts require a wide variety of nutrients to grow and perform their job of converting sugar to alcohol. Acid, high temperatures, and alcohol stress the yeast and can lead to off aromas and yeast death. Grape musts can vary dramatically in the level of these nutrients and are often deficient in one or more essential elements. An analysis can be done to determine whether and by how much the must is deficient in the major nutrients required for yeast to grow and complete fermentation. Once fermentation begins, the required amounts of nutrients can be added to the must. This practice ensures healthy fermentations that go to dryness and produce low amounts of off aromas such as sulfides.

Roto-fermenters are horizontal, closed tanks that can be rotated to mix the cap with the must in a pre-programmed manner. They require minimal attention and are easy to empty, but are very expensive to purchase and can lead to over-extraction.

Pigeage (literally “by foot”). In a shallow tank this involves walking on the fermenting must to mix the cap. In larger tanks, it involves immersing most of your body in the wine and mixing in any way possible as you swim or crawl around. A very low-tech approach, it is the most personal cap management tool.

Fining and Filtration
Fining and filtration are tools for clarification and for tannin and flavor modification of wine. Wines can have a high volume of suspended solids that will not clarify by settling and need to be removed prior to bottling. Some wines have bitter and unpleasant tannins or other negative flavor compounds that need to be removed or modified. The decision to fine or filter a wine depends on the specific problem that needs to be addressed. The choice of what to do is often based on small experiments called bench trials. The winemaker takes small samples of wine and adds various fining agents or combinations of fining agents to determine their effectiveness in solving the problem. That information is then used to treat the entire lot. The most common fining agents are egg whites, gelatin, milk and whey, and isinglass (protein from the air bladder of a sturgeon). These are often effective in extremely small doses, measured in ounces per one thousand gallons.

Bitterness is one of the more common problems addressed by adding fining agents. As wines age and develop, tannin molecules connect into chains of varying lengths. Some of these are perceived as bitter or astringent and can be removed by adding specific proteins to the wine. Unfortunately, there is no laboratory test to analyze exactly what tannins are causing the problems or what treatments are most effective in their removal. Luckily there are a wide variety of fining agents and the best treatment can be determined by bench trials using specific agents at varying doses. Although effective in removing undesired tannins, fining a wine always removes some positive flavor components. The goal in fermenting, pressing and aging is to end up with all of the extracts and flavors that the winemaker wants and nothing extra. That way, nothing will have to be removed. In certain circumstances filtration is necessary. White wines are commonly filtered.

Tuesday, June 23, 2009

Malbec


is a variety of grape used in making red wine. The grapes tend to have an inky dark color and robust tannins. Long known as one of the six grapes allowed in the blend of red Bordeaux wine, the French plantations of Malbec are now found primarily in Cahors in the South West France region. It is increasingly celebrated as an Argentine varietal wine. It is also grown in Chile, cooler regions in California, and in Washington. Mablec is growing rapidly in popularity in the US.

Tuesday, June 9, 2009

Organic Wines defined with links




"What Is the Real Definition of Organic?

Organic products in the United States are regulated by the U.S. Department of Agriculture (USDA) in accordance with the Organic Food and Production Act (OFPA) passed in 1990 (7 C.F.R. pt. 205). Products labeled as "organic" must be certified according to standards for ingredients and production set by the National Organic Standards Board (NOSB) and administered by the National Organic Program (NOP) within the USDA. Organic foods and beverages are produced without using the following: most conventional pesticides, fertilizers made with synthetic ingredients or sewage sludge, bioengineering or ionizing radiation. Organic meat, poultry, eggs and dairy products come from animals that are given no antibiotics or growth hormones.

The NOSB defines organic agriculture as "an ecological production management system that promotes and enhances biodiversity, biological cycles and soil biological activity." Certainly the goal of organic agriculture—and the wine industry in particular—is to address larger issues, such as soil erosion water quality, loss of biodiversity, chemical dependence, and ecological impacts, such as resistance to natural predators.

Organically Grown Grapes vs. Organic Wine

Organic wines are currently in a state of limbo because many traditional winemaking ingredients are not currently approved for organic labeling by the NOSB. The term "organic wine" can be used only when 100 percent of the grapes are certified organic and where no sulfites are added. For example, a wine that contains only organic grapes but also uses sulphur dioxide (SO2), yeasts, bentonite or egg white gases (e.g., N2, CO2) in the winemaking process is not considered an "organic wine." Instead, these wines are commonly labeled "made from organically grown grapes."

There is continued discussion between the NOSB and the California Organic Advisory Board to recommend revised standards that would allow the use of sulphur dioxide; however, comments from the initial Federal Register notice last year resulted in withdrawal of the regulation for revision. Revised regulations could be adopted in the upcoming year.

Although the labeling limitation has been a disincentive for some winemakers to obtain organic certification, many grape growers are moving forward with their efforts to obtain organic certification (a three-year process) in anticipation of a resolution of the ingredient issue. In addition, many growers are finding that their winemaking partners want to use or purchase organic grapes—even without the labeling advantage. Because chemical sprays can enter the vat through grape skin residues or from pulp from the plant itself, growers and winemakers have an independent desire to eliminate trace pesticides and other chemical residue from their content. Winemakers have found that organically grown grapes have a unique, if not better, crush, providing additional flavor options.

During a grower's three-year transition to obtain organic certification, production costs can increase as much as 5 to 10 percent. "After the first three years, most producers agree, organic growing costs become equal or less than conventional growing costs as money is no longer being spent on synthetic chemicals." (OTA, Marketwatch) The biggest difference for growers of organic grapes is adopting growing practices that maintain biologically active soil. The use of cover crops and natural fertilizers, and the planting of companion crops, such as echinacea to attract natural predators, are common. In addition, weed management is integrative, allowing a cycle of growth, mowing and composting wherein the biomass is used as fertilizer instead of chemical sprays.

In the meantime, wine labels containing the phrase "grown with organically grown grapes" seem to be increasing as the certified acreage increases, and the inclusion of this information on labels is used by some as a marketing distinction along with appellation or variety."

More information along with links can be found at Winebusiness.com or at the Organic Trade Association site.

Can you taste the difference?

Monday, May 18, 2009

The ABC glossary of wine: Swapping parker for Dr Vino

"Albariño. Signature white wine from Spain -- sunny, peachy, floral and mouthwatering. Spanish wines -- red, white, rosé and its sparkling Cava -- tend to be excellent values these days."

Everything in Between

"Zweigelt- Austria's most widely planted red grape, sometimes seen as a rosé. The red is fun, charming and a little peppery."


Things must and always do change, as seen in the classic case of MJ! Don't try and find parker in this glossary!

Tuesday, May 5, 2009

Phylloxera

PHYLLOXERA, small, sap-eating, greenish insect of the genus Phylloxera, closely related to the aphid . Phylloxeras feed on leaves and roots, and many species produce galls on deciduous trees. Their life cycle is complex; one species is known to pass through 21 different stages. Most notorious of the group is the grape phylloxera, Phylloxera vitifoliae, native to E North America. The species has winged and wingless generations, the former causing galls on grape leaves and the latter feeding on the roots, causing nodules and eventually killing the vine. The grape phylloxera came close to destroying the wine industry of France after its accidental introduction in about 1860; grafting of susceptible European vines onto resistant North American root stock saved the European vineyards. Phylloxeras are classified in the phylum Arthropoda , class Insecta, order Homoptera, family Phylloxeridae.

The Columbia Encyclopedia, Sixth Edition; 1/10/2004