| Composition | gram |
|---|---|
| Fat | 0.2 |
| Carbohydrate | 16.1 |
| Protein | 0.7 |
| Dietary fibre | 1.0 |
| Alcohol | 0.0 |
| Water | 82.0 |
| Energy content | energiprosent |
|---|---|
| Fat | 2 |
| Carbohydrate | 91 |
| Protein | 4 |
| Dietary fibre | 3 |
| Alcohol | 0 |
| Nutrient | Source | Quantity | Energiprosent |
|---|---|---|---|
| Fat | 2% | ||
| Carbohydrate | 90% | ||
| Dietary fibre | 2% | ||
| Protein | 3% | ||
| Alcohol | 0% | ||
| Water | - |
| Carbohydrate | Source | 16.1 g |
|---|---|---|
| Starch | ||
| Sugar, total | ||
| Sugar, added | ||
| Sugar, free |
| Fat | Source | 0.2 g |
|---|---|---|
| Saturated fatty acids | ||
| Trans fatty acids | ||
| Monounsaturated fatty acids | ||
| Polyunsaturated fatty acids | ||
| Omega-3 | ||
| Omega-6 | ||
| Cholesterol |
| Saturated fatty acids | Source | 0.1 g |
|---|---|---|
| C12:0 (lauric acid) | ||
| C14:0 (myristic acid) | ||
| C16:0 (palmitic acid) | ||
| C18:0 (stearic acid) |
| Monounsaturated fatty acids | Source | 0 g |
|---|---|---|
| C16:1 sum (palmitoleic acid) | ||
| C18:1 sum (oleic acid) |
| Fat-soluble vitamins | Source | Quantity | |
|---|---|---|---|
| Vitamin A (RAE) | |||
| Vitamin A (RE) | 1 RE | 0 % | |
| Retinol | |||
| Beta-carotene | |||
| Vitamin D | 0 % | ||
| Vitamin E | 1 % |
| Minerals | Source | Quantity | |
|---|---|---|---|
| Salt (NaCl) | |||
| Calcium (Ca) | 1 % | ||
| Sodium (Na) | |||
| Potassium (K) | 6 % | ||
| Magnesium (Mg) | 2 % | ||
| Phosphorus (P) | 3 % |
| Trace elements | Source | Quantity | |
|---|---|---|---|
| Iron (Fe) | 1 % | ||
| Zinc (Zn) | 0 % | ||
| Selenium (Se) | 0 % | ||
| Copper (Cu) | 10 % | ||
| Iodine (I) | 0 % |
Food ID: 06.528
Scientific name: Vitis vinifera L. ssp. vinifera
| Facets | |
|---|---|
| F28 Process | Raw, no heat treatment (A07HS) |
The foods in Matvaretabellen are described using a classification system called LanguaL. LanguaL stands for "Langua aLimentaria" or "language of food". This language enables standardized descriptions of foods.
| LanguaL | Classification |
|---|---|
| A0143 | Fruit or fruit product (US CFR) |
| A0833 | Fruit or fruit product (EUROFIR) |
| B1329 | Grape |
| C0140 | Fruit, peel present, core, pit or seed present |
| E0150 | Whole, natural shape |
| F0003 | Not heat-treated |
| G0003 | Cooking method not applicable |
| H0003 | No treatment applied |
| J0001 | Preservation method not known |
| K0003 | No packing medium used |
| M0001 | Container or wrapping not known |
| N0001 | Food contact surface not known |
| P0024 | Human consumer, no age specification |
Missing value, content not known.
Estimated as a naturally occurring zero value, not analysed.
Calculated as the sum of omega-3 fatty acids from reference 460g: US Department of Agriculture, Agricultural Research Service. USDA National Nutrient Database for Standard Reference, Release 28 (2015). Nutrient Data Laboratory Home Page
Calculated as the sum of omega-6 fatty acids from reference 460g: US Department of Agriculture, Agricultural Research Service. USDA National Nutrient Database for Standard Reference, Release 28 (2015). Nutrient Data Laboratory Home Page
Frydenberg, H, Urke EB & Carlsen MH. Sugar project 2021-2024. University of Oslo, department of nutrition.
Food Databanks National Capability (2021). Food Databanks National Capability (FDNC) extended dataset based on PHE’s McCance and Widdowson’s Composition of Foods Integrated Dataset. Online version, quadram.ac.uk
US Department of Agriculture, Agricultural Research Service. USDA National Nutrient Database for Standard Reference, Release 28 (2015). Nutrient Data Laboratory Home Page
Department of Health. Nutrient analysis of fruit and vegetables. Summary report. Department of Health, London, 2013. Online version, assets.publishing.service.gov.uk
Aggregated value from several food items
Salt equivalent calculated from sodium (NACL[g]=2.5*NA[mg]/1000.0)
Water by difference (WATER[g] = 100 - PROT[g] - FAT[g] - CHO[g] - FIBT[g] - ALC[g])
Carbohydrate, available calculated from sugar and starch (CHO[g] = SUGAR[g] + STARCH[g])
Vitamin A activity calculated from retinol and beta-carotene (factor 1/6) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 6))
Vitamin A activity calculated from retinol and beta-carotene (factor 1/12) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 12))
Niacin equivalents calculated from niacin and tryptophan (NIAEQ[mg] = NIA[mg] + TRP[mg] / 60)
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Analytical method |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Weighted |
| Acquisition type | Independent laboratory |
| Method type | Analytical results |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method | Salt equivalent calculated from sodium (NACL[g]=2.5*NA[mg]/1000.0) |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method | Fatty acids, total cis n-3 polyunsaturated, calculated as sum of cis n-3 polyunsaturated fatty acids |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | High-performance liquid chromatography |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Analytical method |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method | Fatty acids, total cis n-6 polyunsaturated, calculated as the sum cis n-6 polyunsaturated fatty acids |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Calculation method |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Calculation method |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Calculation method |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | High-performance liquid chromatography |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Analytical method |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Calculations including conversion factors |
| Method | Vitamin A activity calculated from retinol and beta-carotene (factor 1/12) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 12)) |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Calculation method |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Calculation method |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Imputed/estimated, generic |
| Method | Imputation |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Analytical method |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | High-performance liquid chromatography |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Calculation method |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Calculations including conversion factors |
| Method | Niacin equivalents calculated from niacin and tryptophan (NIAEQ[mg] = NIA[mg] + TRP[mg] / 60) |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Analytical method |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | High-performance liquid chromatography |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | High-performance liquid chromatography |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method | Water by difference (WATER[g] = 100 - PROT[g] - FAT[g] - CHO[g] - FIBT[g] - ALC[g]) |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method | Carbohydrate, available calculated from sugar and starch (CHO[g] = SUGAR[g] + STARCH[g]) |
| Value type | Weighted |
| Acquisition type | Value created within host system |
| Method type | Aggregation of contributing values |
| Method | Imputation |
| Value type | Best estimate |
| Acquisition type | Food composition table |
| Method type | Method type not known |
| Method | Method not known |