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Apricot nectar, canned, with added ascorbic acid

Fruits Per 100 g · Per 100g serving

Apricot nectar, canned, with added ascorbic acid is a fruit at 56.0 calories per 100g. It provides useful amounts of Vitamin A (RAE) and Vitamin C, contributing 36% and 33% of the Daily Value per 100g. This fruit is virtually fat-free. Fruits are naturally rich in vitamins, dietary fiber, and antioxidants. They are an important part of a balanced diet and contribute to daily micronutrient needs. Our database tracks 71 nutrients for this food, plus environmental footprint data.

56.0
Calories
kcal
0.17
Protein
g
0.45
Fat
g
13.6
Carbs
g
0.10
Fiber
g

Top Nutrients

☀️
Vitamin A (RAE)
322 µg
36% DV
☀️
Vitamin C
29.7 mg
33% DV
💪
Carbohydrate
13.6 g
10% DV

Data for 71 of 150 tracked nutrients

Nutrient Fingerprint

How this food scores across key nutrient categories, as a percentage of the daily recommended value per 100 g. Based on USDA DRIs for adults.

Complete Nutrient Profile

Macronutrients 9
NutrientPer 100gUnitPer Serving% DV
Water SR85.6g—
2%
Calories SR56.0kcal——
Energy (kJ) SR234kj——
Protein SR0.17g—
0%
Total Fat SR0.45g——
Carbohydrate SR13.6g—
10%
Fiber SR0.10g—
0%
Total Sugars SR12.8g——
Ash SR0.12g——
Minerals 10
NutrientPer 100gUnitPer Serving% DV
Calcium SR11.0mg—
1%
Iron SR0.10mg—
1%
Magnesium SR5.0mg—
1%
Phosphorus SR5.0mg—
1%
Potassium SR67.0mg—
2%
Sodium SR8.0mg—
0%
Zinc SR0.03mg—
0%
Copper SR0.02mg—
2%
Manganese SR0.02mg—
1%
Selenium SR0µg——
Vitamins 31
NutrientPer 100gUnitPer Serving% DV
Vitamin A (RAE) SR322µg—
36%
Vitamin A (IU) SR16.0IU——
Retinol SR0µg——
Beta-Carotene SR189µg——
Alpha-Carotene SR3.0µg——
Beta-Cryptoxanthin SR5.0µg——
Lycopene SR20.0µg——
Lutein + Zeaxanthin SR6.0µg——
Vitamin C SR29.7mg—
33%
Vitamin D SR0µg——
Vitamin D (IU) SR0IU——
Vitamin E SR0.41mg—
3%
Beta-Tocopherol SR0mg——
Gamma-Tocopherol SR0mg——
Delta-Tocopherol SR0mg——
Alpha-Tocotrienol SR0mg——
Beta-Tocotrienol SR0mg——
Gamma-Tocotrienol SR0mg——
Delta-Tocotrienol SR0mg——
Vitamin K1 SR1.2µg—
1%
Thiamin (B1) SR0.06mg—
5%
Riboflavin (B2) SR0.01mg—
1%
Niacin (B3) SR0.15mg—
1%
Pantothenic Acid (B5) SR0.04mg—
1%
Vitamin B6 SR0.04mg—
3%
Folate SR1.0µg—
0%
Folic Acid SR0µg——
Folate (food) SR1.0µg——
Folate (DFE) SR1.0µg——
Vitamin B12 SR0µg——
Choline SR1.0mg—
0%
Fatty Acids 8
NutrientPer 100gUnitPer Serving% DV
Saturated Fat SR0.03g——
Monounsaturated Fat SR0.19g——
Polyunsaturated Fat SR0.09g——
Trans Fat SR0g——
Cholesterol SR0mg——
Omega-3 EPA SR0g——
Omega-3 DPA SR0g——
Omega-3 DHA SR0g——
Individual Fatty Acids 10
NutrientPer 100gUnitPer Serving% DV
Butyric Acid (4:0) SR0g——
Caproic Acid (6:0) SR0g——
Caprylic Acid (8:0) SR0g——
Capric Acid (10:0) SR0g——
Lauric Acid (12:0) SR0g——
Myristic Acid (14:0) SR0g——
Palmitic Acid (16:0) SR0.03g——
Stearic Acid (18:0) SR0.004g——
Linoleic Acid (18:2) SR0.09g—
0%
Linolenic Acid (18:3) SR0g——
Other 3
NutrientPer 100gUnitPer Serving% DV
Caffeine SR0mg——
Theobromine SR0mg——
Alcohol SR0g——

Nutrient Density Score

The NRF9.3 score measures overall nutritional quality per 100 kcal. It rewards 9 nutrients to encourage (protein, fiber, vitamins A, C, E, calcium, iron, magnesium, potassium) and penalizes 3 to limit (saturated fat, added sugars, sodium). Higher is better; negative scores indicate the food is high in limit nutrients relative to its beneficial content.

135
NRF9.3 Score
Excellent · per 100 kcal
Poor (<0) Moderate Good Excellent (100+)

NRF9.3 index: Fulgoni et al. (2009), J Nutr 139(8). DVs based on FDA 2020 reference values.

Nutrient Interactions in This Food

Nutrients in this food that enhance or compete with each other during absorption.

✔ Synergies — nutrients that help each other

Dietary Fat + Vitamin A●●●

Vitamin A is fat-soluble and requires dietary fat for absorption. Adding fat to a meal significantly increases beta-carotene and retinol absorption.

Ribaya-Mercado et al., Am J Clin Nutr, 2007

How Cooking Changes Nutrients

Estimated percentage of each nutrient retained after cooking, based on USDA retention factors for the “Fresh Fruits” food category. Values of 100% mean no loss; lower values indicate nutrients lost to heat, water, or oxidation.

Key insights
⚡Vitamin C loses up to 30% when sautéed. Baked retains 80%.
⚡Folate loses up to 50% when sautéed. Baked retains 60%.

Source: USDA Table of Nutrient Retention Factors, Release 6 (2007). Retention values are category-level averages — actual retention depends on cooking time, temperature, and water volume.

USDA Retention Factors

Environmental Impact

Environmental footprint per kilogram of food produced. Data represents the global average for the “Other Fruit” category.

1.1
kg CO₂e / kg
Low Impact
1.4
m² land / kg
Land Use
153
L water / kg
Water Use
4.8
g SO₂e / kg
Acidification
How this compares (GHG emissions)
Potatoes (0.5)Chicken (9.9)Beef (99.5)
Greenhouse Gas Emissions1.1 kg CO₂e / kg
Land Use1.4 m² / kg
Water Use153 L / kg
Eutrophication3.6 g PO₄e / kg
Acidification4.8 g SO₂e / kg
⚠️ Important context about this data
  • Global averages: These figures are production-weighted averages from a meta-analysis of ~38,700 farms across 119 countries (Poore & Nemecek, 2018). Actual impact varies enormously by farming method, geography, and supply chain.
  • System boundary: Cradle-to-retail only — does not include consumer transport, home cooking energy, or food waste.
  • Soil carbon not included: This data does not account for soil carbon sequestration. Some argue that well-managed regenerative grazing partially offsets ruminant emissions; however, full lifecycle accounting — including methane, land-use change, and the opportunity cost of using land for grazing vs. reforestation — typically makes the net footprint of ruminant meat higher, not lower. This is especially relevant in temperate grassland regions like Ireland.
  • Not gospel: This data is informational and illustrative. It is useful for understanding relative magnitudes, but should not be treated as precise measurements for any individual product or farm.

Source: Poore & Nemecek (2018), Science 360(6392). Meta-analysis of ~38,700 farms, 119 countries, 46 product categories.

Global Supply: Fruits

Top 10 countries by per capita supply of the “Fruits” food group (kcal/capita/day, 2023). This is food group–level data from FAO Food Balance Sheets, not specific to this individual food.

1.
Dominican Republic
618
2.
Oman
424
3.
Uganda
422
4.
Guyana
416
5.
Sao Tome and Principe
366
6.
Saudi Arabia
352
7.
Papua New Guinea
317
8.
Dominica
308
9.
Albania
293
10.
Ghana
286

Global Supply Trend (1961–2023)

+38%
1961: 93 kcal2023: 128 kcal

Source: FAO Food Balance Sheets (2023). Supply = production + imports − exports − waste, converted to kcal/capita/day.

Frequently Asked Questions

How many calories are in Apricot nectar, canned, with added ascorbic acid?

Apricot nectar, canned, with added ascorbic acid contains 56.0 kcal per 100 grams, making it a low-calorie food. The energy comes from 0.17g of protein (1% of calories), 0.45g of fat (7%), and 13.6g of carbohydrates (97%). Carbohydrates are the primary energy source.

What is Apricot nectar, canned, with added ascorbic acid most nutritious for?

The standout nutrient in Apricot nectar, canned, with added ascorbic acid is Vitamin A (RAE), providing 322 µg per 100g (36% of the Daily Value). It is also a notable source of Vitamin C (33% DV). Our database tracks 71 individual nutrients for this food, allowing detailed comparison across vitamins, minerals, amino acids, and fatty acids.

Is Apricot nectar, canned, with added ascorbic acid high in protein?

At 0.17g per 100 grams, Apricot nectar, canned, with added ascorbic acid is not a significant source of protein. Pair with protein-rich foods like legumes, meat, fish, or dairy to meet daily protein needs.

How much fiber is in Apricot nectar, canned, with added ascorbic acid?

Apricot nectar, canned, with added ascorbic acid contains 0.10g of fiber per 100 grams, which is a small amount. To increase fiber intake, consider pairing with high-fiber foods such as legumes, whole grains, or vegetables.