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Nuts, hazelnuts or filberts

Nuts/Seeds Per 100 g · Per 100g serving
Data sources: 17 Foundation 70 SR Legacy
Contains: 🌰 Tree Nuts

Nuts, hazelnuts or filberts is a nut/seed, with a high energy density of 602 kcal per 100g. It is an excellent source of Manganese, Copper and Vitamin E, providing 263%, 157% and 100% of the Daily Value respectively. This nut/seed is a moderate protein source, rich in dietary fiber, high in fat. Nuts and seeds provide healthy fats, protein, fiber, and minerals including magnesium, zinc, and selenium. Their high nutrient density makes them a valuable component of heart-healthy diets. Our database tracks 87 nutrients for this food, plus insulin index, polyphenol profile, environmental footprint data.

602
Calories
kcal
13.5
Protein
g
53.5
Fat
g
26.5
Carbs
g
8.4
Fiber
g

Top Nutrients

💎
Manganese
6.1 mg
263% DV
💎
Copper
1.4 mg
157% DV
☀️
Vitamin E
15.0 mg
100% DV

Data for 87 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 10
NutrientPer 100gUnitPer Serving% DV
Water Foundation4.3g—
0%
Calories Foundation602kcal——
Energy (kJ) SR2,629kj——
Protein Foundation13.5g—
24%
Total Fat Foundation53.5g——
Carbohydrate Foundation26.5g—
20%
Fiber Foundation8.4g—
22%
Total Sugars SR4.3g——
Starch SR0.48g——
Ash Foundation2.2g——
Minerals 10
NutrientPer 100gUnitPer Serving% DV
Calcium Foundation135mg—
14%
Iron Foundation3.5mg—
43%
Magnesium Foundation156mg—
39%
Phosphorus Foundation321mg—
46%
Potassium Foundation636mg—
19%
Sodium Foundation0mg——
Zinc Foundation2.3mg—
21%
Copper Foundation1.4mg—
157%
Manganese Foundation6.1mg—
263%
Selenium Foundation0µg——
Vitamins 29
NutrientPer 100gUnitPer Serving% DV
Vitamin A (RAE) SR20.0µg—
2%
Vitamin A (IU) SR1.0IU——
Retinol SR0µg——
Beta-Carotene SR11.0µg——
Alpha-Carotene SR3.0µg——
Beta-Cryptoxanthin SR0µg——
Lycopene SR0µg——
Lutein + Zeaxanthin SR92.0µg——
Vitamin C SR6.3mg—
7%
Vitamin D SR0µg——
Vitamin D (IU) SR0IU——
Vitamin E SR15.0mg—
100%
Beta-Tocopherol SR0.33mg——
Gamma-Tocopherol SR0mg——
Delta-Tocopherol SR0mg——
Vitamin K1 SR14.2µg—
12%
Vitamin K2 (MK-4) SR0µg——
Thiamin (B1) SR0.64mg—
54%
Riboflavin (B2) SR0.11mg—
9%
Niacin (B3) SR1.8mg—
11%
Pantothenic Acid (B5) SR0.92mg—
18%
Vitamin B6 SR0.56mg—
43%
Folate SR113µg—
28%
Folic Acid SR0µg——
Folate (food) SR113µg——
Folate (DFE) SR113µg——
Vitamin B12 SR0µg——
Choline SR45.6mg—
8%
Betaine SR0.40mg——
Fatty Acids 7
NutrientPer 100gUnitPer Serving% DV
Saturated Fat SR4.5g——
Monounsaturated Fat SR45.7g——
Polyunsaturated Fat SR7.9g——
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) SR3.1g——
Stearic Acid (18:0) SR1.3g——
Linoleic Acid (18:2) SR7.8g—
46%
Linolenic Acid (18:3) SR0.09g——
Amino Acids 18
NutrientPer 100gUnitPer Serving% DV
Tryptophan SR0.19g——
Threonine SR0.50g——
Isoleucine SR0.55g——
Leucine SR1.1g——
Lysine SR0.42g——
Methionine SR0.22g——
Cystine SR0.28g——
Phenylalanine SR0.66g——
Tyrosine SR0.36g——
Valine SR0.70g——
Arginine SR2.2g——
Histidine SR0.43g——
Alanine SR0.73g——
Aspartic Acid SR1.7g——
Glutamic Acid SR3.7g——
Glycine SR0.72g——
Proline SR0.56g——
Serine SR0.73g——
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.

37
NRF9.3 Score
Moderate · 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

Vitamin C + Iron●●●

Vitamin C dramatically enhances non-heme iron absorption by reducing Fe³⁺ to Fe²⁺ in the gut. Adding 75 mg vitamin C to a meal can increase iron absorption 3–4 fold.

Hallberg et al., Am J Clin Nutr, 1989

Dietary Fat + Vitamin E●●●

Vitamin E is fat-soluble and absorbed alongside dietary fats via micelle formation in the small intestine. Low-fat diets reduce vitamin E absorption.

Traber, Free Radic Biol Med, 2007

Dietary Fat + Vitamin K●●●

Vitamin K is fat-soluble. Absorption increases significantly when consumed with dietary fat, particularly for phylloquinone (K1) from plant sources.

Gijsbers et al., Br J Nutr, 1996

Vitamin C + Vitamin E●●●

Vitamin C regenerates oxidised vitamin E (tocopheroxyl radical) back to its active form, extending its antioxidant function in cell membranes.

Niki, Free Radic Biol Med, 2014

Vitamin K + Calcium●●●

Vitamin K activates osteocalcin and matrix GLA protein, which direct calcium into bones and away from soft tissues (arteries). Works synergistically with vitamin D.

Kidd, Altern Med Rev, 2010

⚠ Antagonisms — nutrients that compete

Calcium vs Iron●●●

Calcium inhibits both heme and non-heme iron absorption when consumed in the same meal. The effect is dose-dependent, with significant inhibition at 300+ mg calcium.

Hallberg et al., Am J Clin Nutr, 1991

Zinc vs Copper●●●

High zinc intake induces metallothionein in enterocytes, which traps copper and blocks its absorption. Prolonged high-dose zinc can cause copper deficiency.

Prasad et al., JAMA, 1978; Fosmire, Am J Clin Nutr, 1990

Zinc vs Iron●●●

Zinc and non-heme iron compete for the same intestinal transporter (DMT1). High doses of one can reduce absorption of the other when taken simultaneously.

Rossander-Hulten et al., Am J Clin Nutr, 1991

Calcium vs Magnesium●●●

Very high calcium intake can reduce magnesium absorption by competing for shared intestinal transport pathways. A calcium:magnesium ratio above 2.6:1 may impair magnesium status.

Rosanoff et al., Nutr Rev, 2012

Fiber vs Iron●●●

Phytates in high-fibre foods (whole grains, legumes) bind non-heme iron and reduce its bioavailability. Soaking, sprouting, and fermentation reduce phytate content.

Hurrell & Egli, Int J Vitam Nutr Res, 2010

Amino Acid Profile

Essential amino acid composition compared to the WHO/FAO adult reference pattern. The Amino Acid Score indicates protein quality — 100 means all essential amino acid requirements are met.

69
Amino Acid Score
Moderate
Lysine
Limiting Amino Acid
18
Amino Acids Tracked

Tip: The limiting amino acid is Lysine. Pair with legumes, dairy, and soy for a complete amino acid profile.

All Amino Acids (18)
Amino Acidg / 100gmg / g protein
Tryptophan0.1914.3
Threonine0.5036.8
Isoleucine0.5540.4
Leucine1.178.8
Lysine0.4231.1
Methionine0.2216.4
Cystine0.2820.5
Phenylalanine0.6649.1
Tyrosine0.3626.8
Valine0.7051.9
Arginine2.2163.9
Histidine0.4332.0
Alanine0.7354.1
Aspartic Acid1.7124.4
Glutamic Acid3.7274.9
Glycine0.7253.7
Proline0.5641.6
Serine0.7354.5

Fatty Acid Profile

Breakdown of fat types per 100g. A healthy fat profile favours unsaturated fats (mono + poly) and a balanced omega-3 to omega-6 ratio.

4.5g
Saturated
45.7g
Monounsaturated
7.9g
Polyunsaturated
Omega Fatty Acids
Linoleic acid (18:2 n-6)7.8 g

How Cooking Changes Nutrients

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

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

Insulin Response

The Insulin Index (II) measures the actual insulin response to food on a scale where white bread = 100. Unlike the Glycemic Index (which only measures blood sugar), the II captures the full hormonal response — including the effect of protein and fat on insulin secretion. This is why high-protein foods like meat and dairy can have significant insulin scores despite having low or zero GI values.

18
Insulin Index
Low Insulin Response
Insulin Index Scale 18
0 Low ≤30 Mod ≤60 High ≤100 120
Category ●●● Assigned from measured food category

Source: Holt et al. 1997; Bao et al. 2016; Bell 2014

Polyphenols & Bioactive Compounds

Polyphenols are plant-derived compounds with antioxidant properties. Higher intake is associated with reduced cardiovascular risk and improved gut health.

495
Total Polyphenols
mg per 100g · Rich Source
2
Polyphenol Classes
identified in this food
Flavonoids16 mg3%
Phenolic Acids479 mg97%

Processing Impact on Polyphenols

How common cooking methods affect polyphenol content in nuts & seeds. Retention % is relative to the raw/unprocessed food.

Best Method
Baking/Roasting
92% retained
Most Loss
Blanching
62% retained
🔥
Baking/Roasting92%
Roasting at moderate temperatures preserves most polyphenols; can≈455 mg
🍟
Deep frying78%
Oil roasting preserves most polyphenols≈386 mg
🫧
Blanching62%
Skin removal during blanching loses 30-50% of flavonoids concentr≈307 mg

Health Associations

Research-backed associations for the polyphenol classes found in this food. Evidence strength rated from systematic reviews and meta-analyses.

🔵
↑ Antioxidant capacityStrong
Phenolic Acids: Chlorogenic acid (coffee) and ferulic acid (grains) show consistent antioxidant
🔵
↑ Glucose metabolismModerate
Phenolic Acids: Chlorogenic acid may slow glucose absorption and improve insulin sensitivity
💜
↓ Cardiovascular disease riskModerate
Flavonoids: Meta-analyses of prospective cohorts show 10-20% lower CVD risk with higher flav
💜
↓ Blood pressureModerate
Flavonoids: RCTs show modest systolic BP reductions (2-5 mmHg) with flavanol-rich cocoa and
⚠ Most evidence is from observational studies and in vitro research. Randomized controlled trials are limited. Individual responses vary based on gut microbiome, genetics, and overall diet. Associations do not prove causation.

Polyphenol data matched from: “Hazelnut, raw” · ●●● high confidence

Source: Phenol-Explorer 3.6 (INRA, 2023) · Retention: Rothwell 2013, Palermo 2014 · Health: Del Bo' 2019, Grosso 2017

Environmental Impact

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

0.43
kg CO₂e / kg
Very Low Impact
13.0
m² land / kg
Land Use
4,134
L water / kg
Water Use
3.3
g SO₂e / kg
Acidification
How this compares (GHG emissions)
Potatoes (0.5)Chicken (9.9)Beef (99.5)
Greenhouse Gas Emissions0.43 kg CO₂e / kg
Land Use13.0 m² / kg
Water Use4,134 L / kg
Eutrophication19.2 g PO₄e / kg
Acidification3.3 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: Tree Nuts

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

1.
Maldives
129
2.
Türkiye
108
3.
Kyrgyzstan
103
4.
Greece
86
5.
Libya
86
6.
Guinea-Bissau
81
7.
Bosnia and Herzegovina
79
8.
Iran (Islamic Republic of)
73
9.
Switzerland
71
10.
Lebanon
68

Global Supply Trend (1961–2023)

+75%
1961: 12 kcal2023: 21 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 Nuts, hazelnuts or filberts?

Nuts, hazelnuts or filberts contains 602 kcal per 100 grams, making it a very calorie-dense food. The energy comes from 13.5g of protein (9% of calories), 53.5g of fat (80%), and 26.5g of carbohydrates (18%). Fat is the primary energy source.

What is Nuts, hazelnuts or filberts most nutritious for?

The standout nutrient in Nuts, hazelnuts or filberts is Manganese, providing 6.1 mg per 100g (263% of the Daily Value). It is also a notable source of Copper (157% DV). Our database tracks 87 individual nutrients for this food, allowing detailed comparison across vitamins, minerals, amino acids, and fatty acids.

Is Nuts, hazelnuts or filberts high in protein?

Nuts, hazelnuts or filberts provides 13.5g of protein per 100 grams — a moderate amount. Protein contributes 9% of its calories.

How much fiber is in Nuts, hazelnuts or filberts?

Yes, Nuts, hazelnuts or filberts is rich in dietary fiber with 8.4g per 100 grams. The daily recommended intake is 25-38g, so a serving contributes meaningfully toward that goal. Dietary fiber supports digestive health and is associated with reduced risk of cardiovascular disease.

Does Nuts, hazelnuts or filberts contain polyphenols?

Yes, Nuts, hazelnuts or filberts contains approximately 495 mg of polyphenols per 100g, primarily from the high class. Polyphenols are bioactive plant compounds associated with antioxidant properties. Their retention can vary with cooking and processing methods — see the processing impact section above for details.

What is the insulin index of Nuts, hazelnuts or filberts?

Nuts, hazelnuts or filberts has a low insulin response (II: 18) (estimated from macronutrient composition) on the insulin index scale (white bread = 100). This means it triggers relatively little insulin secretion, which may be relevant for those managing insulin sensitivity or following low-insulin dietary strategies. Note that the insulin index can differ substantially from the glycemic index — dairy products and high-protein foods often have higher insulin responses than their GI would suggest.