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0094000743401

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Barcode: 0094000743401 (EAN / EAN-13) 094000743401 (UPC / UPC-A)

Countries where sold: United States

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Health

Ingredients

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    42 ingredients


    ingredients/ingrédients/ingre - dientes: water/eau, glycerin, ethyl - hexyl palmitate, mineral oil/huile minérale, stearic acid, polysorbate 60, dimethicone, caprylic/capric triglyc - eride, simmondsia chinensis (jojoba) seed oil, tocopheryl acetate, glyceryl stearate, sorbitan stearate, cetyl alcohol, petrolatum, phenoxyethanol, imidazolidinyl urea, hydrogenated polyisobutene, carbomer, disodium edta, trimethylsiloxysilicate, potassium hy - droxide, nylon-12, acrylates/c10-30 alkyl acrylate crosspolymer, parfum/fragrance. u.s.a./é.-u./ee. uu.:

Food processing

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    Ultra processed foods


    Elements that indicate the product is in the 4 - Ultra processed food and drink products group:

    • Additive: E422 - Glycerol
    • Additive: E435 - Polyoxyethylene sorbitan monostearate
    • Additive: E900 - Dimethylpolysiloxane and Methylphenylpolysiloxane
    • Additive: E900a - Dimethyl polysiloxane
    • Additive: E905 - Synthetic wax

    Food products are classified into 4 groups according to their degree of processing:

    1. Unprocessed or minimally processed foods
    2. Processed culinary ingredients
    3. Processed foods
    4. Ultra processed foods

    The determination of the group is based on the category of the product and on the ingredients it contains.

    Learn more about the NOVA classification

Additives

  • E422 - Glycerol


    Glycerol: Glycerol -; also called glycerine or glycerin; see spelling differences- is a simple polyol compound. It is a colorless, odorless, viscous liquid that is sweet-tasting and non-toxic. The glycerol backbone is found in all lipids known as triglycerides. It is widely used in the food industry as a sweetener and humectant and in pharmaceutical formulations. Glycerol has three hydroxyl groups that are responsible for its solubility in water and its hygroscopic nature.
    Source: Wikipedia
  • E570 - Fatty acids


    Fatty acid: In chemistry, particularly in biochemistry, a fatty acid is a carboxylic acid with a long aliphatic chain, which is either saturated or unsaturated. Most naturally occurring fatty acids have an unbranched chain of an even number of carbon atoms, from 4 to 28. Fatty acids are usually not found per se in organisms, but instead as three main classes of esters: triglycerides, phospholipids, and cholesterol esters. In any of these forms, fatty acids are both important dietary sources of fuel for animals and they are important structural components for cells.
    Source: Wikipedia
  • E900 - Dimethylpolysiloxane and Methylphenylpolysiloxane


    Polydimethylsiloxane: Polydimethylsiloxane -PDMS- belongs to a group of polymeric organosilicon compounds that are commonly referred to as silicones. PDMS is the most widely used silicon-based organic polymer, and is particularly known for its unusual rheological -or flow- properties. PDMS is optically clear, and, in general, inert, non-toxic, and non-flammable. It is also called dimethylpolysiloxane or dimethicone and is one of several types of silicone oil -polymerized siloxane-. Its applications range from contact lenses and medical devices to elastomers; it is also present in shampoos -as dimethicone makes hair shiny and slippery-, food -antifoaming agent-, caulking, lubricants and heat-resistant tiles.
    Source: Wikipedia
  • E900a - Dimethyl polysiloxane


    Polydimethylsiloxane: Polydimethylsiloxane -PDMS- belongs to a group of polymeric organosilicon compounds that are commonly referred to as silicones. PDMS is the most widely used silicon-based organic polymer, and is particularly known for its unusual rheological -or flow- properties. PDMS is optically clear, and, in general, inert, non-toxic, and non-flammable. It is also called dimethylpolysiloxane or dimethicone and is one of several types of silicone oil -polymerized siloxane-. Its applications range from contact lenses and medical devices to elastomers; it is also present in shampoos -as dimethicone makes hair shiny and slippery-, food -antifoaming agent-, caulking, lubricants and heat-resistant tiles.
    Source: Wikipedia
  • E905 - Synthetic wax


    Microcrystalline wax: Microcrystalline waxes are a type of wax produced by de-oiling petrolatum, as part of the petroleum refining process. In contrast to the more familiar paraffin wax which contains mostly unbranched alkanes, microcrystalline wax contains a higher percentage of isoparaffinic -branched- hydrocarbons and naphthenic hydrocarbons. It is characterized by the fineness of its crystals in contrast to the larger crystal of paraffin wax. It consists of high molecular weight saturated aliphatic hydrocarbons. It is generally darker, more viscous, denser, tackier and more elastic than paraffin waxes, and has a higher molecular weight and melting point. The elastic and adhesive characteristics of microcrystalline waxes are related to the non-straight chain components which they contain. Typical microcrystalline wax crystal structure is small and thin, making them more flexible than paraffin wax. It is commonly used in cosmetic formulations. Microcrystalline waxes when produced by wax refiners are typically produced to meet a number of ASTM specifications. These include congeal point -ASTM D938-, needle penetration -D1321-, color -ASTM D6045-, and viscosity -ASTM D445-. Microcrystalline waxes can generally be put into two categories: "laminating" grades and "hardening" grades. The laminating grades typically have a melt point of 140-175 F -60 - 80 oC- and needle penetration of 25 or above. The hardening grades will range from about 175-200 F -80 - 93 oC-, and have a needle penetration of 25 or below. Color in both grades can range from brown to white, depending on the degree of processing done at the refinery level. Microcrystalline waxes are derived from the refining of the heavy distillates from lubricant oil production. This by-product must then be de-oiled at a wax refinery. Depending on the end use and desired specification, the product may then have its odor removed and color removed -which typically starts as a brown or dark yellow-. This is usually done by means of a filtration method or by hydro-treating the wax material.
    Source: Wikipedia
  • E905a - Mineral oil


    Microcrystalline wax: Microcrystalline waxes are a type of wax produced by de-oiling petrolatum, as part of the petroleum refining process. In contrast to the more familiar paraffin wax which contains mostly unbranched alkanes, microcrystalline wax contains a higher percentage of isoparaffinic -branched- hydrocarbons and naphthenic hydrocarbons. It is characterized by the fineness of its crystals in contrast to the larger crystal of paraffin wax. It consists of high molecular weight saturated aliphatic hydrocarbons. It is generally darker, more viscous, denser, tackier and more elastic than paraffin waxes, and has a higher molecular weight and melting point. The elastic and adhesive characteristics of microcrystalline waxes are related to the non-straight chain components which they contain. Typical microcrystalline wax crystal structure is small and thin, making them more flexible than paraffin wax. It is commonly used in cosmetic formulations. Microcrystalline waxes when produced by wax refiners are typically produced to meet a number of ASTM specifications. These include congeal point -ASTM D938-, needle penetration -D1321-, color -ASTM D6045-, and viscosity -ASTM D445-. Microcrystalline waxes can generally be put into two categories: "laminating" grades and "hardening" grades. The laminating grades typically have a melt point of 140-175 F -60 - 80 oC- and needle penetration of 25 or above. The hardening grades will range from about 175-200 F -80 - 93 oC-, and have a needle penetration of 25 or below. Color in both grades can range from brown to white, depending on the degree of processing done at the refinery level. Microcrystalline waxes are derived from the refining of the heavy distillates from lubricant oil production. This by-product must then be de-oiled at a wax refinery. Depending on the end use and desired specification, the product may then have its odor removed and color removed -which typically starts as a brown or dark yellow-. This is usually done by means of a filtration method or by hydro-treating the wax material.
    Source: Wikipedia
  • E905b - Petroleum jelly


    Microcrystalline wax: Microcrystalline waxes are a type of wax produced by de-oiling petrolatum, as part of the petroleum refining process. In contrast to the more familiar paraffin wax which contains mostly unbranched alkanes, microcrystalline wax contains a higher percentage of isoparaffinic -branched- hydrocarbons and naphthenic hydrocarbons. It is characterized by the fineness of its crystals in contrast to the larger crystal of paraffin wax. It consists of high molecular weight saturated aliphatic hydrocarbons. It is generally darker, more viscous, denser, tackier and more elastic than paraffin waxes, and has a higher molecular weight and melting point. The elastic and adhesive characteristics of microcrystalline waxes are related to the non-straight chain components which they contain. Typical microcrystalline wax crystal structure is small and thin, making them more flexible than paraffin wax. It is commonly used in cosmetic formulations. Microcrystalline waxes when produced by wax refiners are typically produced to meet a number of ASTM specifications. These include congeal point -ASTM D938-, needle penetration -D1321-, color -ASTM D6045-, and viscosity -ASTM D445-. Microcrystalline waxes can generally be put into two categories: "laminating" grades and "hardening" grades. The laminating grades typically have a melt point of 140-175 F -60 - 80 oC- and needle penetration of 25 or above. The hardening grades will range from about 175-200 F -80 - 93 oC-, and have a needle penetration of 25 or below. Color in both grades can range from brown to white, depending on the degree of processing done at the refinery level. Microcrystalline waxes are derived from the refining of the heavy distillates from lubricant oil production. This by-product must then be de-oiled at a wax refinery. Depending on the end use and desired specification, the product may then have its odor removed and color removed -which typically starts as a brown or dark yellow-. This is usually done by means of a filtration method or by hydro-treating the wax material.
    Source: Wikipedia

Ingredients analysis

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    Vegan status unknown


    Unrecognized ingredients: Ingredients, Ingredients, Ingre, Dientes, Eau, Ethyl, Hexyl-palmitate, Huile-minerale, Caprylic, Capric-triglyc, Eride, Simmondsia-chinensis, Jojoba, Tocopheryl-acetate, Glyceryl-stearate, Sorbitan-stearate, Cetyl-alcohol, Phenoxyethanol, Imidazolidinyl-urea, Hydrogenated-polyisobutene, E1210, Disodium-edta, Trimethylsiloxysilicate, Potassium-hy, Droxide, Nylon-12, Acrylates, C10-30-alkyl-acrylate-crosspolymer, Parfum, Fragrance, U-s-a, E-u, Ee, Uu

    Some ingredients could not be recognized.

    We need your help!

    You can help us recognize more ingredients and better analyze the list of ingredients for this product and others:

    • Edit this product page to correct spelling mistakes in the ingredients list, and/or to remove ingredients in other languages and sentences that are not related to the ingredients.
    • Add new entries, synonyms or translations to our multilingual lists of ingredients, ingredient processing methods, and labels.

    If you would like to help, join the #ingredients channel on our Slack discussion space and/or learn about ingredients analysis on our wiki. Thank you!

  • icon

    Vegetarian status unknown


    Unrecognized ingredients: Ingredients, Ingredients, Ingre, Dientes, Eau, Ethyl, Hexyl-palmitate, Huile-minerale, Caprylic, Capric-triglyc, Eride, Simmondsia-chinensis, Jojoba, Tocopheryl-acetate, Glyceryl-stearate, Sorbitan-stearate, Cetyl-alcohol, Phenoxyethanol, Imidazolidinyl-urea, Hydrogenated-polyisobutene, E1210, Disodium-edta, Trimethylsiloxysilicate, Potassium-hy, Droxide, Nylon-12, Acrylates, C10-30-alkyl-acrylate-crosspolymer, Parfum, Fragrance, U-s-a, E-u, Ee, Uu

    Some ingredients could not be recognized.

    We need your help!

    You can help us recognize more ingredients and better analyze the list of ingredients for this product and others:

    • Edit this product page to correct spelling mistakes in the ingredients list, and/or to remove ingredients in other languages and sentences that are not related to the ingredients.
    • Add new entries, synonyms or translations to our multilingual lists of ingredients, ingredient processing methods, and labels.

    If you would like to help, join the #ingredients channel on our Slack discussion space and/or learn about ingredients analysis on our wiki. Thank you!

The analysis is based solely on the ingredients listed and does not take into account processing methods.
  • icon

    Details of the analysis of the ingredients

    We need your help!

    Some ingredients could not be recognized.

    We need your help!

    You can help us recognize more ingredients and better analyze the list of ingredients for this product and others:

    • Edit this product page to correct spelling mistakes in the ingredients list, and/or to remove ingredients in other languages and sentences that are not related to the ingredients.
    • Add new entries, synonyms or translations to our multilingual lists of ingredients, ingredient processing methods, and labels.

    If you would like to help, join the #ingredients channel on our Slack discussion space and/or learn about ingredients analysis on our wiki. Thank you!

    : ingredients, ingrédients, ingre, dientes (water, eau), glycerin, ethyl, hexyl palmitate, mineral oil, huile minérale, stearic acid, polysorbate 60, dimethicone, caprylic, capric triglyc, eride, simmondsia chinensis (jojoba), oil, tocopheryl acetate, glyceryl stearate, sorbitan stearate, cetyl alcohol, petrolatum, phenoxyethanol, imidazolidinyl urea, hydrogenated polyisobutene, carbomer, disodium edta, trimethylsiloxysilicate, potassium hy, droxide, nylon-12, acrylates, c10-30 alkyl acrylate crosspolymer, parfum, fragrance, u.s.a, é.-u, ee, uu
    1. ingredients -> en:ingredients - percent_min: 2.56410256410256 - percent_max: 100
    2. ingrédients -> en:ingredients - percent_min: 0 - percent_max: 50
    3. ingre -> en:ingre - percent_min: 0 - percent_max: 33.3333333333333
    4. dientes -> en:dientes - percent_min: 0 - percent_max: 25
      1. water -> en:water - vegan: yes - vegetarian: yes - ciqual_food_code: 18066 - percent_min: 0 - percent_max: 25
      2. eau -> en:eau - percent_min: 0 - percent_max: 12.5
    5. glycerin -> en:e422 - vegan: maybe - vegetarian: maybe - percent_min: 0 - percent_max: 20
    6. ethyl -> en:ethyl - percent_min: 0 - percent_max: 16.6666666666667
    7. hexyl palmitate -> en:hexyl-palmitate - percent_min: 0 - percent_max: 14.2857142857143
    8. mineral oil -> en:e905a - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 12.5
    9. huile minérale -> en:huile-minerale - percent_min: 0 - percent_max: 11.1111111111111
    10. stearic acid -> en:e570 - vegan: maybe - vegetarian: maybe - percent_min: 0 - percent_max: 10
    11. polysorbate 60 -> en:e435 - vegan: maybe - vegetarian: maybe - percent_min: 0 - percent_max: 9.09090909090909
    12. dimethicone -> en:e900a - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 8.33333333333333
    13. caprylic -> en:caprylic - percent_min: 0 - percent_max: 7.69230769230769
    14. capric triglyc -> en:capric-triglyc - percent_min: 0 - percent_max: 7.14285714285714
    15. eride -> en:eride - percent_min: 0 - percent_max: 6.66666666666667
    16. simmondsia chinensis -> en:simmondsia-chinensis - percent_min: 0 - percent_max: 6.25
      1. jojoba -> en:jojoba - percent_min: 0 - percent_max: 6.25
    17. oil -> en:oil - vegan: maybe - vegetarian: maybe - from_palm_oil: maybe - percent_min: 0 - percent_max: 5.88235294117647
    18. tocopheryl acetate -> en:tocopheryl-acetate - percent_min: 0 - percent_max: 5.55555555555556
    19. glyceryl stearate -> en:glyceryl-stearate - percent_min: 0 - percent_max: 5.26315789473684
    20. sorbitan stearate -> en:sorbitan-stearate - percent_min: 0 - percent_max: 5
    21. cetyl alcohol -> en:cetyl-alcohol - percent_min: 0 - percent_max: 4.76190476190476
    22. petrolatum -> en:e905b - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 4.54545454545455
    23. phenoxyethanol -> en:phenoxyethanol - percent_min: 0 - percent_max: 4.34782608695652
    24. imidazolidinyl urea -> en:imidazolidinyl-urea - percent_min: 0 - percent_max: 4.16666666666667
    25. hydrogenated polyisobutene -> en:hydrogenated-polyisobutene - percent_min: 0 - percent_max: 4
    26. carbomer -> en:e1210 - percent_min: 0 - percent_max: 3.84615384615385
    27. disodium edta -> en:disodium-edta - percent_min: 0 - percent_max: 3.7037037037037
    28. trimethylsiloxysilicate -> en:trimethylsiloxysilicate - percent_min: 0 - percent_max: 3.57142857142857
    29. potassium hy -> en:potassium-hy - percent_min: 0 - percent_max: 3.44827586206897
    30. droxide -> en:droxide - percent_min: 0 - percent_max: 3.33333333333333
    31. nylon-12 -> en:nylon-12 - percent_min: 0 - percent_max: 3.2258064516129
    32. acrylates -> en:acrylates - percent_min: 0 - percent_max: 3.125
    33. c10-30 alkyl acrylate crosspolymer -> en:c10-30-alkyl-acrylate-crosspolymer - percent_min: 0 - percent_max: 3.03030303030303
    34. parfum -> en:parfum - percent_min: 0 - percent_max: 2.94117647058824
    35. fragrance -> en:fragrance - percent_min: 0 - percent_max: 2.94117647058824
    36. u.s.a -> en:u-s-a - percent_min: 0 - percent_max: 2.77777777777778
    37. é.-u -> en:e-u - percent_min: 0 - percent_max: 2.77777777777778
    38. ee -> en:ee - percent_min: 0 - percent_max: 2.63157894736842
    39. uu -> en:uu - percent_min: 0 - percent_max: 2.63157894736842

Nutrition

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    Nutrition facts


    Nutrition facts As sold
    for 100 g / 100 ml
    Fat ?
    Carbohydrates ?
    Proteins ?
    Fruits‚ vegetables‚ nuts and rapeseed‚ walnut and olive oils (estimate from ingredients list analysis) 0 %

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