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Aceites

Aceite de Abisinia

También: Aceite de crambe.

Calcular una pastilla 100 % de aceite de abisinia

El índice de saponificación de aquí es derivado, no publicado. Ningún documento primario que podamos usar da uno para aceite de abisinia, así que se calcula a partir de la composición de ácidos grasos de esta misma ficha: la longitud de las cadenas fija la masa molar, que fija cuánto hidróxido consume un gramo de grasa. Eso da 169.8 mg KOH/g, ±3 %.

Eso es estequiometría sobre una composición medida y no una suposición, y está casi tan bien determinado como una cifra publicada: comprobado contra los 35 aceites del Codex en los que los dos campos vienen de la misma norma, el error mediano del método es del 0,90 % y su percentil 90 del 2,74 %, sin sesgo apreciable. La página de fórmulas enseña las cuentas. Si tiene un certificado de análisis de su lote, introduzca su valor medido en la calculadora y esta estimación se deja de lado.

Valores publicados

Índice de saponificaciónno publicado
Derivado de la composición169.8 ± 3 % mg KOH/g
Usado por la calculadora169.8 mg KOH/g (derivado)
SAP para NaOH0.1211 g/g
Índice de yodo88 g I₂/100 g
INS (SAP − índice de yodo)82
Punto de fusión
Materia insaponificable

Una pastilla hecha 100 % de aceite de abisinia

Dureza 5 por debajo de 29–54
Poder limpiador 0 por debajo de 12–22
Acondicionamiento 27 por debajo de 44–69
Espuma burbujeante 0 por debajo de 14–46
Espuma cremosa 5 por debajo de 16–48

Cualidades convencionales sumadas a partir de los grupos de ácidos grasos; una pastilla de un solo aceite es una referencia, no una receta.

Perfil de ácidos grasos

Ácido grasoRango publicado, %Usado
Ácido palmítico C16:0 · saturados 3.4 3.4
Ácido esteárico C18:0 · saturados 1.1 1.1
Ácido oleico C18:1 17.8 17.8
Ácido linoleico C18:2 6.1 6.1
Ácido α-linolénico C18:3 n-3 2.8 2.8
Ácido araquídico C20:0 · saturados 1.7 1.7
Ácido gadoleico C20:1 6.7 6.7
Ácido behénico C22:0 · saturados 2.14–3.7 (typ. 3.7) 3.7
Ácido erúcico C22:1 56.23–63.77 (typ. 56.7) 56.7

De dónde salen estos números

Las notas con fuente que aparecen debajo, y los títulos de los documentos que citan, se mantienen en su idioma original. Una cita traducida no se puede consultar, y un resumen técnico traducido ya no es el resumen que se contrastó con el documento.

Faculdade Dr. Francisco Maeda / FE-FAFRAM (Nucleus), open access; PDF served by Dialnet (Universidad de La Rioja)Caracterizacao fisico-quimica do oleo e do biodiesel de Crambe abyssinica Hochst (Samir Paulo Jasper, Marco Antonio Martin Biaggioni, Paulo Roberto Arbex Silva; Nucleus 2013, 10(2):183-190; DOI 10.3738/1982.2278.854) · documento fechado el 2013-10 · consultado el 2026-09-21

Tabela 1 physical and chemical parameters of crambe oil (density, kinematic viscosity, iodine value 88 gI2/100g, acid value 3.64 mg KOH/g, water content); Tabela 2 fatty-acid composition (%). The journal's own site, nucleus.feituverava.com.br, did not respond on 2026-09-21, so the DOI target could not be opened; the Dialnet copy of the same article PDF was read instead.

Embrapa Agroenergia (Empresa Brasileira de Pesquisa Agropecuaria), repository AliceQuantificacao e caracterizacao de oleos de canola, carinata e crambe produzidos no Centro-Oeste brasileiro (Laura Guimaraes Ciciliano, Leticia Karen dos Santos, Bruno Galveas Laviola, Simone Palma Favaro), in VII Encontro de Pesquisa e Inovacao da Embrapa Agroenergia, p. 72-76 · consultado el 2026-09-21

Crambe variety FMS 1 Brilhante, Planaltina DF, 2022 safrinha: oil content 35.13 %, erucic acid 56.23-56.3 %, acidity 0.42 %, Rancimat oxidative stability 25.46 h. Its Tabela 2 extracts with misaligned columns and was not transcribed acid-by-acid; only the erucic figure, which the running text and conclusion both state, is used.

AOCS / Springer (Journal of the American Oil Chemists' Society) - publisher-deposited abstract onlyFull Characterisation of Crambe abyssinica Hochst. Seed Oil (S. Lalas, O. Gortzi, V. Athanasiadis, E. Dourtoglou, V. Dourtoglou; JAOCS 2012, 89(12):2253-2258; DOI 10.1007/s11746-012-2122-y) · documento fechado el 2012-12 · consultado el 2026-09-21

Full text is paywalled; only the abstract deposited with Crossref was read. It supplies C22:1 63.77 %, C22:0 2.14 %, seed oil content ~30 %, beta-sitosterol 51.93 % of sterols, tocopherols 7.67/125.04/3.99 mg/kg, Rancimat induction 8.83 h at 110 C, DSC peak -20.94 C. It states that a saponification value was determined but does not print it.

ERUCIC ACID IS THE POINT OF THIS OIL and the figure here is measured, not inherited: Tabela 2 of Jasper, Biaggioni & Silva, Nucleus 10(2):183-190 (2013), a Brazilian peer-reviewed characterisation of Crambe abyssinica Hochst. oil and its biodiesel, gives palmitic 3.4, stearic 1.1, oleic 17.8, linoleic 6.1, linolenic 2.8, arachidic 1.7, eicosenoic (C20:1) 6.7, behenic 3.7 and erucic (C22:1) 56.7 %, with the paper's own saturated/unsaturated totals of 9.9 and 90.1 % - the nine acids sum to exactly 100.0 % and reproduce both totals, which is how the row/value assignment was checked (the PDF's table columns extract out of order). The running text states the erucic figure independently: 'o acido erucico correspondeu a 56,7% da composicao dos acidos graxos'. Corroborated by Embrapa Agroenergia, which measured 56.23-56.3 % erucic in crambe variety FMS 1 Brilhante grown at Planaltina, DF (2022 safrinha), and by the abstract of Lalas et al., JAOCS 89(12):2253-2258 (2012), which reports 63.77 % C22:1 and 2.14 % C22:0 in a Greek hexane-extracted crambe oil. So erucic ranges roughly 56-64 % by cultivar and season; 56.7 % is used as typical because it is the one figure that comes with a complete, self-consistent profile. NO SAPONIFICATION VALUE IS RECORDED, and that is deliberate. Jasper et al. measured density (911.3 kg/m3), kinematic viscosity (49.02 mm2/s), iodine value (88 g I2/100 g), acid value (3.64 mg KOH/g) and water content (803.4 mg/kg) but not the saponification value. Lalas et al. state in their abstract that they determined one, but the number appears only in the paywalled full text, and the abstract does not print it. Every other figure on offer traces back to a soap calculator or a supplier page, which this dataset will not copy. The calculator will derive a value from the profile instead: the recorded composition implies about 170 mg KOH/g. WHAT MATTERS FOR SOAP: that derived figure is far lower than any common oil because more than half the fat is a 22-carbon acid - erucic weighs 338 g/mol against oleic's 282, so a gram of abyssinian oil contains fewer ester bonds and eats correspondingly less lye. Treating it as 'another liquid oil' at ~190 will over-lye the batch by roughly 10 %. The measured iodine value of 88 is moderate and matches the profile (one double bond on a long chain contributes little iodine per gram), which is why the oil is oxidatively stable - Embrapa measured a 25.5 h Rancimat induction period, nearly three times canola's 8.7 h in the same run. Behenic at 2-4 % and no lignoceric were reported by Jasper; Lalas additionally found nervonic acid (C24:1), which has no key in this schema and is not recorded. Lalas reports a single DSC thermal peak at -20.94 C; because the abstract does not say whether that is the melting or the crystallisation event, meltingPointC is left null rather than guessed. Unsaponifiable matter was not measured in any document opened. INCI not verified on CosIng in this session, left null.

Esta ficha forma parte de la base de datos abierta de ingredientes (ODbL). ¿Ha encontrado un error o una fuente primaria mejor? El conjunto de datos está en GitHub; las correcciones con un enlace al documento son bienvenidas.