Inicio > Matemáticas y ciencia > Química > Hydrolyse, séparation et purification des acides gras pour les bioproduits
Hydrolyse, séparation et purification des acides gras pour les bioproduits

Hydrolyse, séparation et purification des acides gras pour les bioproduits

Bashar Mudhaffar Abdullah / Hasniza Zaman Huri / Nany Hairunisa

59,08 €
IVA incluido
Disponible
Editorial:
KS OmniScriptum Publishing
Año de edición:
2025
Materia
Química
ISBN:
9786209347399
59,08 €
IVA incluido
Disponible
Añadir a favoritos

L’huile de graines de Jatropha curcas contient principalement des acides gras tels que l’acide palmitique (13,89 %), l’acide stéarique (7,16 %), l’acide oléique (46,40 %) et l’acide linoléique (31,96 %). L’huile de graines de J. curcas contient un pourcentage élevé (~78 %) d’acides gras insaturés. Cela rend cette huile adaptée à l’alimentation, aux cosmétiques, à l’industrie pharmaceutique, à la production de biodiesel, à la production de savon, aux détergents synthétiques, aux graisses, aux cosmétiques et à plusieurs autres produits. Cependant, la composition chimique de l’huile peut varier en fonction du climat et de la localité. Des réactions catalysées par l’hydroxyde de potassium (KOH) ont été utilisées pour hydrolyser l’huile de graines de J. curcas, tandis que l’acide linoléique (LA ; 18:2), un acide gras polyinsaturé (AGPI) concentré, et l’acide oléique (OA ; 18:1), un acide gras monoinsaturé (AGMI), ont été séparés de l’huile de graines de J. curcas par fractionnement à l’urée.

Artículos relacionados

  • Suzuki-Miyaura Cross-Coupling Reaction and Potential Applications
    Suzuki–Miyaura cross-coupling remains a powerful tool in organic synthesis for C–C bond formation and has various industrial applications, for example, the synthesis of pharmaceuticals and materials. Intensive research efforts are being made into finding ways of improving and expanding the scope of this process, and the development of more efficient catalytic systems for this e...
    Disponible

    67,89 €

  • Catalysis for Low Temperature Fuel Cells
    Today, the development of active and stable catalysts still represents a challenge to overcome in the research field of low temperature fuel cells. Operation at low temperatures demands the utilization of highly active catalysts to reduce the activation energy of the electrochemical reactions involved at the electrodes, and thus obtain practical performances and high efficienci...
    Disponible

    59,74 €

  • Trends in Microextraction Techniques for Sample Preparation
    Micro-extraction techniques in sample preparation are gaining interest among analytical chemists as they comply with green analytical chemistry demands and ensure environmental protection and public safety. Savings in cost and time are considered as valuable benefits by using novel micro-extraction approaches in sample handling. Selectivity, sensitivity and lower detection limi...
    Disponible

    59,87 €

  • Advances and Applications of Nano-antimicrobial Treatments
    Nowadays, great concerns are associated with the resistance demonstrated by many microorganisms towards the conventional antibiotic therapies. The failure of traditional antimicrobials, and the increasing healthcare costs, have encouraged scientific research and the development of novel antimicrobial agents. Particularly, there is a great deal of interest in nanotechnologies an...
    Disponible

    51,68 €

  • Handbook of Research on Uncovering New Methods for Ecosystem Management through Bioremediation
    Kajal Srivastava / Shivom Singh
    Maintaining and preserving the environment is a crucial consideration in an era where climate change and rising sea levels are common knowledge. It is important for researchers and developers alike to explore potential solutions for a steadily warming world. The Handbook of Research on Uncovering New Methods for Ecosystem Management through Bioremediation focuses on the agricul...
    Disponible

    426,84 €

  • Structural Design and Properties of Coordination Polymers
    The assembly of organic ligands and metal centres yields coordination polymers, many of which find applications in conductivity, catalysis, magnetism, gas sorption, biological sensing and luminescence. The structure and topology of coordination polymers may be manipulated by changing the reaction conditions, leading to a large variety of structurally and topologically unique pr...
    Disponible

    43,77 €

Otros libros del autor

  • Idrolisi, separazione e purificazione degli acidi grassi per i bioprodotti
    Bashar Mudhaffar Abdullah / Hasniza Zaman Huri / Nany Hairunisa
    L’olio di semi di Jatropha curcas è composto principalmente da acidi grassi quali acido palmitico (13,89%), acido stearico (7,16%), acido oleico (46,40%) e acido linoleico (31,96%). L’olio di semi di J. curcas contiene un’alta percentuale (~78%) di acidi grassi insaturi. Ciò rende l’olio adatto all’uso alimentare, cosmetico, farmaceutico, alla produzione di biodiesel, saponi, d...
    Disponible

    59,08 €

  • Hydrolyse, Trennung und Reinigung von Fettsäuren für Bioprodukte
    Bashar Mudhaffar Abdullah / Hasniza Zaman Huri / Nany Hairunisa
    Jatropha curcas-Samenöl besteht hauptsächlich aus Fettsäuren wie Palmitinsäure (13,89 %), Stearinsäure (7,16 %), Ölsäure (46,40 %) und Linolsäure (31,96 %). J. curcas-Samenöl enthält einen hohen Anteil (~78 %) an ungesättigten Fettsäuren. Dadurch eignet sich das Öl für die Lebensmittel-, Kosmetik- und Pharmaindustrie, die Biodieselproduktion, die Seifenherstellung, synthetische...
    Disponible

    59,08 €

  • Hydroliza, separacja i oczyszczanie kwasów tłuszczowych dla bioproduktów
    Bashar Mudhaffar Abdullah / Hasniza Zaman Huri / Nany Hairunisa
    Olej z nasion Jatropha curcas składa się głównie z kwasów tłuszczowych, takich jak kwas palmitynowy (13,89%), kwas stearynowy (7,16%), kwas oleinowy (46,40%) i kwas linolowy (31,96%). Olej z nasion J. curcas zawiera wysoki procent (~78%) nienasyconych kwasów tłuszczowych. Dzięki temu olej ten nadaje się do stosowania w przemyśle spożywczym, kosmetycznym, farmaceutycznym, do pro...
    Disponible

    59,08 €

  • Hidrólise, separação e purificação de ácidos gordos para bioprodutos
    Bashar Mudhaffar Abdullah / Hasniza Zaman Huri / Nany Hairunisa
    O óleo de semente de Jatropha curcas é composto por ácidos gordos principais, tais como ácido palmítico (13,89%), ácido esteárico (7,16%), ácido oleico (46,40%) e ácido linoleico (31,96%). O óleo de semente de J. curcas contém uma elevada percentagem (~78%) de ácidos gordos insaturados. Isto torna o óleo adequado para uso em alimentos, cosméticos, indústrias farmacêuticas, prod...
    Disponible

    59,08 €