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Increased Biodiesel Efficiency

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Increased Biodiesel Efficiency
Najniższa cena (z dostawą)
14 328,00 JPY
Typowa cena1 089,56 PLN
Najniższa (90 dni)71,50 PLN
Liczba ofert6
Ostatnia aktualizacja1 tydzień temu
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Historia ceny (90 dni)
Pełna historia
2026-08-08 2026-08-15
Historia cen
ZaktualizowanoCena
2026-08-0884,99
2026-08-1571,50
Sprzedawca Cena produktu Dostawa Razem Dostępność Aktualizacja
SP SpringerNatureLink Shop INT 14 299,00 JPY 29,00 JPY 14 328,00 JPY Dostępny 5 dni temu Zobacz ofertę
SP Springer Nature Author 14 299,00 JPY 19,00 JPY 14 318,00 JPY Dostępny 1 tydzień temu Zobacz ofertę
SP SpringerNatureLink Shop INT 99,99 USD 0 zł 99,99 USD Dostępny 5 dni temu Zobacz ofertę
SP SpringerNatureLink Shop INT 109,99 USD 25,00 USD 134,99 USD Dostępny 5 dni temu Zobacz ofertę
SP SpringerNatureLink Shop INT 109,99 USD 0 zł 109,99 USD Dostępny 5 dni temu Zobacz ofertę
SP SpringerNatureLink Shop INT 118,00 EUR 15,00 EUR 133,00 EUR Dostępny 5 dni temu Zobacz ofertę

Ceny i dostępność mogą ulec zmianie. Ostatnia aktualizacja: 08.08.2026 23:21.

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This book advances the use of biodiesel—more environmentally friendly than traditional fossil fuels—by showing how it can be synthesized at a lower cost, with greater efficiency and as a more pure and stable product. It presents methods based on fluorescence spectroscopy, which are less time-consuming than the traditional Rancimat analysis for monitoring stability, and are therefore less prone to allowing oxidative decay in the biofuel. Biodiesel exploits a variety of raw materials, from freshly harvested cottonseed to recycled cooking oil. These are cheap to produce and generate fuel lower in polluting sulphur and aromatic compounds than its petroleum-based equivalent. Beginning by addressing different protocols for synthesis based on fatty acids, methyl and ethyl esters, it then describes chemical analyses essential to establishing the purity of the biodiesel. It highlights in detail the use of multifunctional and synthetic antioxidants, and investigatesthe impact of synthetic chalcones and their derivatives on the oxidative stability of biodiesel. The author goes on to explain how to ameliorate various influences – UV irradiation and metal contaminants for example – which increase the hazards of oxidation, such as degradation and instability. New pre-treatment procedures performed using ultrasonic energies, thermostatic bath and vortex stirring are not only more environmentally friendly, but cut down on the time-consuming process of determining metal content, and allow for the use of more environmentally friendly aqueous reagents. The book investigates and demonstrates these techniques on the basis of real-world results. Further, it suggests the practical uses of byproducts of biodiesel production, for example, using glycerol as a source of energy and high valuable chemicals. These useful techniques aid any researcher exploring the production process of biodiesel and its stabilization and characteristics.

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