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Journal ArticleDOI

Investigation of biodiesel production methods by altering free fatty acid content in vegetable oils

03 Jul 2020-Vol. 11, Iss: 5, pp 587-595
TL;DR: In this paper, the effects of variations in free fattens in free-fattens have been explored and compared with the transesterification of vegetable oils and animal fats.
Abstract: Biodiesel is derived from vegetable oils and animal fats by various methods among which transesterification is the most widely used. The present work explores the effects of variations in free fatt...
Citations
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Journal ArticleDOI
15 Jan 2021-Energy
TL;DR: In this article, the components of Terminalia chebula plant such as leaves and seeds are effectively utilized as a green source for the synthesis of copper oxide nanoparticles (CuO NPs) and production of biodiesel, respectively.

25 citations

Journal ArticleDOI
01 Feb 2021-Fuel
TL;DR: In this paper, a multi-linear regression model was proposed to predict the density, kinematic viscosity and surface tension of biodiesel, which is based on the straight chain saturation factor and modified degree of unsaturation.

23 citations

Journal ArticleDOI
15 Jan 2022-Fuel
TL;DR: In this paper, the efficacy of utilizing emulsification and water injection methods to mitigate the higher NOx emissions with biodiesel is investigated in the light-duty diesel engine at rated speed, varying load conditions with neat biodiesel, biodiesel-water emulsion, and biodiesel water injection.

19 citations

Journal ArticleDOI
TL;DR: In this article, the macroscopic spray characteristics of fresh and aged Karanja biodiesels are compared with that of diesel, and the results showed that although biodiesel's long-term storage results in variations in physical and chemical properties, there are no significant variations in the macro-scopic spraying characteristics.
Abstract: A significant obstacle to utilize biodiesel fuel for automotive engine applications is its poor oxidative stability. In the present work, oxidation and spray characteristics of Karanja biodiesel stored for one year are studied. The fuel physical properties that influence the spray characteristics, viz. density, kinematic viscosity, and surface tension, are increased by 0.38%, 12.74%, and 3.95%, respectively, after a one-year storage period. The macroscopic spray characteristics of fresh and aged Karanja biodiesels are compared with that of diesel. The spray penetration length, spray cone angle, and the projected spray area are measured at chamber pressures of 20, 30, and 40 bar and injection pressures of 300, 600, and 900 bar. The results showed reduced mass flow rate at lower injection pressures with fresh and aged biodiesels than diesel. At 300 bar injection pressure, spray penetration length is longer with diesel during the initial injection period, but later the spray slows down. There are no appreciable differences in the spray penetration length and the spray cone angle between diesel, fresh, and aged biodiesels at all the injection pressures. The projected spray area is higher for diesel than biodiesels indicating a denser spray with biodiesels. The study concludes that although biodiesel's long-term storage results in variations in physical and chemical properties, there are no significant variations in the macroscopic spray characteristics. Analysis of atomization characteristics of fresh and aged biodiesels also revealed similar results.

15 citations

Journal ArticleDOI
TL;DR: A critical analysis of approaches and models available in the literature to predict biodiesel properties that are important for fuel quality specifications, storage, handling, and durability of the fuel injection systems is provided in this paper.
Abstract: The engine fuel properties of biodiesel are required for fuel quality assessment, spray and combustion modelling studies and engine optimization studies. Experimental measurement of biodiesel fuel properties over a broad range of temperatures is cost-intensive, laborious, time-consuming, and requires skilled labour. Thus, there have been sustained interests to develop models for predicting biodiesel fuel properties using various approaches for the past 50 years. The models developed for predicting fuel properties are based on various approaches that have advantages and limitations. The present review provides a critical analysis of approaches and models available in the literature to predict biodiesel properties that are important for fuel quality specifications, storage, handling, and durability of the fuel injection systems. The reliability of any empirical model depends on the number of data points considered in calibrating the model. The review articles available in the literature neither discussed the number of calibration samples nor the number of validation samples used for model development. Also, it is essential to validate the prediction models using additional data set which are not considered in calibrating the models. The present review addresses these limitations wherein the favourable features and limitations of models available to predict biodiesel properties are discussed in terms of reported deviations, validation method, model simplicity, applicable range and the number of data points used in calibrating and validating the models. Thus, the analysis provided therein helps to choose appropriate property prediction models based on the intended application. Further, poor oxidative stability is one of the significant drawbacks with biodiesel, and no literature discusses the models to predict oxidative stability of biodiesel. This limitation is also addressed in the present review. Biodiesel composition-based models are suggested to predict the calorific value provided a more comprehensive range, and the type of methyl esters are considered in the model calibration. Due to simplicity, estimating biodiesel density based on the predicted density of methyl esters and applying suitable mixing law is suggested. Accurate models to predict biodiesel flashpoint temperature and oxidative stability need to be developed considering their significance. Models involving composition-based indicators are recommended to predict biodiesel cold filter plugging point and kinematic viscosity due to model simplicity and better accuracy.

15 citations

References
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Journal ArticleDOI
30 Jan 2014
TL;DR: In this article, pseudo-ternary liquid-liquid equilibrium data were obtained for three systems composed for water+ethanol+ethyl biodiesel from crambe, fodder radish and macauba pulp oils, at T/K =298.2.
Abstract: In this work, pseudo-ternary liquid–liquid equilibrium data were obtained for three systems composed for water + ethanol + ethyl biodiesel from crambe, fodder radish and macauba pulp oils, at T/K = 298.2. Ethanol, which distributes in both phases, had greater affinity for the water-rich phase. Biodiesels and water showed almost complete immiscibility. Modeling with the NRTL and UNIQUAC thermodynamic models was performed, resulting in average deviations ranging from 0.49% to 1.29%. UNIFAC-LLE and UNIFAC-Dortmund were used in prediction of the liquid–liquid equilibrium of these systems, resulting in average deviations ranging from 1.91% to 2.27% for the systems containing biodiesel from crambe and fodder radish oils, and ranging from 3.17% to 3.28% for biodiesel from macauba oil.

29 citations