Homeoptimization of the process of transesterification of sunflower oil using

optimization of the process of transesterification of sunflower oil using

optimization of the process of transesterification of sunflower oil using

Optimization of transesterification of sunflower oil with

Title: Optimization of transesterification of sunflower oil with ethanol using eggshell as heterogeneous ca, Author: Alexander Decker, Name: Optimization of transesterification of sunflower oil

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Optimization of sunflower oil transesterification process

Various experiments whereMinitab statistical software has been used include: In the Optimization of Sunflower Oil Transesterification Process Using Sodium Methoxide in the experimental design

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Optimization of Transesterification of Sunflower Oil with

Optimization of Transesterification of Sunflower Oil with Ethanol using Eggshell as Heterogeneous Catalyst F.M Kilonzi 1 * A. Kumar 1 S. S. Namango 1 H.K Kiriamiti 1 D.K Some 2

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Optimization of biodiesel production from sunflower oil by

The synthesis of biodiesel from sunflower oil transesterification using Na 2 O/NaX zeolite as catalyst was performed and optimized by using the Response Surface Methodology. In order to investigate the effects of three condition variables on biodiesel yield, the total number of experiments needed was determined to be 30 which included 27

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Optimization of Biodiesel Production from Sunflower Oil Using

Optimization of Biodiesel Production from Sunflower Oil Using Response . Surface Methodology. Mojtaba Mansourpoor. 1 * and Dr. Ahmad Shariati. 2. 1. Pars Oil and Gas Company, Process Engineering Unit, Asalouye, Iran. 2. Gas Engineering Department, Petroleum University of Technology, Ahwaz, Iran *Corresponding author:

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Optimization of Pistacia lentiscus Oil Transesterification

In the present work, Pistacia lentiscus (PL) biodiesel was produced by converting PL oil with a single-step homogenous alkali catalyzed transesterification process. Several ethanol/vegetable oil molar ratio values (6–12:1), temperatures from 40 to 70 °C and KOH catalyst amounts in the range 0.6–1.8 wt% were considered.

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Optimization of the Synthesis of Biodiesel via Ultrasound

Optimization of ultrasound-assisted base-catalyzed methanolysis of sunflower oil using response surface and artifical neural network methodologies. Chemical Engineering Journal 2013, 215-216, 82-89. DOI: 10.1016/j.cej.2012.10.069. Siew Hoong Shuit, Kian Fei Yee, Keat Teong Lee, Bhatia Subhash, Soon Huat Tan.

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Optimization of sunflower oil transesterification process

Optimization of sunflower oil transesterification process using sodium methoxide. Author(s) : Sara KoohiKamali ; Tan ChinPing ; Ling TauChuan

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OPTIMIZATION OF BIODIESEL PRODUCTION FROM WASTE COOKING

research on used sunflower oil for biodiesel production mooted this experimental investigation. The objective of the present investigation is to produce biodiesel from a low-cost feedstock of waste cooking oil (sunflower oil) by using the Taguchi optimization technique and to investigate the influence of process parameters on the biodiesel yield.

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Statistical optimization of biodiesel production from

By applying the optimum conditions, obtained from optimization of transesterification process, the yield of produced biodiesel and crude glycerol using CaO prepared from ES, chemical CaO and Novozym435, were evaluated by their weight relative to the weight of the used WCO and recorded ≈97.5 and 2%, 85 and 10% and 50 and 8% (wt.%), respectively.

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Optimization of sunflower oil transesterification process

In this study, the methanolysis process of sunflower oil was investigated to get high methyl esters (biodiesel) content using sodium methoxide. To reach to the best process conditions, central composite design (CCD) through response surface methodology (RSM) was employed.

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Sunflower oil transesterification with methanol using

The transesterification of sunflower oil with methanol, using immobilized lipase enzymes as catalysts, was studied. The process was carried out in a semi-continuous mode. Temperature (30-50 °C), methanol flow (0.024-0.04 ml/min), kind of enzyme (Lipozyme 62350, Lipozyme TL-IM, Novozym 435 and Pseudo …

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Optimization of Transesterification of Sunflower Oil with

Fatty acid ethyl ester was produced by transesterification of sunflower oil and ethanol using calcined eggshells as a heterogeneous catalyst. To optimize the process, some important variables such as reaction temperature, molar ratio of ethanol to oil and mass weight of catalyst were selected and studied.

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Optimization of transesterification of sunflower oil with

Title: Optimization of transesterification of sunflower oil with ethanol using eggshell as heterogeneous ca, Author: Alexander Decker, Name: Optimization of transesterification of sunflower oil

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Optimization of Sunflower Oil Transesterification Process

In this study, the methanolysis process of sunflower oil was investigated to get high methyl esters (biodiesel) content using sodium methoxide.

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Optimization of transesterification of sunflower oil with

Title: Optimization of transesterification of sunflower oil with ethanol using eggshell as heterogeneous ca, Author: Alexander Decker, Name: Optimization of transesterification of sunflower oil

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Optimization of biodiesel production process using sunflower

This paper reports the effect of temperature, alcohol/oil molar ratio, and catalyst amount used over the yield of the transesterification reaction using oil from hotel industry. The homogeneous catalysts was based in NaOH from 0.5 and 0.7% by weight, the range operation temperatures were between 50 and 60 °C, with molar ratio alcohol / oil 6/1

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Optimization of Sunflower Oil Transesterification Process

Optimization of Sunflower Oil Transesterification Process Using Sodium Methoxide Sara KoohiKamali, 1, 2 Chin Ping Tan, 3 and Tau Chuan Ling 4, * 1 Department of Process and Food Engineering, Faculty of Engineering, Universiti Putra Malaysia, 43400 Serdang, Selangor, Malaysia

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Optimization of biodiesel production process using sunflower

In this work, the biodiesel production process by transesterification of sunflower oil was investigated using tetramethyl ammonium hydroxide (TMAH) as catalyst. The reaction conditions, such as catalyst concentration, temperature and reaction time were optimized in order to obtain a product that fulfills the quality requirements of

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Best Price Optimization of Sunflower Methyl Ester and its

The waste sunflower oil used for domestic purposes such as cooking oil had been converted it into biodiesel using an alkali catalysed transesterification process [4]. The yield of biodiesel and oil conversion were mainly affected by operating conditions like catalyst formulation and concentration [5].

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Sunflower biodiesel: efficiency and emissions

vegetable oils. This study intended to make use of the RSM process to maximize the production of bio-diesel from sunflower oil using the conventional transesterification method. In addition to using the RSM for optimizing the methanolysis of sunflower oil, it was also desired to develop a mathematical

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Optimization of biodiesel production from sunflower oil by

The synthesis of biodiesel from sunflower oil transesterification using Na 2 O/NaX zeolite as catalyst was performed and optimized by using the Response Surface Methodology. In order to investigate the effects of three condition variables on biodiesel yield, the total number of experiments needed was determined to be 30 which included 27 factorial points (3 k = 27).

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Optimization of Biodiesel Production from Sunflower Oil Using

of transesterification. Two liter of sunflower oil poured in the reactor and allowed to equilibrate to the temperature of reaction at 290 rpm. Hot water circulated in the jacket of the reactor provided the necessary heat for the reaction. Variable quantities of catalyst were dissolved in various amount of methanol as described in each test.

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Application of the simplex-centroid design with process

from sunflower oil using different catalysts with methanol and ethanol as process variable. Sodium methoxide was indicated as the best catalyst in the transesterification reaction with methanol at a 98.30% yield. Reaction yield was optimized only to 89.65% when ethanol as process variable and KOH as catalyst were employed.

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Optimization of Pistacia lentiscus Oil Transesterification

In the present work, Pistacia lentiscus (PL) biodiesel was produced by converting PL oil with a single-step homogenous alkali catalyzed transesterification process. Several ethanol/vegetable oil molar ratio values (6–12:1), temperatures from 40 to 70 °C and KOH catalyst amounts in the range 0.6–1.8 wt% were considered.

Get Price

Optimization of biodiesel production process using sunflower

In this work, the biodiesel production process by transesterification of sunflower oil was investigated using tetramethyl ammonium hydroxide (TMAH) as catalyst. The reaction conditions, such as catalyst concentration, temperature and reaction time were optimized in order to obtain a product that fulfills the quality requirements of

Get Price

Optimization of Sunflower Oil Transesterification Process

Parameters considered influential on the transesterification process were being the reaction time, the mass ratio of alcohol to oil, and concentration of the catalyst. The main aim of this project was to get to the highest methyl ester content from transesterification of sunflower oil than prior findings which can be suitable for petrol fuel replacement.

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Optimization of Base Catalytic Methanolysis of Sunflower

Using RSM, a quadratic polynomial equation was obtained by multiple regression analysis for predicting the optimization of the transesterification reaction. The results indicated that the methanol-oil-molar ratio, catalyst concentration, and reaction temperature were the significant parameters affecting the yield of sunflower oil methyl esters

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Optimization of Sunflower Oil Transesterification Process

The main aim of this project was to get to the highest methyl ester content from transesterification of sunflower oil than prior findings which can be suitable for petrol fuel replacement. In order to optimize the process, central composite design (CCD) and response surface methodology (RSM) were employed to predict the response for experimental design.

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