Combination of oscillatory and hydrodynamic system for biodiesel production from sunflower oil

被引:3
|
作者
Taki, Kimia [1 ]
Samani, Bahram Hosseinzadeh [1 ]
Rostami, Sajad [1 ]
Besharati, Shahin [1 ]
机构
[1] Shahrekord Univ, Dept Mech Engn Biosyst, Shahrekord, Iran
来源
BIOFUELS-UK | 2023年 / 14卷 / 03期
关键词
Oscillatory baffled reactor; SPC reactor; Oscillatory-hydrodynamic reactor; Biodiesel production; Transesterification; WASTE COOKING OIL; METHYL-ESTER PRODUCTION; BAFFLED REACTORS; FUEL; TRANSESTERIFICATION; OPTIMIZATION; TECHNOLOGIES; PERFORMANCE;
D O I
10.1080/17597269.2022.2130510
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In recent years, biodiesel as renewable energy has attracted much attention. The major aims of the biodiesel production method are high conversion and reduced reaction time. This study aimed to optimize biodiesel production from sunflower oil using the transesterification method in oscillatory-hydrodynamic combined systems. The dimensions of the smooth periodic constriction reactor (SPC), tube diameter (D), the diameter of constricted area (d(0)), and baffle spacing (I) were obtained at 5, 2, and 13mm, respectively. The process optimization was carried out by response surface methodology. The results indicated that by increasing residence time from 30s to 90s, the yield was increased about 6%. By increasing the catalyst concentration from 0.75% to 1%, the yield increased approximately 6%; increasing the molar ratio from 6:1 to 9:1 increases the yield. The yield was also increased with the reaction temperature rise from 30 degrees C to 40"C. Then, by increasing the temperature from 40 degrees C to 50 degrees C, the methyl ester content was increased from 81.59% to 85.75%. The optimum point was tested and compared with the ASTM D6751 standard. The results showed that transesterification of sunflower oil with this combined system could function as a good alternative to diesel.
引用
收藏
页码:235 / 242
页数:8
相关论文
共 50 条
  • [21] Conventional and in situ transesterification of sunflower seed oil for the production of biodiesel
    Georgogianni, K. G.
    Kontominas, M. G.
    Pomonis, P. J.
    Avlonitis, D.
    Gergis, V.
    FUEL PROCESSING TECHNOLOGY, 2008, 89 (05) : 503 - 509
  • [22] Biodiesel production from jatropha oil in a closed system
    Shaaban, W.
    El-Shazly, A. H.
    Elkady, M. . F.
    Ohshima, M.
    2016 5TH INTERNATIONAL CONFERENCE ON CHEMICAL AND PROCESS ENGINEERING (ICCPE 2016), 2016, 69
  • [23] OPTIMIZATION OF BIODIESEL PRODUCTION FROM WASTE COOKING SUNFLOWER OIL BY TAGUCHI AND ANN TECHNIQUES
    Kolakoti, A.
    Mosa, P. R.
    Kotaru, T. G.
    Mahapatro, M.
    JOURNAL OF THERMAL ENGINEERING, 2020, 6 (05): : 712 - 723
  • [24] Production and evaluation of biodiesel from sunflower (Helianthus annus) and Nigerseed Oil (Guizoda abyssinica)
    Devi, N. Annapurna
    Kumar, C. Mohan
    Naidu, Y. Rama
    Rao, M. Narasimha
    ASIAN JOURNAL OF CHEMISTRY, 2006, 18 (04) : 2951 - 2958
  • [25] Spectroscopic Analysis of Heterogeneous Biocatalysts for Biodiesel Production from Expired Sunflower Cooking Oil
    Wembabazi, Enoch
    Mugisha, Patrick Joram
    Ratibu, Asumani
    Wendiro, Deborah
    Kyambadde, Joseph
    Vuzi, Peter California
    JOURNAL OF SPECTROSCOPY, 2015, 2015
  • [26] Alkali-Catalyzed Biodiesel Production from Mixtures of Sunflower Oil and Beef Tallow
    Taravus, Sevilay
    Temur, Hakan
    Yartasi, Ahmet
    ENERGY & FUELS, 2009, 23 (08) : 4112 - 4115
  • [27] The Optimization of Biodiesel Production from Waste Frying Sunflower Oil Using a Heterogeneous Catalyst
    El-Gendy, N. Sh.
    Abu Amr, S. S.
    Aziz, H. Abdul
    ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2014, 36 (15) : 1615 - 1625
  • [28] Biodiesel Production from Sunflower: an Environmental Study
    De Marco, Iolanda
    Miranda, Salvatore
    Riemma, Stefano
    Iannone, Raffaele
    5TH INTERNATIONAL SYMPOSIUM ON INDUSTRIAL BIOTECHNOLOGY (IBIC 2016), 2016, 49 : 331 - 336
  • [29] Lipase and Phospholipase Combination for Biodiesel Production from Crude Soybean Oil
    Gleiciéli Steinke
    Matheus Cavali
    João H. C. Wancura
    Jacir Dal Magro
    Wagner L. Priamo
    Guilherme M. Mibielli
    João P. Bender
    J. Vladimir de Oliveira
    BioEnergy Research, 2022, 15 : 1555 - 1567
  • [30] Lipase and Phospholipase Combination for Biodiesel Production from Crude Soybean Oil
    Steinke, Gleicieli
    Cavali, Matheus
    Wancura, Joao H. C.
    Dal Magro, Jacir
    Priamo, Wagner L.
    Mibielli, Guilherme M.
    Bender, Joao P.
    Vladimir de Oliveira, J.
    BIOENERGY RESEARCH, 2022, 15 (03) : 1555 - 1567