Parametric study of glycerol and contaminants removal from biodiesel through solvent-aided crystallization

Mohd. Afnan Ahmad , Arun Letchumanan , Shafirah Samsuri , Wan Nur Athirah Mazli , Juniza Md Saad

Bioresources and Bioprocessing ›› 2021, Vol. 8 ›› Issue (1) : 54

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Bioresources and Bioprocessing ›› 2021, Vol. 8 ›› Issue (1) : 54 DOI: 10.1186/s40643-021-00409-y
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Parametric study of glycerol and contaminants removal from biodiesel through solvent-aided crystallization

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Abstract

At present, biodiesel is known as an alternative fuel globally. It is also known that the purification of biodiesel before consumption is mandatory to comply with international standards. Commonly, purification using water washing generates a massive amount of wastewater with a high content of organic compounds that can harm the environment. Therefore, this study applied and tested a waterless method, i.e., the solvent-aided crystallization (SAC), to remove glycerol and other traces of impurities in the crude biodiesel. The parameters of coolant temperature, crystallization time, and stirring rate on the SAC system were investigated. It was discovered that with 14 °C coolant temperature, 300 RPM and higher cooling time result in the highest percentage of FAME up to 99.54%, which indicates that contaminants' presence is limited in the purified biodiesel. The use of 1-butanol as the solvent for crystallization process remarkably enhanced the separation and improved the higher biodiesel quality.

Keywords

Biodiesel purification / Solvent-aided crystallization / Glycerol / Fatty acid methyl esters

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Mohd. Afnan Ahmad, Arun Letchumanan, Shafirah Samsuri, Wan Nur Athirah Mazli, Juniza Md Saad. Parametric study of glycerol and contaminants removal from biodiesel through solvent-aided crystallization. Bioresources and Bioprocessing, 2021, 8(1): 54 DOI:10.1186/s40643-021-00409-y

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References

[1]

Ab Hamid F, Rahim N, Johari A, Ngadi N, Zakaria Z, Jusoh M. Desalination of seawater through progressive freeze concentration using a coil crystallizer. Water Supply, 2015, 15(3): 625-631.

[2]

Ambat I, Srivastava V, Sillanpää M. Recent advancement in biodiesel production methodologies using various feedstock: a review. Renew Sustain Energy Rev, 2018, 90: 356-369.

[3]

Amran N, Jusoh M. Effect of coolant temperature and circulation flowrate on the performance of a vertical finned crystallizer. Procedia Eng, 2016, 148: 1408-1415.

[4]

Atadashi I. Purification of crude biodiesel using dry washing and membrane technologies. Alex Eng J, 2015, 54(4): 1265-1272.

[5]

Atadashi I, Aroua M, Aziz A. Biodiesel separation and purification: a review. Renew Energy, 2011, 36(2): 437-443.

[6]

Bagdasarov K. The problems of high-temperature crystallization. Progr Cryst Growth Charact, 1988, 16: 59-80.

[7]

Bateni H, Saraeian A, Able C. A comprehensive review on biodiesel purification and upgrading. Biofuel Res J, 2017, 4(3): 668-690.

[8]

Berrios M, Skelton R. Comparison of purification methods for biodiesel. Chem Eng J, 2008, 144(3): 459-465.

[9]

Binhayeeding N, Klomklao S, Sangkharak K. Utilization of waste glycerol from biodiesel process as a substrate for mono-, di-, and triacylglycerol production. Energy Procedia, 2017, 138: 895-900.

[10]

Björn A, Šafarič L, Karlsson A, Danielsson Å, Ejlertsson J, Svensson B, Yekta S. Substrate and operational conditions as regulators of fluid properties in full-scale continuous stirred-tank biogas reactors—implications for rheology-driven power requirements. Water Sci Technol, 2018, 78(4): 814-826.

[11]

Çaylı G, Küsefoğlu S. Increased yields in biodiesel production from used cooking oils by a two-step process: comparison with one step process by using TGA. Fuel Process Technol, 2008, 89(2): 118-122.

[12]

Crabbe E, Nolasco-Hipolito C, Kobayashi G, Sonomoto K, Ishizaki A. Biodiesel production from crude palm oil and evaluation of butanol extraction and fuel properties. Process Biochem, 2001, 37(1): 65-71.

[13]

Eisenbart FJ, Ulrich J. Solvent-aided layer crystallization—case study glycerol–water. Chem Eng Sci, 2015, 133: 24-29.

[14]

Eisenbart F, Ulrich J. Solvent-aided layer crystallization of glycerol - post-treatment and the influence of agitation. Chem Eng Technol, 2016, 39(7): 1251-1256.

[15]

Eisenbart F, Angermeier N, Ulrich J. Production of highly dry glycerol by solvent-aided melt layer crystallization. J Cryst Growth, 2017, 469: 191-196.

[16]

Gao W, Zhang M, Wu H. Differential scanning calorimetry studies on the cold flow properties of fuel mixtures from bio-oil, crude glycerol, methanol, and/or biochar. Energy Fuels, 2017, 31(8): 8348-8355.

[17]

Hass H, Patterson J. Purification of glycerol by crystallization. Ind Eng Chem, 1941, 33(5): 615-616.

[18]

Innocenzi V, Prisciandaro M. Technical feasibility of biodiesel production from virgin oil and waste cooking oil: Comparison between traditional and innovative process based on hydrodynamic cavitation. Waste Manage, 2021, 122: 15-25.

[19]

Jusoh M, Mohamed-Nor N, Zakaria Z. Progressive freeze concentration of coconut water. Jurnal Teknologi, 2014, 67: 2.

[20]

Jusoh M, Yahya N, Ab. Hamid F, Safiei N. Effect of coolant temperature on progressive freeze concentration of refined, bleached and deodorised palm oil. Jurnal Teknologi, 2014, 69: 4.

[21]

Kusworo T, Widayat W, Utomo D, Pratama Y, Arianti R. Performance evaluation of modified nanohybrid membrane polyethersulfone-nano ZnO (PES-nano ZnO) using three combination effect of PVP, irradiation of ultraviolet and thermal for biodiesel purification. Renew Energy, 2020, 148: 935-945.

[22]

Miyawaki O, Liu L, Shirai Y, Sakashita S, Kagitani K. Tubular ice system for scale-up of progressive freeze-concentration. J Food Eng, 2005, 69(1): 107-113.

[23]

Mohamad M, Ngadi N, Wong S, Jusoh M, Yahya N. Prediction of biodiesel yield during transesterification process using response surface methodology. Fuel, 2017, 190: 104-112.

[24]

Mohammed A, Bandari C. Lab-scale catalytic production of biodiesel from waste cooking oil—a review. Biofuels, 2017, 11(4): 409-419.

[25]

Power-Torque (2002) Retrieved from WEN Technology Inc. http://wensensors.com/unipower/calculators/power_torque.asp

[26]

Romli A, Abidin M, Md Akil H. Journal search results—Cite This for Me. Sci Res J, 2009, 6(1): 31.

[27]

Saleh J, Tremblay A, Dubé M. Glycerol removal from biodiesel using membrane separation technology. Fuel, 2010, 89(9): 2260-2266.

[28]

Samsuri S, Aini Amran N, Zheng L, Mohd Bakri M. Effect of coolant temperature and cooling time on fractional crystallization of biodiesel and glycerol. Malays J Fundam Appl Sci, 2017, 13(4): 676-679.

[29]

Samsuri S, Jian N, Jusoh F, Hernández Yáñez E, Yahya N. Solvent-aided crystallization for biodiesel purification. Chem Eng Technol, 2020, 43(3): 447-456.

[30]

Shah R, Porter S. Evolution of biodiesel testing standards and specifications globally. Biofuels, 2014, 5(1): 17-19.

[31]

Silva L, Santos C, Ribeiro J, Souza C, Sant’Ana A. Rheological analysis of vegetable oils used for biodiesel production in Brazil. Revista De Engenharia Térmica, 2015, 14(2): 31.

[32]

Singh R. Analysis of energy usage at membrane water treatment plants. Desalin Water Treat, 2011, 29(1–3): 63-72.

[33]

Thongboonkerd V, Semangoen T, Chutipongtanate S. Factors determining types and morphologies of calcium oxalate crystals: Molar concentrations, buffering, pH, stirring and temperature. Clin Chim Acta, 2006, 367(1–2): 120-131.

[34]

Torres J, Rodriguez N, Arana J, Ochoa N, Marchese J, Pagliero C. Ultrafiltration polymeric membranes for the purification of biodiesel from ethanol. J Clean Prod, 2017, 141: 641-647.

[35]

Tyson K, McCormick R (2006) Biodiesel handling and use guidelines. National Renewable Energy Laboratory.

[36]

Wall J, Van Gerpen J, Thompson J. Soap and glycerin removal from biodiesel using waterless processes. Trans ASABE, 2011, 54(2): 535-541.

Funding

Universiti Teknologi Petronas(015LC0-079)

Ministry of Education Malaysia

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