Previous Page  12 / 14 Next Page
Information
Show Menu
Previous Page 12 / 14 Next Page
Page Background

А.Н. Иванкин, В.С. Болдырев, Ю.Н. Жилин, Г.Л. Олиференко

106

ISSN 1812-3368. Вестник МГТУ им. Н.Э. Баумана. Сер. Естественные науки. 2017. № 5

fatty acid fractions: C

14:0

— 3.6; C

16:0

— 26.8; C

16:1

— 3.5; C

18:0

18.1; C

18:1

— 46.2; C

18:2

— 8.1, as well as the saturated fatty acid

content of 48.5 % and non-saturated fatty acid content of

51.5 %. The kinetic equations we used make it possible to

describe the process of alcoholysis of animal acylglycerols by

monohydroxy aliphatic alcohol. The results of our experiment

lead to optimising performance metrics of monoalkyl ether

synthesis processes

Received 22.02.2017

© BMSTU, 2017

REFERENCES

[1] Chou C.C., Tzeng P.S., Wang G.J., Su Y.H., Chiang C.J., Ku Y.Y. Numerical study of a

turbo-charged common-rail diesel engine fueled with various biodiesel blends.

Energy Proce-

dia

, 2014, vol. 61, pp. 1146–1149. DOI: 10.1016/j.egypro.2014.11.1042

[2] Gonçalves M., Rodrigues R., Galhardo T.S., Carvalho W.A. Highly selective acetalization of

glycerol with acetone to solketal over acidic carbon-based catalysts from biodiesel waste.

Fuel

,

2016, vol. 181, pp. 46–54. DOI: 10.1016/j.fuel.2016.04.083

[3] Markov V.A., Nagornov S.A., Devyanin S.N. Composition and heat of combustion of bio-

fuels produced from vegetable oils.

Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Estestv.

Nauki

[Herald of the Bauman Moscow State Tech. Univ., Nat. Sci.], 2012, no. 2, pp. 65–80

(in Russ.).

[4] Ivankin A.N., Baburina M.I., Gorbunova N.A., Neklyudov A.D. The ecological system of

production of a biofuel from oil containing waste of agriculture.

Ekologicheskie sistemy i pribo-

ry

[Ecological Systems and Devices], 2008, no. 6, pp. 57–59 (in Russ.).

[5] Eguchi S., Kagawa S., Okamoto S. Environmental and economic performance of a biodiesel

plant using waste cooking oil.

Journal of Cleaner Production

, 2015, vol. 101, pp. 245–250.

DOI: 10.1016/j.jclepro.2015.04.008

[6] Bozbas K. Biodiesel as an alternative motor fuel: Production and policies in the European

Union.

Renewable and Sustainable Energy Reviews

, 2008, vol. 12, no. 2, pp. 542–552.

DOI: 10.1016/j.rser.2005.06.001

[7] Gorokhov D.G., Baburina M.I., Ivankin A.N., Proshina O.P. Liquid biofuels from vegetable

and animal raw materials: Тechnical and economic aspects.

Lesnoy vestnik

[Forestry Bulletin],

2010, no. 4, pp. 74–78 (in Russ.).

[8] German A.B., Nekliudov A.D., Ivankin A.N., Berdutina A.V. The kinetics of hydrolysis of

animal fat by pancreatic lipase.

Applied Biochemistry and Microbiology

, 2002, vol. 38, iss. 6,

pp. 604–608. DOI: 10.1023/A:1020714308557

[9] Ivankin A.N., Kulikovskii A.V., Vostrikova N.L., Chernuha I.M. Sis and trans conforma-

tional changes of bacterial fatty acids in comparison with analogs of animal and vegetable

origin.

Applied Biochemistry and Microbiology

, 2014, vol. 50, iss. 6, pp. 668–674.

DOI: 10.1134/S0003683814060052

[10] Agarwal A.K., Das L.M. Biodiesel development and characterization for use as a fuel in

compression ignition engines.

J. Eng. Gas Turbines Power

, 2001, vol. 123, iss. 2, pp. 440–447.

DOI: 10.1115/1.1364522

[11] Meher L.C., Sagar D.V., Naik S.N. Technical aspect of biodiesel production by transesteri-

fication — a review.

Renewal and Sustainable Energy Reviews

, 2006, vol. 10, iss. 3, pp. 248–268.

DOI: 10.1016/j.rser.2004.09.002