Effect of operating parameters on production of bio-oil from fast pyrolysis of maize stalk in bubbling fluidized bed reactor

Author:

Ali Najaf1,Saleem Mahmood1,Shahzad Khurram2,Hussain Sadiq3,Chughtai Arshad45

Affiliation:

1. University of the Punjab, Institute of Chemical Engineering & Technology, Pakistan

2. University of the Punjab, Centre for Coal Technology, Pakistan

3. NFC Institute of Engineering & Technology Multan, Pakistan

4. University of the Punjab, Institute of Chemical Engineering & Technology Pakistan

5. National University of Science and Technology Islamabad, School of Chemical and Materials Engineering, Pakistan

Abstract

Abstract The yield and composition of pyrolysis products depend on the characteristics of feed stock and process operating parameters. Effect of particle size, reaction temperature and carrier gas flow rate on the yield of bio-oil from fast pyrolysis of Pakistani maize stalk was investigated. Pyrolysis experiments were performed at temperature range of 360-540°C, feed particle size of 1-2 mm and carrier gas fl ow rate of 7.0-13.0 m3/h (0.61.1 m/s superficial velocity). Bio-oil yield increased with the increase of temperature followed by a decreasing trend. The maximum yield of bio-oil obtained was 42 wt% at a temperature of 490°C with the particle size of around 1.0 mm and carrier gas flow rate of 11.0 m3/h (0.9 m/s superficial velocity). High temperatures resulted in the higher ratios of char and non-condensable gas.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry,Biotechnology

Reference79 articles.

1. 1. Goyal, H.B., Seal, D. & Saxena, R.C. (2008). Bio-fuels from thermochemical conversion of renewable resources: a review. Renew. Sust. Ener. Rev. 12, 504-517. DOI: 10.1016/j. rser.2006.07.014.

2. 2. Raheem, A., Azlina, W.W., Yap, Y.H.T., Danquah, M.K. & Harun, R. (2015). Thermochemical conversion of microalgal biomass for biofuel production. Renew. Sust. Ener. Rev. 49, 990-999. DOI: 10.1016/j.rser.2015.04.186.

3. 3. Bridgwater, A.V. & Peacocke, G.V.C. (2000). Fast pyrolysis processes for biomass. Renew. Sust. Ener. Rev. 4, 1-73. DOI: 10.1016/S1364-0321(99)00007-6.

4. 4. Yaman, S. (2004). Pyrolysis of biomass to produce fuels and chemical feedstocks. Ener. Conv. Manage. 45, 651-671. DOI: 10.1016/S0196-8904(03)00177-8.

5. 5. Goyal HB, S.R. & Seal, D. Communicated to Haworth Press, USA, 2006. (2006). Thermochemical Conversion of Biomass To Liquids and Gas, Monograph. DOI: 10.1016/j. rser.2006.07.014.

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