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Article

Combustion Characterisation of Bituminous Coal and Pinus Sawdust Blends by Use of Thermo-Gravimetric Analysis

by
Garikai T. Marangwanda
1,2,
Daniel M. Madyira
1,*,
Patrick G. Ndungu
3 and
Chido H. Chihobo
2
1
Department of Mechanical Engineering Science, University of Johannesburg, Johannesburg 2028, South Africa
2
Department of Fuels and Energy Engineering, School of Engineering Sciences and Technologies, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
3
Energy, Sensors and Multifunctional Nanomaterials Research Group, Department of Chemical Sciences, Doornfontein Campus, University of Johannesburg, Johannesburg 2028, South Africa
*
Author to whom correspondence should be addressed.
Energies 2021, 14(22), 7547; https://doi.org/10.3390/en14227547
Submission received: 15 September 2021 / Revised: 15 October 2021 / Accepted: 15 October 2021 / Published: 11 November 2021

Abstract

The cocombustion of coal and pinus sawdust waste is an economically viable and sustainable option for increasing the share of biomass in energy production. This technology also has the potential to reduce the emission of greenhouse gases from existing coal fired power plants. The thermal synergistic effects of cocombusting Hwange bituminous coal (HC) with Pinus sawdust (PS) were thus investigated using thermogravimetric analysis. Fuel blending mass ratios of 100HC, 90HC10PS, 80HC20PS, 70HC30PS, and 100PS under an oxidative atmosphere at three different heating rates of 5, 12.5, and 20 °C/min were used for the experimental setup. Zero to negative synergy was generally observed for the mass loss curves (TG) at different blending ratios. Generally positive synergy was observed with relation to rate of mass loss curves (DTG) for the 80HC20PS and 70HC30PS fuel blends only. The ignition index increased with blending ratio by an average of 42.86%, whilst the burnout index showed a maximum increase of 14.6% at 20 °C/min. However, the combustion index representative of stability showed a decreasing trend generally for all the heating rates. No combustion index produced a linear variation with temperature, though upon evaluation, an optimum mass ratio of 20% pinus sawdust was suggested. The chosen optimum blending ratio demonstrated increased ignition and burnout indexes whilst maintaining the stability of combustion at a reasonable range.
Keywords: coal; biomass; cocombustion; thermogravimetric analysis; ignition index; burnout index; combustion index coal; biomass; cocombustion; thermogravimetric analysis; ignition index; burnout index; combustion index

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MDPI and ACS Style

Marangwanda, G.T.; Madyira, D.M.; Ndungu, P.G.; Chihobo, C.H. Combustion Characterisation of Bituminous Coal and Pinus Sawdust Blends by Use of Thermo-Gravimetric Analysis. Energies 2021, 14, 7547. https://doi.org/10.3390/en14227547

AMA Style

Marangwanda GT, Madyira DM, Ndungu PG, Chihobo CH. Combustion Characterisation of Bituminous Coal and Pinus Sawdust Blends by Use of Thermo-Gravimetric Analysis. Energies. 2021; 14(22):7547. https://doi.org/10.3390/en14227547

Chicago/Turabian Style

Marangwanda, Garikai T., Daniel M. Madyira, Patrick G. Ndungu, and Chido H. Chihobo. 2021. "Combustion Characterisation of Bituminous Coal and Pinus Sawdust Blends by Use of Thermo-Gravimetric Analysis" Energies 14, no. 22: 7547. https://doi.org/10.3390/en14227547

APA Style

Marangwanda, G. T., Madyira, D. M., Ndungu, P. G., & Chihobo, C. H. (2021). Combustion Characterisation of Bituminous Coal and Pinus Sawdust Blends by Use of Thermo-Gravimetric Analysis. Energies, 14(22), 7547. https://doi.org/10.3390/en14227547

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