Applied energy and mass balance optimization re-engineering: case on Industri Gula Glenmore, Ltd.

Saptyaji Harnowo, Politeknik LPP Yogyakarta, Indonesia
Arif Hidayat, Politeknik LPP Yogyakarta, Indonesia
Ramit Gupta, Spray Engineering Device Limited, India

Abstract


The Glenmore Sugar Industry, Ltd. is designed for 8000 TCD production or 273 TPH. The process required approximately 136 TPH based on the Steam on Cane (SoC) 50%. As the factory's primary input, Sugar Cane cannot supply 8000 TCD Factory Capacity, so 6000 TCD is chosen as an alternative. After commissioning, a lack of steam for servicing the process occurred because the Turbine at full load required 7,6 Kg/kWh. Desuperheater supports the additional steam for the process, which is only 20 TPH. Meanwhile, the steam from the turbine supplies 84 TPH. The need for 32 TPH must be solved, and a specific strategy should be prepared. The Applied Thermodynamics Re-Engineering is a potential method that can be applied in which the findings show that the deficit of 32 TPH steam for the process can be solved precisely.


Keywords


SoC; Applied Thermodynamics; Re-Engineering

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References


G. S. Yarnal and V. S. Puranik, “Industry Using System,” Cogener. Distrib. Gener. J., vol. 24, no. 3, pp. 7–22, 2009.

Gunawan, T. Bantacut, M. Romli, and E. Noor, “Biomass by-product from crystal sugar production: A comparative study between Ngadirejo and Mauritius sugar mill,” IOP Conf. Ser. Earth Environ. Sci., vol. 141, no. 1, 2018.

Á. A. Díaz Pérez et al., “Thermodynamic and economic evaluation of reheat and regeneration alternatives in cogeneration systems of the Brazilian sugarcane and alcohol sector,” Energy, vol. 152, pp. 247–262, 2018.

R. Deshmukh, A. Jacobson, C. Chamberlin, and D. Kammen, “Thermal gasification or direct combustion? Comparison of advanced cogeneration systems inthe sugarcane industry,” Biomass and Bioenergy, vol. 55, pp. 163–174, 2013.

E. S. Dogbe, M. Mandegari, and J. F. Görgens, “Assessment of the thermodynamic performance improvement of a typical sugar mill through the integration of waste-heat recovery technologies,” Appl. Therm. Eng., vol. 158, no. February, p. 113768, 2019.

M. C. Palacios-Bereche, R. Palacios-Bereche, A. V. Ensinas, A. G. Gallego, M. Modesto, and S. A. Nebra, “Brazilian sugar cane industry – A survey on future improvements in the process energy management,” Energy, vol. 259, no. June, p. 124903, 2022.

J. R. Copa Rey et al., “Evaluation of cogeneration alternative systems integrating biomass gasification applied to a Brazilian sugar industry,” Renew. Energy, vol. 178, pp. 318–333, 2021.

E. Birru, C. Erlich, and A. Martin, “Energy performance comparisons and enhancements in the sugar cane industry,” Biomass Convers. Biorefinery, vol. 9, no. 2, pp. 267–282, 2019.

M. Premalatha, S. S. Priya, and V. Sivaramakrishnan, “Efficient cogeneration scheme for sugar industry,” J. Sci. Ind. Res. (India)., vol. 67, no. 3, pp. 239–242, 2008.

A. V. Ensinas, S. A. Nebra, M. A. Lozano, and L. Serra, “Analysis of cogeneration systems in sugar cane factories - Alternatives of steam and combined cycle power plants,” ECOS 2006 - Proc. 19th Int. Conf. Effic. Cost, Optim. Simul. Environ. Impact Energy Syst., no. June 2014, pp. 1177–1184, 2006.

O. K. Singh, “Exergy analysis of a grid-connected bagasse-based cogeneration plant of sugar factory and exhaust heat utilization for running a cold storage,” Renew. Energy, vol. 143, pp. 149–163, 2019.

K. G. Schoonover, W. M. Ren, S. M. Ghiaasiaan, and S. I. Abdel-Khalik, “Mechanistic modeling of desuperheater performance,” ISA Trans., vol. 35, no. 1, pp. 45–51, 1996.

M. Katinić and D. Kozak, “Steam turbine moving blade failure caused by corrosion fatigue - Case history,” Procedia Struct. Integr., vol. 13, pp. 2040–2047, 2018.

H. Liang, B. Zhao, C. Huang, H. Song, and X. Jiang, “Numerical simulation study on performance optimization of desuperheater,” Energy Reports, vol. 7, pp. 2221–2232, 2021.




DOI: https://doi.org/10.21831/jeatech.v3i2.52403

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