Potential supply of lactic acid as a diversification alternative of the sugar agro-industry in Veracruz, Mexico

  • Jorge Castillo-Martínez Colegio de Postgraduados Campus Córdoba, Km 348 Carretera Federal Córdoba-Veracruz, Congregación Manuel León, Municipio de Amatlán de los Reyes, Veracruz, México, C.P. 94953. https://orcid.org/0000-0003-1391-2132
  • Francisco Hernández-Rosas Colegio de Postgraduados Campus Córdoba, Km 348 Carretera Federal Córdoba-Veracruz, Congregación Manuel León, Municipio de Amatlán de los Reyes, Veracruz, México, C.P. 94953. https://orcid.org/0000-0003-3718-3245
  • María Ríos-Corripio CONACYT–Colegio de Postgraduados Campus Córdoba, Km 348 Carretera Federal Córdoba-Veracruz, Congregación Manuel León, Municipio de Amatlán de los Reyes, Veracruz, México, C.P. 94953. https://orcid.org/0000-0002-5531-7369
  • Elizabeth Varela-Santos Tecnológico Nacional de México/Instituto Tecnológico Superior de Tierra Blanca, Av. Veracruz s/n., 95180 Tierra Blanca, Veracruz, México Tierra Blanca, Veracruz, México. https://orcid.org/0000-0001-5498-340X
  • Manuel Lizardi-Jiménez Consejo Nacional de Ciencia y Tecnología (CONACYT)– Universidad Autónoma de San Luis Potosí, Sierra Leona 550, Lomas 2da Secc., 78210.San Luis Potosí, México, C.P. https://orcid.org/0000-0002-2054-5556
  • Ricardo Hernández-Martínez CONACYT–Colegio de Postgraduados Campus Córdoba, Km 348 Carretera Federal Córdoba-Veracruz, Congregación Manuel León, Municipio de Amatlán de los Reyes, Veracruz, México, C.P. 94953. https://orcid.org/0000-0002-3604-4668
Keywords: Econometric models, sugarcane by-products, co-product valuation

Abstract

In Mexico, sugarcane (Saccharum spp.) is one of the most notable agrifood crops, due to the economic importance it represents, sucrose and ethanol are systematically produced from it. However, a modernization scheme is currently required through productive diversification, valorizing and taking advantage of the generated co-products. In this scheme, the production of lactic acid is proposed, which generates added value and has potential demand in different industries such as food and pharmaceuticals. Therefore, the objective of this research was to evaluate factors that determine potential supply of lactic acid, if it were produced using bagasse and molasses generated in 18 sugar mills located in four sugarcane regions in Veracruz, Mexico. Statistical methods of panel data analysis were applied by estimating five econometric models, using the factors that can determine such supply. Analysis results indicated that the four sugarcane regions have lactic acid production potential, highlighting the Papaloapan-Gulf (2.6 million t) and Cordoba-Gulf (1.6 million t) regions. Factors that influenced or determined supply were: harvest duration, lactic acid import price, the number of co-products and by-products, the harvested area and the average of schooling level. In conclusion, the sugar agroindustry in Veracruz has the potential to diversify its production through the co-production of lactic acid in the context of a deficit trade balance.

Downloads

Download data is not yet available.

References

Aguilar-Rivera, N. (2017). Estrategias metodológicas para el análisis de la reconversión y diversificación productiva de regiones cañeras. Cuadernos Geográficos, 56, 172-192. https://cutt.ly/nTYNOYB
Aguilar-Rivera, N., Debernadi-Vazquez, T. J., and Herrera-Paz, H. D. (2017). Byproducts, Coproducts and Derivatives of the sugar agroindustry. Agroproductividad, 10, 13–20. https://cutt.ly/0TYMyGE
Albarelli, J.Q., Santos, D.T., Ensinas, A.V., Marechal, F., Cocero, M.J., and Meireles, M.A. (2018). Product diversification in the sugarcane biorefinery through algae growth and supercritical CO2 extraction: Thermal and economic analysis. Renewable Energy, 129 (2018) 776-785. https://cutt.ly/PTY1sez
Alves de Oliveira, R., Schneider, R., Vaz Rossell, C. E., Maciel Filho, R., and Venus, J. (2019). Polymer grade L-lactic acid production from sugarcane bagasse hemicellulosic hydrolysate using Bacillus coagulans. Bioresource. Technology Reports, 6, 26–31. https://doi.org/10.1016/j.biteb.2019.02.003
Anaya-Reza, O., and López-Arenas, T. (2018). Design of a sustainable biorefinery for the production of lactic acid from sugarcane molasses. Revista Mexicana de Ingeniera química, 17(1), 243–259. https://doi.org/10.24275/uam/izt/dcbi/revmexingquim/2018v17n1/Anaya
Bell, G. (2017). Second-Generation Biorefineries: Optimization, Opportunities, and Implications for Australia. Industrial Biothecnology, 13 (2),76-84. https://doi.org/10.1089/ind.2016.29062.gbe
Benítez-Ramírez, J. G., García-Mata, R., Mora-Flores, J. S., and García-Salazar, J. A. (2010). Determinación de los factores que afectan el mercado de carne bovina en México. Agrociencia, 44(1), 109–119. https://cutt.ly/9TY2bDM
Cavanaugh, J. E., and Neath, A. A. (2019). The Akaike information criterion: Background, derivation, properties, application, interpretation, and refinements. WIREs Comput Stat. 11 (3). https://doi.org/10.1002/wics.1460
CONADESUCA. (2021). Información de Campo y Fábrica. https://cutt.ly/ITY27Wr
Gilbert, N. A., Linyong, S. G., & Divine, G. M. (2013). Impact of agricultural export on economic growth in Cameroon: Case of banana, coffee and cocoa. International Journal of Business and Management Review, 1(1), 44-71. https://cutt.ly/8ZqVpa5
Girón, L. E. (2017). Econometría aplicada usando stata 13. Sello Editorial Javeriano-Pontificia Universidad Javeriana, Cali. https://cutt.ly/vLpEAYk
Greenpeace. (2019). Estudio sobre el impacto de la contaminación por microplásticos en peces de México. https://cutt.ly/mTY4xQr
Iglesias Ibarra, Á. J., and Fernández Rangel, J. A. (2022). Introducción a la econometría: teoría y aplicaciones usando Stata 17. Fundación Universitaria del Área Andina. https://cutt.ly/WLpRuuX
INEGI. (2020). Indicadores por entidad federativa. https://cutt.ly/NTY4S8C
Kothari, P. (2015). Data analysis with STATA. Packt Publishing Ltd. https://cutt.ly/ELpQxl0
Licea, G. R. (2019). Escolaridad y experiencia laboral en la diferencia salarial del mercado laboral en el Sector Agropecuario Mexicano. RIESED-Revista Internacional de Estudios sobre Sistemas Educativos, 2(9), 395-416. https://cutt.ly/VOb8uCL
Llanes-Gil-López, D.I; Lois-Correa, J.A; Sánchez-Pardo, M.E; and Orta-Guzman, V. N. (2017). Panorámica en México de la utilización de los residuos agroindustriales: residuos fibrosos de la caña de azúcar. ICIDCA. Sobre Los Derivados de La Caña de Azúcar, 51(1), 39–42. https://cutt.ly/xTUu5F9
Montesillo-Cedillo, J. L. (2017). Rendimiento por hectárea de sorgo grano y de fríjol en México: riego vs temporal. Economía Informa, 403, 91-101. https://doi.org/10.1016/j.ecin.2017.05.006
OEC. (2020). Ácido láctico, sus sales y sus ésteres en México. https://cutt.ly/5LpUoCe
Rafiq, M.A, y Kazmi, S.M. (2017). Impact of aid, export, and gdp per capita on the foreign direct investment (panel data analysis of twenty African and Asian economies). Journal of ISOSS 2017, 3(1), 73-80. https://cutt.ly/lTUiUBq
Rebollar-Rebollar, E., Rebollar-Rebollar, S., Gómez-Tenorio, G., and Guzmán-Soria, E. (2019). Efecto de las importaciones en la oferta regional de carne de pollo en México, 1996-2016. Tropical and Subtropical Agroecosystems, 22 (2019), 465-475. https://cutt.ly/XTUoW8J
SEDARPA. (2019). Veracruz se afianza como primer productor nacional de caña y de azúcar. https://cutt.ly/fTUoMuK
Salmerón-Gómez, R., Rodríguez-Sánchez, A., and García-García, C. (2020). Diagnosis and quantification of the non-essential collinearity. Computational Statistics, 35(2), 647-666. https://doi.org/10.1007/s00180-019-00922-x
SEMARNAT. (2018). Contaminación por plásticos en el océano. Cifras alarmantes. https://cutt.ly/nTUpqN2
SEMARNAT. (2020). Diagnóstico Básico para la Gestión Integral de los Residuos. https://cutt.ly/eTUpaxM
SIAP. (2020). Anuario estadístico de la producción agrícola. https://cutt.ly/bTUpcmW
SIAVI. (2020). Sistema de Información Comercial Vía Internet. https://cutt.ly/iTUpUun
Silalertruksa, T., Pongpat, P., y Gheewala, S. H. (2017). Life cycle assessment for enhancing environmental sustainability of sugarcane biorefinery in Thailand. Journal of Cleaner Production, 140, 906–913. https://doi.org/10.1016/j.jclepro.2016.06.010
Published
2022-08-04
How to Cite
Castillo-Martínez, J., Hernández-Rosas, F., Ríos-Corripio, M., Varela-Santos, E., Lizardi-Jiménez, M., & Hernández-Martínez, R. (2022). Potential supply of lactic acid as a diversification alternative of the sugar agro-industry in Veracruz, Mexico. Revista De La Facultad De Agronomía De La Universidad Del Zulia, 39(3), e223939. Retrieved from https://produccioncientificaluz.org/index.php/agronomia/article/view/38557
Section
Socioeconomics