LA PROTOTIPO DE QUEMADOR DE RESIDUOS PARA LA MITIGACIÓN DE EMISIONES DE CO y CO2 EN LA INDUSTRIA CARPINTERA DE PUERTO MALDONADO, PERÚ

Authors

DOI:

https://doi.org/10.31413/nat.v13i2.18772


Keywords:

Combustión de residuos, Contaminación atmosférica, Eficiencia energética, Gestión de residuos, Microempresas carpinteras, Sostenibilidad ambiental

Abstract

Micro carpentry businesses generate large amounts of wood waste that, in many cases, are either discarded or burned outdoors, significantly contributing to environmental pollution. In this context, the aim of the research was to evaluate the capacity of a prototype burner to reduce CO and CO2 emissions resulting from the combustion of these wastes in Puerto Maldonado, Madre de Dios. To achieve this, the most common types of wood waste in local carpentry workshops were characterized, and combustion tests were conducted both outdoors and using the prototype burner. Data were recorded on the temperature and pollutant gas emissions generated in both scenarios. The results demonstrated that the prototype burner produced clean thermal energy, suggesting its viability as a solution for applications in wood drying chambers in small carpentry businesses. This study provides valuable evidence of the effectiveness of the prototype burner in reducing environmental pollution from CO and CO2 emissions, offering a sustainable solution to the waste management problem in the carpentry industry.

References

ALTUNKAYA, K. B.; CIVAN, M.; YURDAKUL, S., Determination of combustion characteristics of selected waste wood samples and two local lignites by thermogravimetric analysis. En: SOGUT, M. Z.; KARAKOC, T. H.; SECGIN, O.; DALKIRAN, A. (Eds.) International Symposium on Energy Management and Sustainability, 2022. Proceedings… Cham: Springer International Publishing, pp. 293-299. , 2023. https://doi.org/10.1007/978-3-031-30171-1_32

ARAUJO, A.; PARADA, A.; TERÁN, J.; BAKER, T.; FELDPAUSCH, T.; PHILLIPS, O.; BRIENEN, R. Necromasa de los bosques de Madre de Dios, Perú; una comparación entre bosques de tierra firme y de bajíos. Revista Peruana de Biología, v. 18, n. 1, p. 113- 118, 2011. https://doi.org/10.15381/rpb.v18i1.155

ARQUIÑIGO, C. M.; DIAZ ENCINAS, A. I.; ARQUIÑIGO, N.M. Spatial planning of the timber industry and the social-environmental and economic impact in Pucallpa-ucayali (Peru), 2000-2019. WSEAS Transactions on Environment and Development, v. 17, p. 583-594, 2021. https://doi.org/10.37394/232015.2021.17.56

CARNEVALE, M.; PARIS, E.; VINCENTI, B.; PALMA, A.; SALERNO, M.; GUERRIERO, E.; MANCINI, R.; CALCOPIETRO, M.; GALLUCCI, F. Combustion and emission analysis of spent mushroom compost and forestry woodchip for management and energy production. Fire, v. 6, n. 1, e17, 2022. https://doi.org/10.3390/fire6010009

CHOIŃSKI, B.; SZATYŁOWICZ, E.; ZGŁOBICKA, I.; YLIDIZ, M. J. A Critical investigation of certificated industrial wood pellet combustion: influence of process conditions on CO/CO2 emission. Energies, v. 16, n. 1, e13, 2022. https://doi.org/10.3390/en16010250

CHOJNACKI, J.; KIELAR, J.; KUCZYŃSKI, W.; NAJSER, T.; KUKIEŁKA, L.; FRANTÍK, J.; BERNER, B.; PEER, V.; KNUTEL, B.; GAZE, B. Analysis of the effect of Fe2O3 addition in the combustion of a wood-based fuel. Materials, v. 15, n. 21, e14, 2022. https://doi.org/10.3390/ma15217740

DERNBECHER, A.; DIEGUEZ-ALONSO, A.; ORTWEIN, A.; TABET, F. Review on modelling approaches based on computational fluid dynamics for biomass combustion systems: focus on fixed bed and moving grate systems. Biomass Conversion and Biorefinery, v. 9, n. 1, p. 129-182, 2019. https://doi.org/10.1007/s13399-019-00370-z

DIEDERICHS, S. Empowering woodworking industry stakeholders to reduce environmental impacts. Hamburg: Universität Hamburg. 2015. Disponible en: https://citeseerx.ist.psu.edu/document?repid=rep1&type=pdf&doi=2bf2a88388b7c99fd4200b9acb90959a66f2f048

FOSTER, R.; PARKER, T.; GENTRY, A. (Orgs.). The Tambopata-Candamo reserved zone of southeastern Perú: a biological assessment. Washington, DC: Conservation International, Department of Conservation Biology, 1994. 192p. (RAP working papers, 6).

GARCÍA-SÁNCHEZ, G.; CHACÓN-VELASCO, J.; FUENTES-DÍAZ, D.; JARAMILLO-IBARRA, J.; MARTÍNEZ-MORALES, J. CFD modelling of biomass boilers - a review of the state of the art. Respuestas, v. 25, n. 3, p.262-273, 2020. https://doi.org/10.22463/0122820X.2462

GAZE, B.; WOJTKO, P.; KNUTEL, B.; KOBEL, P.; BOBROWICZ, K.; BUKOWSKI, P.; CHOJNACKI, J.; KIELAR, J. Influence of catalytic additive application on the wood-based waste combustion process. Energies, v. 16, n. 4, e13, 2023. https://doi.org/10.3390/en16042055

HODŽIĆ, N.; KADIC, K. Co-firing of coal and woody biomass under conditions of reburning technology with natural gas. International Journal of Renewable Energy Development, v. 12, n. 3, p. 440-447, 2023. https://doi.org/10.14710/ijred.2023.50250

KADIĆ, K.; HODŽIĆ, N. Flue gas emissions on the oxygen-enriched combustion of brown coal and woody biomass. En: KARABEGOVIC, I.; KOVAČEVIĆ, A.; MANDZUKA, S. (Eds.). New Technologies, Development and Application VI. Cham: Springer Nature Switzerland, v. 707. p. 95-103, 2023. https://doi.org/10.1007/978-3-031-34721-4_11

KOHNESHAHRI, M. H.; MOHAMMADYAN, M.; KHANI, M.; POURHOSSEIN, M.; DASTAKZAN, B. Designing a local exhaust ventilation system to control Toluene Diisocyanate and dust in woodworking industries. International Journal of Occupational Hygiene, v. 8, n. 4, p. 223-229, 2017.

MICHALSKI, K.; GEMBALSKA-KWIECIEŃ, A.; MUSIOŁ, A.; OLEJÁROVÁ, Š. Impact study of a dust removal system on reduction of selected health hazards of employees in carpentry. Multidisciplinary Aspects of Production Engineering, v. 1, n. 1, p. 323-329, 2018. https://doi.org/10.2478/mape-2018-0041

OLUWASANMI, I. A.; SURAJUDEEN, O. O. Thermogravimetric analysis of high- and low-density sawdust under nitrogen gas atmosphere. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, v. 45, n. 3, p. 8703-8715, 2023. https://doi.org/10.1080/15567036.2023.2232746

OZGEN, S.; CERNUSCHI, S.; CASERINI, S. An overview of nitrogen oxides emissions from biomass combustion for domestic heat production. Renewable and Sustainable Energy Reviews, v. 135, e9, 2021. https://doi.org/10.1016/j.rser.2020.110113

PORTAL-CAHUANA, L. A.; KOHAGURA-ARRUNÁTGUI, J. A. H.; FLORES, C. E. M.; FRÍAS-QUIÑONES, T. de M.; TOMAZELLO-FILHO, M. Wood anatomical structure and density of Tachigali aubl species occurring in the southeastern peruvian Amazon forest. Revista Floresta, v. 53, n. 2, p. 174-183, 2023. https://doi.org/10.5380/rf.v53 i2.83247

R Core Team. R: A Language and Environment for Statistical Computing (Versión 4.4.3) [Software]. R Foundation for Statistical Computing. 2025. https://www.R-project.org/

TUCKI, K.; ORYNYCZ, O.; WASIAK, A.; ŚWIĆ, A.; MIESZKALSKI, L.; WICHŁACZ, J. Low emissions resulting from combustion of forest biomass in a small-scale heating device. Energies, v. 13, n. 20, e18, 2020. https://doi.org/10.3390/en13205495

VARINY, M.; VARGA, A.; RIMÁR, M.; JANOŠOVSKÝ, J.; KIZEK, J.; LUKÁČ, L.; JABLONSKÝ, G.; MIERKA, O. Advances in Biomass Co-Combustion with Fossil Fuels in the European Context: A Review. Processes, v. 9, n. 1, e34, 2021. https://doi.org/10.3390/pr9010100

VON MÜHLEN BRANDALISE, I.; CÉSAR, P. M.; DE SOUZA RÊGO, C.C. Wood, management and dust: analysis of the Context of Production of Goods and Services (CPGS) of an academic woodwork. Work, v. 41, p. 5485-5487, 2012. https://doi.org/10.3233/WOR-2012-0860-5485

ZEPNER, L.; KARRASCH, P.; WIEMANN, F.; BERNARD, L. ClimateCharts.net – an interactive climate analysis web platform. International Journal of Digital Earth, v. 14, n. 3, p. 338-356, 2021. https://doi.org/10.1080/17538947.2020.1829112

ZHANG, X.; WANG, Y.-P.; PENG, S.; RAYNER, P. J.; CIAIS, P.; SILVER, J. D.; PIAO, S.; ZHU, Z.; LU, X.; ZHENG, X. Dominant regions and drivers of the variability of the global land carbon sink across timescales. Global Change Biology, v. 24, n. 9, p. 3954-3968, 2018. https://doi.org/10.1111/gcb.14275

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Published

2025-05-28

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Section

Engenharia Florestal / Forest Engineering

How to Cite

LA PROTOTIPO DE QUEMADOR DE RESIDUOS PARA LA MITIGACIÓN DE EMISIONES DE CO y CO2 EN LA INDUSTRIA CARPINTERA DE PUERTO MALDONADO, PERÚ. (2025). Nativa, 13(2), 308-317. https://doi.org/10.31413/nat.v13i2.18772

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