Word concurrency network map

Publicado

2024-12-09

Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy

Análisis de la producción científica sobre la evaluación de riesgos ambientales en ecosistemas con enfoque de economía circular

DOI:

https://doi.org/10.15446/dyna.v91n234.114847

Palabras clave:

bibliometric analysis, circular economy, ecosystems, quantitative research, environmental risks (en)
análisis bibliométrico, economía circular, ecosistemas, investigación cuantitativa, riesgos ambientales (es)

Descargas

Autores/as

Ecosystems are currently at risk, and scientific methods have been developed to assess these impacts. In this scenario, the circular economy makes it possible to reuse raw materials and reduce waste. The objective of the research is to analyze the scientific production related to the evaluation of environmental risks in ecosystems with a circular economy approach. Quantitative research was carried out, with a retrospective and descriptive approach, from a bibliometric study in the SCOPUS database in the period 2014 - 2024. The peak of research was 4, where research articles predominated with 7 in 12 areas of knowledge. The most producing country was the United States. The most producing journal was Thunderbird International Business Review with 159. four research lines and their gaps were identified. Environmental risk assessment is much more than a legal requirement; it is an opportunity to demonstrate an organization's commitment to sustainability.

Los ecosistemas en la actualidad se encuentran en riesgo, por lo que se han desarrollado métodos científicos para evaluar estos impactos. En este escenario, la economía circular permite reutilizar materias primas y reducir los residuos. El objetivo de la investigación es analizar la producción científica relacionada con la evaluación de riesgos ambientales en ecosistemas con enfoque de economía circular. Se llevó a cabo una investigación cuantitativa, con un enfoque retrospectivo y descriptivo, a partir de un estudio bibliométrico en la base de datos SCOPUS en el período 2014 – 2024. El pico de investigaciones fue 4, donde predominaron los artículos de investigación con 7 en 12 áreas del conocimiento. El país más productor fue Estados Unidos. La revista más productora fue Thunderbird International Business Review con 159. Se identificaron 4 líneas de investigación y sus brechas. La evaluación de riesgos ambientales es mucho más que un requisito legal; constituye una oportunidad para demostrar el compromiso de una organización con la sostenibilidad.

Referencias

[1] Reyes-Fornet, A., Saabedra-García, J.F., Zúñiga-Igarza, L.-M., and Fornet-Hernández, E.B., Modelo conceptual del patrimonio natural en la gestión ambiental para la conservación de ecosistemas. Ecosistemas, 29(2), pp. 2003-2003, 2020. DOI: https://doi.org/10.7818/ECOS.2003

[2] Ao, A., Changkija, S., and Tripathi, S.K., Patterns of forest community diversity, regeneration potential and carbon storages along an altitudinal gradient in Eastern Himalaya, India. Environmental and Sustainability Indicators, 22, art. 100399, 2024. DOI: https://doi.org/10.1016/j.indic.2024.100399

[3] Zou, K., Zhu, Y., Jiang, Y., Ma, S., Li, M., Zhao, W., and Wang, J. Distinct stochastic processes drive bacterial community assembly and co-occurrence patterns with common antibiotic resistance genes in two highly urbanised coastal ecosystems of the Pearl River Estuary. Journal of Hazardous Materials, 459, art. 132161, 2023. DOI: https://doi.org/10.1016/j.jhazmat.2023.132161

[4] Buda, J., Łokas, E., Pietryka, M., Richter, D., Magowski, W., Iakovenko, N.S., Porazinska, D.L., Budzik, T., Grabiec, M., and Grzesiak, J., Biotope and biocenosis of cryoconite hole ecosystems on Ecology Glacier in the maritime Antarctic. Science of The Total Environment, 724, art. 138112, 2020. DOI: https://doi.org/10.1016/j.scitotenv.2020.138112

[5] Robert, J., Kubler, S., and Ghatpande, S., Enhanced lightning Network (off-chain)-based micropayment in IoT ecosystems. Future Generation Computer Systems, 112, pp. 283-296, 2020. DOI: https://doi.org/10.1016/j.future.2020.05.033

[6] Kassa, G., Bekele, T., Demissew, S., and Abebe, T., Plant species diversity, plant use, and classification of agroforestry homegardens in southern and southwestern Ethiopia. Heliyon, 9(6), art. e16341, 2023. DOI: https://doi.org/10.1016/j.heliyon.2023.e16341

[7] Giraldo, C., Cresson, P., Mackenzie, K., Fontaine, V., Loots, C., Delegrange, A., and Lefebvre, S., Insights into planktonic food-web dynamics through the lens of size and season. Scientific Reports, 14(1), pp., 2024. DOI: https://doi.org/10.1038/s41598-024-52256-4

[8] Bekchanova, M., Campion, L., Bruns, S., Kuppens, T., Lehmann, J., Jozefczak, M., Cuypers, A., and Malina, R., Biochar improves the nutrient cycle in sandy-textured soils and increases crop yield: a systematic review. Environmental Evidence, 13(1), art. 3, 2024. DOI: https://doi.org/10.1186/s13750-024-00326-5

[9] Zheng, Y., Li, G., Xing, Y., Xu, W., and Yue, T., Adsorption removal of mercury from flue gas by metal selenide: a review. Journal of Environmental Sciences (China), 148, pp. 420-436, 2025. DOI: https://doi.org/10.1016/j.jes.2023.02.034

[10] Chappell, J., and Thorpe, S.K.S., The role of great ape behavioral ecology in One Health: implications for captive welfare and re-habilitation success. American Journal of Primatology, 84(4-5), pp., 2022. DOI: https://doi.org/10.1002/ajp.23328

[11] Basole, R.C., Park, H., and Seuss, C.D., Complex business ecosystem intelligence using AI-powered visual analytics. Decision Support Systems, 178, art. 114133, 2024. DOI: https://doi.org/10.1016/j.dss.2023.114133

[12] Cui, M., Bao, B., Wu, Y., Hui, N., Li, M.-H., Wan, S., Han, S., Ren, F., and Zheng, J., Light grazing alleviates aeolian erosion–deposition effects on microbial communities in a semi-arid grassland. Ecological Processes, 13(1), art. 00510-y, 2024. DOI: https://doi.org/10.1186/s13717-024-00510-y

[13] Li, Q., Liu, R., Jing, Z., Wei, Y., Tu, S., Yu, H., Gao, H., and Yuan, P., High potential in synergizing the reduction of dissolved organic carbon concentration and carbon dioxide emissions for submerged-vegetation-covered river networks. Journal of Environmental Sciences (China), 151, pp. 298-309, 025. DOI: https://doi.org/10.1016/j.jes.2024.04.007

[14] Zhang, X., Liu, L., Zhao, T., Wang, J., Liu, W., and Chen, X., Global annual wetland dataset at 30 m with a fine classification system from 2000 to 2022. Sci Data, 11, art. 310, 2024. DOI: https://doi.org/10.1038/s41597-024-03143-0

[15] Findlay, C.R., Aleynik, D., Farcas, A., Merchant, N.D., Risch, D., and Wilson, B., Auditory impairment from acoustic seal deterrents predicted for harbour porpoises in a marine protected area. Journal of Applied Ecology, 58(8), pp. 1631-1642, 2021. DOI: https://doi.org/10.1111/1365-2664.13910

[16] Soleimani, N., Rahimnejad, M., and Ezoji, H., An overview of electrochemical sensing strategies for methylparaben analysis. Journal of the Taiwan Institute of Chemical Engineers, 159, pp. 105457, 2024. DOI: https://doi.org/10.1016/j.jtice.2024.105457

[17] Ipinza, R., Barros, S., De la Maza, C.L., Jofré, P., and González, J., Bosques y Biodiversidad. Ciencia & Investigación Forestal, 27(1), pp. 101-132, 2021. DOI: https://doi.org/10.52904/0718-4646.2021.475

[18] Hernández-García, M., Granados-Sánchez, D., and Sánchez-González, A. Productividad de los ecosistemas en las regiones áridas. Revista Chapingo. Serie Ciencias Forestales y del Ambiente, [online]. 9(2), pp. 113-123, 2003. Available at: http://www.redalyc.org/articulo.oa?id=62913142002

[19] Palacios-Luis, F.J., and Solorzano-Tarazona, D.C., Determinación de plomo y cadmio en plancton de la playa de Pucusana durante el 2018, Tesis para optar el Título Profesional de Toxicólogo, Universidad Nacional Mayor de San Marcos Lima, Perú, 2024.

[20] Hryhorczuk, D., Levy, B.S., Prodanchuk, M., Kravchuk, O., Bubalo, N., Hryhorczuk, A., and Erickson, T.B., The environmental health impacts of Russia’s war on Ukraine. Journal of Occupational Medicine and Toxicology, 19(1), art. 00398-y, 2024 DOI: https://doi.org/10.1186/s12995-023-00398-y

[21] Wang, X., and Wu, L., Intergenerational differences in the environmental concerns of plastic waste business owners: environmental knowledge, environmental risk exposure, and community connection as mediators. Humanities and Social Sciences Communications, 11(1), art. 03018-0, 2024. DOI: https://doi.org/10.1057/s41599-024-03018-0

[22] Navarro-Falcón, V.M., Jiménez-González, Y., Vera-Carroza, R., and Villa-Janeiro, M., Situación de la contaminación ambiental de un sector de Cienfuegos (Cuba) para el manejo integrado de zonas costeras. Ciencia en su PC, [online]. 1(3), pp. 1-15, 2022. Available at: https://www.redalyc.org/journal/1813/181374718001/181374718001.pdf

[23] Guo, Z., Hong, M., Shi, J., Zhang, Y., Qian, L., and Li, H., Risk assessment of unmanned underwater platforms in the South China Sea marine environment based on two-dimensional density-weighted operator and cloud barycentric Bayesian combination. Ocean Engineering, 283, art. 115184, 2023. DOI: https://doi.org/10.1016/j.oceaneng.2023.115184

[24] Sotelo-Pérez, I., Sotelo-Pérez, M., and Sotelo-Navalpotro, J.A., Riesgos antrópicos y tecnológicos, el turismo como alternativa? estudio de caso. Cuadernos de turismo (49), pp. 261-288, 2022. DOI: https://doi.org/10.6018/turismo.521911

[25] Lee, K.C., Guiney, P.D., Menzie, P.D., and Belanger, S.E., Advancing the weight of evidence approach to enable chemical environmental risk assessment for decision-making and achieving protection goals. Integrated Environmental Assessment and Management, 19(5), pp. 1188-1191, 2023. DOI: https://doi.org/10.1002/ieam.4803

[26] Singh, M., Periasamy, A., Goyal, P., Goswami, S., and Yadav, A., Environmental risk assessment for Zika, Nipah virus and Scrub typhus disease in a district of north India: first step towards one health. Journal of Zoonotic Diseases, 6(1), pp. 25-32, 2022. DOI: https://doi.org/10.22034/JZD.2022.14408

[27] González-Villanueva, L., Gutiérrez-Quintana, Y., Gutiérrez-Anillo, J.M., Baños-Paiffer, N., Bolaños-Queral, G.M., Hall-Puebla, N., Troya-Jiménez, Y., and Benítez-Zamora, J.D., Risk management for changing working seed lots at finlay Vaccine Institute. VacciMonitor, [online]. 31(1), pp. 15-24, 2022. Available at: https://www.medigraphic.com/pdfs/vaccimonitor/vcm-2022/vcm221d.pdf

[28] Wang, F., Zheng, P., Dai, J., Wang, H., and Wang, R., Fault tree analysis of the causes of urban smog events associated with vehicle exhaust emissions: a case study in Jinan, China. Science of the Total Environment, 668, pp. 245-253, 2019. DOI: https://doi.org/10.1016/j.scitotenv.2019.02.348

[29] Fatemi, F., Dehdashti, A., and Jannati, M., Implementation of chemical health, safety, and environmental risk assessment in laboratories: a case-series study. Frontiers in Public Health, 10, art. 898826, 2022. DOI: https://doi.org/10.3389/fpubh.2022.898826

[30] Montaño, A., Torres, Y., Herrera, E., Rincon, J., Velasquez, P., and Santis, A., Analysis of the operational risk of the process pasteurization and mixing in a dairy processing plant, using the Hazop Methodology. Chemical Engineering Transactions, 82, pp. 97-102, 2020. DOI: https://doi.org/10.3303/CET2082017

[31] Generowicz, A., and Iwanejko, R., Environmental risks related to the recovery and recycling processes of waste electrical and electronic equipment (WEEE). Problemy Ekorozwoju/Problems of Sustainable Development, [online]. 12(2), pp. 181-192, 2017. Available at: https://papers.ssrn.com/sol3/papers.cfm?abstract_id=3000872

[32] Machado, T.S.S., Leal, P.H.A.daC., Cardoso, T.A.S., Borges, L.daS., Santos, C.J.deM., and Oliveira, A.M.Sant’A., Risk and safety assessment in the foundry process in the metallurgical industry. Revista Produção Online, 23(3), pp. 5104-5104, 2023. DOI: https://doi.org/10.14488/1676-1901.v23i3.5104

[33] Mishra, J.L., Chiwenga, K.D., Mishra, N., and Choudhary, S., Extending dynamic capabilities towards lean thinking in humanitarian supply chains. Production Planning & Control, 33(6-7), pp. 655-675, 2022. DOI: https://doi.org/10.1080/09537287.2020.1834136

[34] Pavlova, A., Daniliuk, M., Pavlov, A., Savoskula, V., and Bendenko E., Applying a risk-based approach to the analysis of environmental aspects (on the example of dairy industry enterprise), in: International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 2020, 2020, pp. 67-74. DOI: https://doi.org/10.5593/sgem2020/5.2/s21.008

[35] Nogueira-López, A., La huella ecológica. El establecimiento de indicadores ambientales y su significación para el derecho. Revista Catalana de Dret Ambiental, 10(1), pp. 1-25, 2019. DOI: https://doi.org/10.17345/rcda2589

[36] Pawlowski, S., Luetjens, L.H., Preibisch, A., Acker, S., and Petersen-Thiery, M., Cosmetic UV filters in the environment—state of the art in EU regulations, science and possible knowledge gaps. International Journal of Cosmetic Science, 45(S1), pp. 52-66, 2023. DOI: https://doi.org/10.1111/ics.12898

[37] Tajima, G., Huh, S., Schmidt, N.A., Macdonald, J.C., Fleischmann, T., and Wonnacott, K.M., Impact of genetically modified organism requirements on gene therapy development in the EU, Japan, and the US. Molecular Therapy Methods and Clinical Development, 26, pp. 74-83, 2022. DOI: https://doi.org/10.1016/j.omtm.2022.05.012

[38] Prieto-Sandoval, V., Jaca-García, C., and Ormazabal-Goenaga, M., Economía circular: relación con la evolución del concepto de sostenibilidad y estrategias para su implementación. Memoria Investigaciones en Ingeniería, [online]. 17, pp. 85-95, 2017. Available at: https://dadun.unav.edu/bitstream/10171/53653/1/Economia_Circular.pdf

[39] Ridaura, G., La Economía circular en Ecuador: perspectivas de cumplimiento de los ODS en la era Post COVID-19. CienciAmérica, 9(4), pp. 19-26, 2020. DOI: https://doi.org/10.33210/ca.v9i4.339

[40] Raudales-Garcia, E.V., Acosta-Tzin, J.V., and Aguilar-Hernández, P.A., Economía circular: una revisión bibliométrica y sistemática. Región Científica, 3(1), art. 2024192, 2024. DOI: https://doi.org/10.58763/rc2024192

[41] Sanabria, M., Construir nuevos espacios sostenibles respetando la diversidad cultural desde el nivel local. Región Científica, 1(1), art. 20222, 2022. DOI: https://doi.org/10.58763/rc20222

[42] Sánchez-Suárez, Y., Trujillo-García, L., Hernández-Nariño, A., Cuervo-Saiz, L., Sablón-Cossío, N., and Marqués -León, M., Una aproximación a la economía circular y su contribución en el contexto de la pandemia. Infodir [Online]. (40), art. e1336, 2023. Available at: https://scielo.sld.cu/pdf/infd/n40/1996-3521-infd-40-e1336.pdf

[43] Almeida-Guzmán, M., and Díaz-Guevara, C., Economía circular, una estrategia para el desarrollo sostenible. Avances en Ecuador. Estudios de la Gestión: Revista Internacional de Administración, 8(8), pp. 34-56, 2020. DOI: https://doi.org/10.32719/25506641.2020.8.10

[44] Sánchez-Suárez, Y., Marqués-León, M., Hernández-Nariño, A., and Suárez-Pérez, M., Metodología para el diagnóstico de la gestión de trayectorias de pacientes en hospitales. Región Científica, 2(2), art. 2023115, 2023. DOI: http://doi.org/10.58763/rc2023115

[45] Tápanes-Suárez, E., Bosch-Nuñez, O., Sánchez-Suárez, Y., Marqués-León, M., and Santos-Pérez, O., Sistema de indicadores para el control de la sostenibilidad de los centros históricos asociada al transporte. Región Científica, 2(1), art. 202352, 2023. DOI: https://doi.org/10.58763/rc202352

[46] Sánchez-Suárez, Y., Pérez-Castañeira, J.A., Sangroni-Laguardia, N., Cruz-Blanco, C., and Medina-Nogueira, Y.E., Retos actuales de la logística y la cadena de suministro. Ingeniería Industrial, [online]. XLII(1), pp. 1-12, 2021. Available at: https://rii.cujae.edu.cu/index.php/revistaind/article/download/1079/992

[47] Sánchez-Suárez, Y., Pérez-Gamboa, A., Hernández-Nariño, A., Díaz-Chieng, L., Marqués-León, M., Pancorbo-Sandoval, J., and Rodríguez-Torres, E., Cultura hospitalaria y responsabilidad social: un estudio mixto de las principales líneas para su desarrollo. Salud, Ciencia y Tecnología-Serie de Conferencias, 2, pp. 451-451, 2023. DOI: https://doi.org/10.56294/sctconf2023451

[48] Sarmentero-Bon, I., Sánchez-Suárez, Y., Rodríguez-Sánchez, Y., Bravo-Macías, C.C., and Torrens-Pérez, M.E., Bibliometría sobre cultura organizacional en el sector de la salud, ante la Covid-19. Universidad y Sociedad, [online]. 14(S6), pp. 427-436, 2022. Available at: https://rus.ucf.edu.cu/index.php/rus/article/download/3474/3418

[49] Flores-Hidalgo, B.L., and Hurtado-Moreno, J.J., Impact of industrial maintenance on the supply chain in a textile company in times of pandemic, in: 2022 8th International Engineering, Sciences and Technology Conference (IESTEC), Panama, Panama, 2022, pp. 1-8. DOI: https://doi.org/10.1109/IESTEC54539.2022.00010

[50] Gonzales-Romero, A., Huamani-Martinez, I.J., Quiroz-Flores, J.C., and Diaz-Garay, B.H., Production management model based on Lean and DDMRP tools to increase the rate of project compliance in manufacturing SMEs in the metalworking sector, in: 2022 8th International Engineering, Sciences and Technology Conference (IESTEC), Panama, 2022, pp. 38-45. DOI: https://doi.org/10.1109/IESTEC54539.2022.00015

[51] Raheem, A., Sikarwar, V.S., He, J., Dastyar, W., Dionysiou, D.D., Wang, W., and Zhao, M., Opportunities and challenges in sustainable treatment and resource reuse of sewage sludge: a review. Chemical Engineering Journal, 337, pp. 616-641, 2018. DOI: https://doi.org/10.1016/j.cej.2017.12.149

[52] Luukkonen, T., and Pehkonen, S.O., Peracids in water treatment: a critical review. Critical Reviews in Environmental Science and Technology, 47(1), pp. 1-39, 2017. DOI: https://doi.org/10.1080/10643389.2016.1272343

[53] Gamito, G., Monteiro, C.J., Dias, M.C., Oliveira, H., Silva, A.M., Faustino, M.A., and Silva, S., Impact of Fe3O4-porphyrin hybrid nanoparticles on wheat: physiological and metabolic advance. Journal of Hazardous Materials, 471, art. 134243, 2024. DOI: https://doi.org/10.1016/j.jhazmat.2024.134243

[54] Yi, J., Li, J., and Chen, L., Ecosystem social responsibility in international digital commerce. Journal of International Business Studies, [online]. 54(1), pp. 24-41, 2023. Available at: https://link.springer.com/article/10.1057/s41267-022-00561-3

[55] Lu, Y., and Abeysekera, I., Do investors and analysts value strategic corporate social responsibility disclosures? Evidence from China. Journal of International Financial Management & Accounting, 32(2), pp. 147-181, 2021. DOI: https://doi.org/10.1111/jifm.12126

[56] Kjellén, M., Wastewater governance and the local, regional and global environments. Water Alternatives, [online]. 11(2), pp. 219-237, 2018. Available at: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048136033&partnerID=40&md5=3cad4fcac7c2afa1a5bf582a1383d302

[57] Lúcio, D.S.G., Menegassi, L.C., Lima, A.C.M., Gomes, T.M., and Tommaso, G., Assessing the phytotoxicity of wastewater from the structured-bed hybrid baffled reactor (SBHBR) for agricultural reuse during the germination phase. Science of the Total Environment, 918, art. 170449, 2024. DOI: https://doi.org/10.1016/j.scitotenv.2024.170449

[58] Lloyd, J., Olmos, J., González, A., Hernández, C., Deago, E., James, A., Salazar, E., and Broce, K., Occurrence of organochlorine compounds in biosolids from wastewater treatment plants in Panama city, in: Proceedings - 2022 8th International Engineering, Sciences and Technology Conference, IESTEC 2022, pp. 602-607. DOI: https://doi.org/10.1109/IESTEC54539.2022.00100

[59] Marczak, D., Lejcuś, K., Lejcuś, I., and Misiewicz, J., Sustainable innovation: turning waste into soil additives. Materials, 16(7), pp., 2023. DOI: https://doi.org/10.3390/ma16072900

[60] Shokri, A., and Sanavi-Fard, M., Water-energy nexus: cutting edge water desalination technologies and hybridized renewable-assisted systems; challenges and future roadmaps. Sustainable Energy Technologies and Assessments, 57, pp., 2023. DOI: https://doi.org/10.1016/j.seta.2023.103173

[61] Martins, M., Sousa, F., Soares, C., Sousa, B., Pereira, R., Rubal, M., and Fidalgo, F., Beach wrack: discussing ecological roles, risks, and sustainable bioenergy and agricultural applications. Journal of Environmental Management, 356, pp., 2024. DOI: https://doi.org/10.1016/j.jenvman.2024.120526

[62] Panday, D., Bhusal, N., Das, S., and Ghalehgolabbehbahani, A., Rooted in nature: the rise, challenges, and potential of organic farming and fertilizers in agroecosystems. Sustainability (Switzerland), 16(4), art. 16041530, 2024. DOI: https://doi.org/10.3390/su16041530

Cómo citar

IEEE

[1]
Y. Sánchez-Suárez, J. A. Pancorbo-Sandoval, S. E. Leyva-Ricardo, y V. Sánchez-Castillo, «Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy», DYNA, vol. 91, n.º 234, pp. 116–125, oct. 2024.

ACM

[1]
Sánchez-Suárez, Y., Pancorbo-Sandoval , J.A., Leyva-Ricardo, S.E. y Sánchez-Castillo, V. 2024. Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy. DYNA. 91, 234 (oct. 2024), 116–125. DOI:https://doi.org/10.15446/dyna.v91n234.114847.

ACS

(1)
Sánchez-Suárez, Y.; Pancorbo-Sandoval , J. A.; Leyva-Ricardo, S. E.; Sánchez-Castillo, V. Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy. DYNA 2024, 91, 116-125.

APA

Sánchez-Suárez, Y., Pancorbo-Sandoval , J. A., Leyva-Ricardo, S. E. & Sánchez-Castillo, V. (2024). Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy. DYNA, 91(234), 116–125. https://doi.org/10.15446/dyna.v91n234.114847

ABNT

SÁNCHEZ-SUÁREZ, Y.; PANCORBO-SANDOVAL , J. A.; LEYVA-RICARDO, S. E.; SÁNCHEZ-CASTILLO, V. Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy. DYNA, [S. l.], v. 91, n. 234, p. 116–125, 2024. DOI: 10.15446/dyna.v91n234.114847. Disponível em: https://revistas.unal.edu.co/index.php/dyna/article/view/114847. Acesso em: 27 dic. 2025.

Chicago

Sánchez-Suárez, Yasniel, José Armando Pancorbo-Sandoval, Sonia Emilia Leyva-Ricardo, y Verenice Sánchez-Castillo. 2024. «Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy». DYNA 91 (234):116-25. https://doi.org/10.15446/dyna.v91n234.114847.

Harvard

Sánchez-Suárez, Y., Pancorbo-Sandoval , J. A., Leyva-Ricardo, S. E. y Sánchez-Castillo, V. (2024) «Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy», DYNA, 91(234), pp. 116–125. doi: 10.15446/dyna.v91n234.114847.

MLA

Sánchez-Suárez, Y., J. A. Pancorbo-Sandoval, S. E. Leyva-Ricardo, y V. Sánchez-Castillo. «Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy». DYNA, vol. 91, n.º 234, octubre de 2024, pp. 116-25, doi:10.15446/dyna.v91n234.114847.

Turabian

Sánchez-Suárez, Yasniel, José Armando Pancorbo-Sandoval, Sonia Emilia Leyva-Ricardo, y Verenice Sánchez-Castillo. «Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy». DYNA 91, no. 234 (octubre 22, 2024): 116–125. Accedido diciembre 27, 2025. https://revistas.unal.edu.co/index.php/dyna/article/view/114847.

Vancouver

1.
Sánchez-Suárez Y, Pancorbo-Sandoval JA, Leyva-Ricardo SE, Sánchez-Castillo V. Analysis of scientific production on environmental risk assessment in ecosystems with a circular economy. DYNA [Internet]. 22 de octubre de 2024 [citado 27 de diciembre de 2025];91(234):116-25. Disponible en: https://revistas.unal.edu.co/index.php/dyna/article/view/114847

Descargar cita

CrossRef Cited-by

CrossRef citations0

Dimensions

PlumX

Visitas a la página del resumen del artículo

354

Descargas

Los datos de descargas todavía no están disponibles.