ECO-FRIENDLY PACKAGING OF TECHNOLOGICAL PRODUCTS: AN ALTERNATIVE TO REDUCE POLLUTION
DOI:
https://doi.org/10.53684/csp.v4i2.104Keywords:
Eco Friendly, Pollution, Packaging, Technological ProductsAbstract
Objective: Measure the amount of time that young adults dedicate to social networks, also considering which social network they used, why, and the frustrations they have when using them. Materials and methods: Using qualitative methodology, interviews were conducted with young people in adulthood, whether artists, students, workers, etc. to know your experience on this topic. Results: Research has shown that consumers, especially in the age range of 20 to 40 years in Metropolitan Lima, show a favorable disposition towards eco-friendly packaging for technological products. Conclusions: The findings highlight the importance of adopting eco-friendly packaging in the technology industry as an effective strategy to reduce pollution.
References
Anaya Esparza LM, Villagrán de la Mora Z, Rodríguez Barajas N, Sandoval Contreras T, Nuño K, López de la Mora DA, et al. Protein–TiO2: A Functional Hybrid Composite with Diversified Applications. Coatings [Internet]. 2020 Dec 7 [cited 2024 Jul 11];10(12):1194. Available from: https://www.mdpi.com/2079-6412/10/12/1194
TRUPAL. TRUPAL. 2021 [cited 2024 Jul 11]. ¿Cuáles son los principales objetivos del packaging ecológico? Available from: https://www.trupal.com.pe/blog/cuales-son-los-principales-objetivos-del-packaging-ecologico/
Lett LA. Las amenazas globales, el reciclaje de residuos y el concepto de economía circular. Rev Argent Microbiol [Internet]. 2014 Jan [cited 2024 Jul 12];46(1):1–2. Available from: https://www.redalyc.org/pdf/2130/213030865001.pdf
Smurfit Kappa. Smurfit Kappa. 2022 [cited 2024 Jul 11]. El papel es uno de los materiales de empaque disponibles más amigables con el medio ambiente. Available from: https://www.smurfitkappa.com/pe/sustainability/better-planet-packaging/eco-friendly-packaging
Jaso Sanchez MA. El surgimiento de los bioplásticos: un estudio de nichos tecnológicos. Acta Univ [Internet]. 2020 Dec 16 [cited 2024 Jul 11];30:1–24. Available from: https://www.scielo.org.mx/scielo.php?pid=S0188-62662020000100159&script=sci_arttext
Espinoza Celiz ES, Jimenez Mejia WB. Impacto de los empaques sustentables en el comportamiento del consumidor: Identificacion e intencion de compra [Internet]. [Lima - Peru]: Universidad ESAN - Tesis de maestria; 2022 [cited 2024 Jul 11]. Available from: https://repositorio.esan.edu.pe/server/api/core/bitstreams/ece50500-9b7e-4c3b-a340-d477b7d5288e/content
Sumrin S, Gupta S, Asaad Y, Wang Y, Bhattacharya S, Foroudi P. Eco-innovation for environment and waste prevention. J Bus Res [Internet]. 2021 Jan [cited 2024 Jul 11];122:627–39. Available from: https://www.sciencedirect.com/science/article/pii/S0148296320304938
Rivera C, Contreras F, Ariza W, Bonilla S, Cruz A. Los empaques biodegradables, una respuesta a la consciencia ambiental de los consumidores. Realidad Empresarial [Internet]. 2019 May 28 [cited 2024 Jul 12];(7):2–8. Available from: https://www.researchgate.net/publication/333884799_Los_empaques_biodegradables_una_respuesta_a_la_consciencia_ambiental_de_los_consumidores
Rivera de Lopez RL. Guia metodologica para el eco-diseño de empaques de productos liquidos, envasados en vidrio, dirigida a estudiates de cuarto año de diseño grafico de la Universidad Tecnologica de El Salvador [Internet]. [La Libertad - El Salvador]: Universidad Don Bosco - Tesis de Licenciatura; 2019 [cited 2024 Jul 11]. Available from: https://bibliotecadigital.oducal.com/Record/ir-11715-2057?sid=182497
Fernandez Gamboa AA. Identificación de nuevas tecnologias de empaques biodegradables en la industria de alimentos con mayor potencial de desarrollo en Colombia [Internet]. [Bogota - Colombia]: Fundacion Universidad de America - Tesis de Licenciatura; 2019 [cited 2024 Jul 11]. Available from: https://repository.uamerica.edu.co/bitstream/20.500.11839/7252/1/405828-2019-I-GA.pdf
Iglesias Montes ML, Cyras VP, Manfredi LB, Pettarín V, Fasce LA. Fracture evaluation of plasticized polylactic acid / poly (3-HYDROXYBUTYRATE) blends for commodities replacement in packaging applications. Polym Test [Internet]. 2020 Apr [cited 2024 Jul 11];84:106375. Available from: https://ri.conicet.gov.ar/handle/11336/138898
George A, Sanjay MR, Srisuk R, Parameswaranpillai J, Siengchin S. A comprehensive review on chemical properties and applications of biopolymers and their composites. Int J Biol Macromol [Internet]. 2020 Jul [cited 2024 Jul 11];154:329–38. Available from: https://www.sciencedirect.com/science/article/pii/S0141813020312393
Ganesh KS, Sridhar A, Vishali S. Utilization of fruit and vegetable waste to produce value-added products: Conventional utilization and emerging opportunities-A review. Chemosphere [Internet]. 2022 Jan [cited 2024 Jul 11];287:132221. Available from: https://pubmed.ncbi.nlm.nih.gov/34560492/
Domínguez Soberanes J, Berger P, Hernandez Lozano LC, Ortega Fraustro D, Macias Ochoa MF, Cachutt Alvarado C. BIOPLASTIC MADE OF ORANGE PEELS. Dyna (Medellin) [Internet]. 2022 Mar 1 [cited 2024 Jul 11];97(2):203–9. Available from: https://www.revistadyna.com/Articulos/Ficha.aspx?idMenu=33094c58-1bb5-4163-8382-a0d0942862d2&Cod=10212&CambioLogin=1
Zhang Y, Pedersen JN, Eser BE, Guo Z. Biodegradation of polyethylene and polystyrene: From microbial deterioration to enzyme discovery. Biotechnol Adv [Internet]. 2022 Nov [cited 2024 Jul 11];60:107991. Available from: https://www.sciencedirect.com/science/article/pii/S0734975022000878
Muthamma K, Sunil D. Cellulose as an Eco-Friendly and Sustainable Material for Optical Anticounterfeiting Applications: An Up-to-Date Appraisal. ACS Omega [Internet]. 2022 Nov 29 [cited 2024 Jul 11];7(47):42681–99. Available from: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713864/
Meji¬a Argueta C, Soto Cardona OC, Gamez Alban HM, Moreno Moreno JP. Analisis del tamaño de empaque en la cadena de valor para minimizar costos logisticos: un caso de estudio en Colombia. Estudios Gerenciales [Internet]. 2015 Jan 26 [cited 2024 Jul 11];111–21. Available from: https://www.sciencedirect.com/science/article/pii/S0123592314001582
Planetica. Clasificación de los residuos. 2021 [cited 2024 Jul 11]. Clasificación de los residuos. Available from: https://planetica.org/clasificacion-de-los-residuos/
EFE. EFE. 2023 [cited 2024 Jul 11]. Científicos descubren un aumento “sin precedentes” de plástico en los océanos. Available from: https://efe.com/medio-ambiente/2023-03-08/cientificos-descubren-un-aumento-sin-precedentes-de-plastico-en-los-oceanos/
Gautam B, Tsai TH, Chen JT. Towards sustainable solutions: A review of polystyrene upcycling and degradation techniques. Polym Degrad Stab [Internet]. 2024 Jul [cited 2024 Jul 12];225:110779. Available from: https://www.researchgate.net/publication/379882479_Towards_Sustainable_Solutions_A_Review_of_Polystyrene_Upcycling_and_Degradation_Techniques
Su C yan, Li D, Wang L jun, Wang Y. Eco-friendly electronic food labels: Development and application of Ion-SSPB double network hydrogel. J Colloid Interface Sci [Internet]. 2024 Oct [cited 2024 Jul 11];671:154–64. Available from: https://pubmed.ncbi.nlm.nih.gov/38797141/
Rather JA, Kaur G, Shah IA, Majid D, Makroo HA, Dar BN. Sustainable gelatin-based packaging with nanoemulsified chilli seed oil for enhancing poultry meat preservation: An eco-friendly approach. Food Chemistry Advances [Internet]. 2024 Dec [cited 2024 Jul 11];5:100761. Available from: https://www.sciencedirect.com/science/article/pii/S2772753X24001576







