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Estado actual de la evaluación del ciclo de vida ambiental en procesos de soldadura manual por arco metálico (MMAW)<= /b>

&nbs= p;

Status of environmental life cycle assessment in manual metal arc welding (MMAW) processes

 


= 1=

Luis Stalin López Telenchana=

 <= /span>

https://orcid.org/0000-0001-7548-0406

 

 <= /span>

Ingeniería Industrial, Facultad de Ingeniería, Universidad Nacional de Chimborazo, Riobamba, Ecuador.

luis.lopez@unach.edu.ec= =

= 2=

Edison Alejandro Estrella Vargas

 <= /span>

https:= //orcid.org/0009-0007-6673-6845

 

 <= /span>

Ingeniería Industrial, Facultad de Ingeniería, Universidad Nacional de Chimborazo, Riobamba, Ecuador.

edison.estrella@unach.edu.ec <= o:p>

= 3=

Cristh= ian Leodan Fajardo Maigua

 <= /span>

https:= //orcid.org/0009-0008-0413-1055

 

 <= /span>

Ingeniería Industrial, Facultad de Ingeniería, Universidad Nacional de Chimborazo, Riobamba, Ecuador.

cristhian.fajardo@unach.edu.ec= <= o:p>

= 4=

Luis Á= ngel Sáenz Hidalgo

 <= /span>

https://orcid.org/0009-0004-6327-5041

 

 <= /span>

Ingeniería Industrial, Facultad de Ingeniería, Universidad Nacional de Chimborazo, Riobamba, Ecuador.

lui.saenz@unach.edu.ec<= /a> <= o:p>

 

 

Artículo de Investigación Científica y Tecnológica

Enviado: 13/1= 2/2023

Revisado: 15/= 01/2024

Aceptado: 14/= 02/2024

Publicado:05/= 04/2024

DOI: https://doi.org/10.33262/ap= .v6i2.474   

 

 

 

Cítese:

 

 

López Telenchana, L. = S., Estrella Vargas, E. A., Fajardo Maigua, C. L., & Sáenz Hidalgo, L. Án= gel. (2024). Estado actual de la evaluación del ciclo de vida ambiental en procesos de soldadura manual por arco metálico (MMAW). AlfaPublicaciones, 6(2), 112–126. https://d= oi.org/10.33262/ap.v6i2.474

 

 

 

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Esta revista = está protegida bajo una licencia Creative Commons Attribution Non Commercial No Derivatives 4.0 International. Copia de la licencia: http://creativecommons.org/licenses/by-nc-nd/4.0/

 

Palabras claves:

procesos, soldadura, manual, arco, metál= ico, ciclo, vida, ambiental.

 

Resumen

Introdu= cción: en la actualidad la soldadura es uno de los procesos de fabricación más importante en el sector manufacturero, pues u= ne dos o más piezas mediante calentamiento o mediante procesos de fundición, aplicando o no presión. La finalidad de la fabricación por procesos de soldadura es unir materiales para que cumplan requisitos o necesidades de servicio sin que ello implique costo elevados, implicaciones negativas al medio ambiente o efectos adversos a los trabajadores. Es por ello que la evaluación del ciclo de vida (ACV) es una metodología que se aplican a ni= vel ingenieril para evaluar los distintos impactos ambientales de las tecnolo= gías de soldadura, esta metodología ha sido aplicada en procesos de soldadura manual por arco metálico (MMAW), en donde el consumo excesivo de recursos como electrodos y energía necesaria para fundir los consumibles contribuy= en a la generación de impactos ambientales negativos, siendo procesos potencia= les de calentamiento global, de creación de ozono fotoquímico y eutrofización= . Objetivo: investigar el avance en el estado del arte de las evaluaciones del ciclo = de vida ambiental en procesos de soldadura MMAW. Resultados: los resultados del análisis de ciclo de vida ambiental indican que, para un c= ordón de soldadura de 1 metro de longitud mediante el proceso MMAW se consume m= ayor cantidad de recursos, como materiales de relleno y revestimientos de electrodos, además de un mayor consumo de energía eléctrica por parte de = la máquina de soldar, lo que contribuye a impactos ambientales comparativame= nte mayores a los generados en otros procesos de soldadura. Conclusiones:<= /b> se concluyó que la baja velocidad de soldadura y tasa alta de deposición conducen a tiempos elevados de soldadura en procesos MMAW, en consecuenci= a, la baja productividad y el exceso de recursos generan un mayor impacto al medio ambiente.

 

 

Keywords: Processes, welding, manual, arc, metal, cycle, life, environmental.

 

Abstract

Introduction: welding is currently one of the most important manufacturing processes in the manufacturing sector, as it joins two or m= ore parts by heating or by casting processes, applying pressure or not. The purpose of manufacturing by welding processes is to join materials to meet requirements or service needs without involving excessive costs, negative environmental implications, or adverse effects on workers. This is why the life cycle assessment (ACV) is a methodology applied at the engineering l= evel to evaluate the different environmental impacts of welding technologies. = This methodology has been applied in manual metal arc welding processes (MMAW), where the excessive consumption of resources such as electrodes and energy needed to melt the consumables contribute to the generation of negative environmental impacts, being potential processes of global warming, photochemical ozone creation and eutrophication. To investigate the progr= ess in the state of the art of environmental life cycle Objective: assessments in MMAW welding processes. Results: the results of the environmental life cycle analysis indicate that, for a weld bead of 1 met= er in length using the MMAW process, a greater amount of resources are consu= med, such as filler materials and electrode coatings, in addition to a greater consumption of electrical energy by the welding machine, which contribute= s to environmental impacts comparatively greater than those generated in other welding processes. Conclusions: it was concluded that low welding speed and high deposition rate lead to high welding times in MMAW process= es, consequently, low productivity and excess resources generate a greater im= pact to the environment.

 

 

 

 

Introducción

En la actualidad la creciente concienciación mundial sobre la sostenibilidad y= su aplicabilidad en los distintos procesos de fabricación a nivel industrial s= e ha convertido en uno de los mayores objetivos que persiguen los gobiernos de t= urno y el sector manufacturero. Cabe recalcar que según Chang et al. (2012), &qu= ot;la sostenibilidad considera las dimensiones ambientales, económicas y sociales como teoría de la triple cuenta de resultados" (p. 293). En este senti= do, se puede establecer que hoy en día para que un proceso es considerado sostenible debe relacionarse en las tres dimensiones antes señaladas para s= er considerado como eficaz y eficiente.   

La metodología más avanzada y con mejores resultados para evaluar de forma adecuada el impacto ambiental de un proceso o de un producto es sin duda al= guna el Análisis del Ciclo de Vida (ACV) (Organización Internacional de Normalización [ISO], 2006), el ACV constituye una metodología estandarizada por la Organización Internacional de Normalización ampliamente utilizada en distintas organizaciones a nivel mundial, según Klöpffer & Grahl (2009), "el análisis de ciclo de vida es la mejor herramienta metodológica utilizada para estimar el impacto ambiental potencial de los productos a lo largo de todo su ciclo de vida" (p. 36). Por lo antes acotado podemos establecer que con el ACV de la Norma ISO 14040 se puede analizar y cuantificar tanto los aspectos ambientales como los impactos potenciales los procesos de procesos de soldadura manual por arco metálico (MMAW) de forma adecuada.

Al estudiar el ACV podemos establecer de mejor manera el impacto de cualquier actividad o proceso al medio ambiente. "Es el método más avanzado y la metodología experimental con mayores resultados en la evaluación de la carga medioambiental a nivel de proceso o de producto, y también en la prevención= del desplazamiento de la carga de las distintas fases del ciclo de vida" (= Chang et al., 2015, p. 47). En ese sentido el aplicar esta metodología al proceso= de soldadura manual por arco metálico (MMAW) permi= tirá conocer técnicamente la carga ambiental de dicho proceso industrial.

Las diversas investigaciones desarrolladas alrededor de los procesos de soldadura manual por arco metálico muestran que= las herramientas propuestas para la evaluación del impacto ambiental son útiles para tomar decisiones. Según Stijn et al. (2021), "las principales herramientas que se pueden adoptar para prede= cir el impacto ambiental y el rendimiento de los procesos de fabricación son la Evaluación del Ciclo de Vida (LCA) y la Evaluación de Riesgos (RA). Estos se caracterizan por diferentes metodologías y criterios de toma de decisiones = (p. 91). Lo que contribuye en mejorar la eficiencia de los procesos de soldadura.

Para realizar el análisis de ACV y la correspondiente explicación de resultados = la Organización Internacional de Normalización (ISO) define cuatro etapas. La primera etapa de cualquier análisis y la más importante es definir claramen= te las metas y objetivos del estudio, incluido el propósito del estudio y la aplicación prevista. Según Yilbas et al. (2020), "el objetivo principal pasa a ser examinar las influencias ambientales asociadas con la soldadura = por arco metálico. Se debe definir una unidad funcional para proceder con el análisi= s y comparación del ACV" (p. 102).

La soldadura de cualquier tipo es el proceso con mayor importancia en la mayor= ía en el sector manufacturero. "En términos de consumo de material y energía, cada proceso de soldadura es diferente entre sí y, por tanto, tiene un impa= cto medioambiental diferente. Se estima que entre el 0,5 y el 1% de los consumi= bles de la soldadura por arco se convierten en partículas, gases y emisiones&quo= t; (Sangwan et al., 2016, p. 63). Por lo antes expuesta, se puede establecer q= ue, a nivel mundial, los contaminantes liberados durante el proceso de soldadura MMAW se expresan en toneladas lo que genera un problema de gestión de resid= uos sólidos y por otro lado el proceso obligatoriamente consume una gran cantid= ad de energía eléctrica, lo que en algunos países a provocado la generación de políticas de control de consumo responsable, con la finalidad de lograr una armonía entre el sector industrial que comúnmente necesita de este tipo de procesos de soldadura.

Existen diversas investigaciones en donde se han evaluado los impactos ambientales = de procesos de soldadura, principalmente se ha estandarizado la utilización de= placas metálicas de 1 m de largo y de diversos espesores. Según Sproesser et al. (= 2015), "establecieron que la soldadura manual por arco metálico (MMAW) contri= buyó significativamente al deterioro del impacto ambiental, esto principalmente = por el potencial de eutrofización, el potencial de acidificación y el potencial de eutrofización" (p. 51). Este análisis permite establecer la importanci= a de un adecuado control ambiental en este tipo de procesos de soldadura, pues su masificación significa un grave peligro de contaminación atmosférica, que s= on duda contribuya el calentamiento global.

El ACV de los procesos MMAW han generado diversos criterios para poder potenciarlos, entre los cuales se destacan la experimentación mediante la variación de los parámetros de aplicación del proceso de soldadura. Según P= atil & Kadam (2020), "al modificar los parámetros de los procesos de soldadura manual por arco metálico como la corriente de soldadura (amperios= ), la velocidad de soldadura (mm/s), la separación de la raíz (mm) y el ángulo= del electrodo (grados), el impacto ambiental generado por el proceso se reduce = significativamente (p. 306). Por lo antes señalado se puede establecer que el ACV depende del contexto de operación en el cual se desarrolla el proceso se soldadura.

El análisis de ciclo de vida es una metodología ideal para establecer el impac= to al medio ambiente generado por procesos de soldadura, que no involucran solamente materiales de aporte como electrodos, sino también el empleo de electricidad y la emisión de gases que afectan directamente a la capa de Oz= ono. Según Di Bella et al. (2022), "el ACV evalúa e integra información en múltiples categorías de impacto, como el uso del agua, el cambio climático = y el agotamiento del ozono, con consideraciones de impacto múltiple destinadas a evitar el cambio de carga (p. 127). Por lo antes señalado se puede establec= er que la reducción en una categoría de impacto conduce a un aumento en otras categorías de impacto, sin importar el proceso evaluado.<= /p>

Varias investigaciones del sector metalmecánico exponen distintas dificultades que acarrea el empleo de procesos de soldadura, procesos cuya utilización es masificada debido a que fácil accesibilidad y sencilla aplicabilidad. Según Peña & Cogollos (2021), "la necesidad de introducir nuevos concept= os en la industria metalmecánica relacionados con la optimización de los recur= sos financieros, energéticos, y el aumento de la productividad sin detrimento d= e la calidad de las producciones realizadas y su influencia en el Medio Ambiente pone ante los especialistas de manufactura un reto en la búsqueda de alternativas para viabilizar estas exigencias" (p. 103). De las anteri= ores exigencias se puede establecer que la principal está en torno a la influenc= ia de impactos negativos al ambiente, buscando soluciones viables mediante análisis ACV.

El Análisis de Ciclo de Vida Ambiental en procesos de soldadura es una evaluac= ión de tipo cuantitativo, que arroja resultados que aportan de manera significa= tiva en la disminución del impacto negativo provocado al medio ambiente, y ayuda= n a la generación de políticas que mitiguen dicho impacto. Según Atencio & Yuriela (2019), "el impacto ambiental de procesos de soldadura MMAW ti= ene relevancia dado por el consumo de materiales como electrodos, láminas, varillas, entre otros, generando gran cantidad de materiales de desecho y además la emisión= de gases perjudiciales a la atmósfera (p. 119). Por lo antes señalado es evidente que problemas como la acumulación de residuos sólidos y la contaminación atmosférica por gases industriales son los principales factores para evaluar mediante el ACV.

La soldadura manual por arco metálico es uno de los procesos de manufactura con mayor difusión debido a su sencilla aplicación. "El proceso de soldadu= ra MMAW es una práctica que se asocia a la necesidad de construir elementos funcionales de tipo metálico altamente demandado, involucra la necesidad de realizar una tarea operativa que implica riesgos ambientales por ejercer es= ta actividad, principalmente por la proyección de partículas y la emisión de g= ases producto de la fundición del electrodo" (Tangarife et al., 2022, p. 30= ).

Los procesos de soldadura por su naturaleza y gran empleo en distintas áreas se= han convertido en un problema ambiental en la actualidad. Según Nimker & Wa= ttal (2020), "los efectos perjudiciales de los humos de soldadura, de las chispas y de la escoria sobre la calidad del aire y el agua han atraído el interés de muchos investigadores por investigar estos contaminantes y las posibles soluciones para mitigar el daño que los mismos ocasionan al medio ambiente" (p. 183). Por lo que aplicar de manera adecuada un ACV aport= a de manera sustancial a mejorar los procesos de soldadura MMAW, pues se puede establecer de manera clara las repercusiones que tienen los desechos en el ambiente, generando sin duda alguna un impacto ambiental negativo tanto al = agua como al aire.

Otra de las fuentes generadoras de desecho sólidos en procesos de soldadura MMAW= son los electrodos revestidos. Según Priya (2023), "la pérdida de trozos a= sociada con los electrodos de soldadura en el proceso de soldadura MMAW también es = una preocupación importante, ya que genera desperdicio de material y un aumento= del costo de la soldadura. A nivel mundial, el mercado de consumibles de soldad= ura superó los 14.490 millones de dólares en 2023 y se espera que crezca anualm= ente un 4,3% (p. 49). De lo anterior acotada hay que establecer que la porción no utilizada de un electrodo de soldadura que queda después de que el electrod= o se ha utilizado para soldar se denomina pérdida de trozo, mismo que se vuelve = un desperdicio sólido que viene generando problemas en distintas organizacione= s.

Los distintos análisis de ACV llevados a cabo en las investigaciones muestran la necesidad de implementar políticas de reciclado para las pérdidas de trozo = de los electrodos revestidos. Según Khan & Madhukar (2023), "se prevé= que la reutilización de los residuos de soldadura reducirá significativamente el impacto medioambiental. Además de los trozos y los restos de alambre y mate= riales, también se podrían utilizar bloques tipo Lego como pequeñas unidades metáli= cas (p. 61). Por lo antes señalado, se puede establecer la necesidad de buscar alternativas ambientales que redúzcanlos residuos sólidos, enfocando los esfuerzos en el reciclado de subproductos propios de los procesos de soldadura. 

Distintas investigaciones en la actualidad emplean varios softwares para realizar el Análisis de Ciclo de Vida de forma más adecuada. En la investigación de Roucoules et al. (2020), realizaron el análisis de ACV con el software Open= LCA versión 1.10.1, integrado con la base de datos Ecoinvent versión 3.6, llega= ndo a establecer que "La asignación de la carga ambiental pueden ser manej= ados mediante el límite de asignación por clasificación, es decir, se puede empl= ear el método de límite" (p. 34). Por lo antes indicado es posible determi= nar que el ACV se puede realizar mediante distintos métodos y los resultados se= rán relevantes en el campo de impacto ambiental. 

Metodología

En el presente trabajo se hace una recopilación del estado actual de las evaluaciones del Ciclo de Vida Ambiental (ACV) en procesos de soldadura man= ual por arco metálico (MMAW), para lo cual se desarrolló investigación cualitativo, además el presente estu= dio es una investigación documental que permite el estudio del conocimiento acumulado sobre el tema propuesto, finalmente el método de investigación ejecutado es analítico en donde se sintetizó la información de múltiples estudios realizados a nivel mundial.

Para desarrollar la investigación se emplearon criterios de inclusión y de exclusión, los primeros se relacionan a la producción científica académica = de repositorios virtuales de alto impacto como Scopus y Scielo, se tomó en cue= nta también tesis doctorales, para una mayor relevancia del estudio planteado, = el enfoque de búsqueda de información está centrado en la evidencia existente = en los trabajos investigativos del impacto ambiental de los proceso de soldadu= ra y las causas comunes que provocan impactos negativos al medio ambiente, es de= cir los trozos de electros y las emisiones de gases a la atmósfera. Con relació= n a los segundos criterios no fueron tomados en cuenta investigaciones científi= cas con más de 5 años de publicadas a la realización de la investigación y por supuesto los otros procesos de soldadura, esto debido a que cada proceso ge= nera sus propios desechos, además que los entornos en los que se ejecutan son distintos en cuanto a instalaciones, elementos consumibles, condiciones de consumos de electricidad, gas o cualquier otro elemento empleado en la fusi= ón de las piezas a soldar.

Al ser una revisión sistemática de información no hace falta la autorización de instituciones u organizaciones, pues no se nombra marcas o instituciones en= el desarrollo de la investigación, tampoco nace la necesidad de la autorizació= n de consejos científicos, comité de ética, o consentimiento informado, pues es información de dominio público, lo que aporta de gran manera a la difusión = de resultados de investigación así como su recopilación y planteamiento principalmente de políticas ambientales que generen procesos de soldadura c= on mayor eficiencia y eficiencia.

La presente investigación busca ampliar los conocimientos sobre la problemática ambiental que se ha establecido en los procesos de soldadura MMAW, para ell= os se plantea dos fases de ejecución, mismas que se describen a continuación: =

En primer lugar, la búsqueda de información que haya sido publicad mediante procesos de revisión adecuados, con la finalidad de validar el contexto y p= oder realizar un análisis acorde al tema planteado. En segundo lugar, la valorac= ión crítica de la información antes recolectada permite generar opiniones solve= ntadas en un marco de investigación sin dejar de lado la perspectiva lógica de la investigativa de campo.

Resultados

Del análisis de las diversas investigaciones se pu= ede establecer el resultado del impacto del ciclo de vida ambiental ACV general, mismos que se presenta en la Tabla 1, en donde los distintos valores fueron tomados bajo la referencia de 1 m/mm 2 de cordó= n de soldadura.

Tabla 1

Evaluación de Impacto del Ciclo de Vida Ambiental (ACV) del proceso de soldadura

Grupo de categorías de impacto

FSW

Unidad

cambio climático (cambio climático biogénico)

1.80E-04

kg CO2-Eq

cambio climático (fósil del cambio climático)

1.17E-02

kg CO2-Eq

cambio climático (cambio climático uso de la tierra y cambio de uso de la tierra= )

1.41E-05

kg CO2-Eq

cambio climático (cambio climático total)

1.19E-02

kg CO2-Eq

Calidad del ecosistema (acidificación del agua dulce y terrestre).

3.38E-05

mol H+-Eq.

calidad del ecosistema (ecotoxicidad del agua dulce)

3.47E-03

CTU (Unidad Tóxica Comparativa)

Tabla 1

Evaluación de Impacto del Ciclo de Vida Ambiental (ACV) del proceso de soldadura (continuación)

Grupo de categorías de impacto=

FSW

Unidad

calidad del ecosistema (eutrofización de agua du= lce)

1.67E-05

kg P-Eq

calidad del ecosistema (eutrofización marina)

8.67E-06

kg N-Eq

calidad del ecosistema (eutrofización terrestre)=

8.29E-05

mol N-Eq

salud humana (efectos cancerígenos)

1.25E-10

CTUh (CTU para humanos)

salud humana (radiación ionizante)

2.06E-03

kgU235-Eq

salud humana (efectos no cancerígenos)

1.13E-09

CTUh

salud humana (agotamiento de la capa de ozono)

4.57E-10

kg CFC-11-Eq.

salud humana (creación de ozono fotoquímico)

1.57E-05

kg NMVOC-Eq (Compuestos orgánicos volátiles distintos del metano-Equivalente)

salud humana (efectos respiratorios, inorgánicos= )

1.39E-10

incidencia de enfermedades

recursos (agua disipada)

0

m3 agua-Eq

recursos (fósiles)

1.95E-01

mj

recursos (uso de la tierra)

6.74E-02

puntos

recursos (minerales y metales)=

4.88E-12

kg Sb-Eq

Fuente: Di Bella et al. (2022)

Como es evidente la emisión de CO2 aporta de manera significativa en el cambio climático en sus distintas fases, esto sumado a = que el proceso MMWA es el más popular en todo el mundo agrava más la situación = en cuanto a impacto ambiental, al mismos tiempo estos resultados siguieren la necesidad urgente del planteamiento de políticas ambiental y de soluciones viables que vayan en función de una verdadera mitigación de los impactos negativos que están generando este tipo de proseos de soldadura alrededor d= el planeta.

Otro de los causantes de contaminación ambiental en procesos industrial son los trozos de electrodos revestidos utilizados en la soldadura MMAW, de las investigaciones consultadas se establece que en prom= edio el trozo del electrodo llega a medir aproximadamente 2 pulgadas, lo que representa entre el 11 y el 17 % del electrodo útil. Lo antes señalado sin = duda alguna genera un grave problema ambiental por desechos sólidos industriales. Las ACV analizadas establecen que la pérdida anual por la inutilización de = los electrodos revestidos está en el orden de 720 millones a 1100 millones de dólares a nivel mundial (Vimal et al., 2015).

En términos de peso, esta pérdida podría represent= ar aproximadamente 364 kT a nivel mundial, lo que en ciudades industrializadas= ha generado inconvenientes en el tratamiento de desechos, esto debido a que el= trozo del electrodo es difícil de reutilizar y, en general, de desechar, lo que aumenta el coste del proceso de soldadura. La decisión de deshacerse de los trozos de electrodos de soldadura está influenciada por el flujo residual presente en los trozos, la falta de una infraestructura de reciclaje adecua= da y el cumplimiento de las directrices económicas y legales.<= /p>

Discusión=

La aplicación de ACV en procesos de soldad= ura manual por arco metálico (MMAW) evidencia problemas ambiental que fundamentalmente se deben a la baja productividad por la falta de utilizaci= ón de todos los electrodos como insumos y velocidad de soldadura cuya desproporción genera la emisión de gases contaminantes a la atmósfera, que = como se han demostrado en las múltiples investigaciones aportan de manera sustan= cial a la afectación negativa al medio ambiente, al punto de que todas las investigaciones citadas concuerdan en que el proceso MMAW genera mayores impactos ambientales en calentamiento global, acidificación, creación de oz= ono fotoquímico y eutrofización.

Los resultados de la aplicación de ACV en = los procesos de soldadura han generado un aporte  que permite realizar un acercamiento a l= as problemáticas existentes alrededor de la soldadura MMAW, pues concientiza s= obre la necesidad de reducción de materiales de consumos como los electros revestidos, además de la urgencia de medidas que mitiguen el impacto negati= vo generado por la emisión de humos propios de la soldadura, alternativas como=   la implementación  de  estrategias a nivel técnico para  reducir  los  tiempos  de ejecución de cordones de soldadura y la ocupación de la totalidad= de un electrodo han sido señaladas en las investigaciones acotadas. 

Otro de los inconvenientes que se evidenciaron en = las investigaciones fue la falta de una política de recolección de residuos par= a los talleres y pequeñas industriales dedicadas a la manufactura, además varios artículos tratan sobre las precarias condiciones de trabajo, lo que provoca= la falta de conciencia e intención entre los operadores y soldadora, lo que ll= eva a que se mezclen los trozos con otros desechos sólidos. Es imperativo que la industria de la soldadura tome medidas para minimizar la pérdida de trozos y reducir el impacto ambiental.

Los resultados de ACV buscan sin duda alguna garan= tizar que la soldadura siga desempeñando un papel importante en la industria y al mismo tiempo proteja el medio ambiente. Por lo que en esta revisión sistemá= tica se encuentran propuestas generales que aportan a la reducción de pérdidas de trozos y a la reducción los costos de soldadura los cuales incluyen el uso = de electrodos extendidos, almacenamiento y manipulación adecuados, técnicas de soldadura mejoradas, uso de procesos de soldadura eficientes en tiempo, tod= as estas soluciones son reiterativas en los trabajos consultados. <= /span>

Conclusiones<= /b>

·&nb= sp;        Se pudo establecer que la aplicación de la solda= dura manual por arco metálico (MMAW) contribuye significativamente al deterioro = de las categorías de impacto ambiental analizadas mediante ACV, incluido, el potencial de eutrofización , el potencial de acidificación , el potencial de calentamiento global la emisión de gases de efecto invernadero, la generaci= ón de desechos sólidos, lo que ha provocado en varios países la generación de políticas ambientales que regulen esta actividad industrial masificada.

·&nb= sp;        Se pudo concluir que los trozos inutilizados de = los electrodos de los procesos de MMAW contribuyen significativamente al deteri= oro del medio ambiente, sobre todo por la falta de tratamiento adecuado de estos desechos sólidos, que combinados con el descontrol de las emisiones de gases propios del proceso de soldadura se convierten en un problema ambiental en = todo el mundo principalmente debido al alto consumo de energía y al desperdicio descontrolado de recursos.

·&nb= sp;        Se pudo determinar que varias investigaciones coincidieron que la minimización y eliminación de residuos son una de las estrategias más apropiadas para reducir el impacto negativo generado por un proceso MMAW enfocados lógicamente en el desarrollo sostenible de un país. = Esto no sólo reduce el coste de la soldadura, sino que también reduce el impacto medioambiental de la soldadura al reducir los residuos.

·      =    Se pudo concluir que se requiere un reciclaje to= tal del material de relleno en este caso de los electrodos para lograr escenarios p= roductivos sostenibles. Estos trozos se pueden reutilizar en algunas situaciones, como capacitación en soldadura, trabajos de reparación y mantenimiento que requi= eren una soldadura más pequeña. Los trozos también podrían molerse y reducirse a polvo metálico o fundirse para reutilizarse como material de relleno en la fundición. Alternativas que han sido propuestas en las diversas investigaci= ones referenciadas.

Conflicto de intereses

Los autores declaran que no existe conflicto de intereses en relación con el artículo presentado.

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El artículo que se publica es de exclusiva responsabilidad de los autores y no necesariamente reflejan el pensamiento de la Revista Alfa Publicaciones.

 


El artíc= ulo queda en propiedad de la revista y, por tanto, su publicación parcial y/o t= otal en otro medio tiene que ser autorizado por el director de la Revista Alfa Publicaciones.<= /o:p>

&nb= sp;

 

 

 


 

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charset="windows-1252"





ISSN: 2773-7330

Vol. 6 No. 2.  pp. 112 – 126. abril – junio 2024

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www= .alfapublicaciones.com

 

 

                                      Impacto Científico                Página= 112= | 126

 

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