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Original Articles

Determination of Airborne Nanoparticles from Welding Operations

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Pages 747-755 | Published online: 12 Jul 2012

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Read on this site (16)

Masoomeh Vahabi Shekarloo, Zahra Panjali, Younes Mehrifar, Soleiman Ramezanifar, Seyed Husein Naziri, Aysa Ghasemi Koozekonan, Zahra Moradpour & Rezvan Zendehdel. (2022) Application of a novel exposure limit approach for co-exposure of ‎chemicals: a field study by in-vitro design. International Journal of Environmental Health Research 0:0, pages 1-9.
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Manpreet Singh & Sarbjit Singh. (2020) Sustainable electrochemical discharge machining process: Characterization of emission products and occupational risks to operator. Machining Science and Technology 24:5, pages 739-757.
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Marelé Keyter, Alicia Van Der Merwe & Anja Franken. (2019) Particle size and metal composition of gouging and lancing fumes. Journal of Occupational and Environmental Hygiene 16:9, pages 643-655.
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J. F. Gomes, R. M. Miranda, J. P. Oliveira, H. M. Esteves & P. C. Albuquerque. (2019) Evaluation of the amount of nanoparticles emitted in LASER additive manufacture/welding. Inhalation Toxicology 31:3, pages 125-130.
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Jayaraman Krishnaraj, Abdul Basit Baba, Periasamy Viswanathan, Veeran Veeravarmal, Viswalingam Balasubramanian & Siddavaram Nagini. (2018) Impact of stainless-steel welding fumes on proteins and non-coding RNAs regulating DNA damage response in the respiratory tract of Sprague-Dawley rats. Journal of Toxicology and Environmental Health, Part A 81:24, pages 1231-1245.
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J. F. Gomes & R. M. Miranda. (2017) Determination of “safe” and “critical” nanoparticles exposure to welders in a workshop. Journal of Toxicology and Environmental Health, Part A 80:13-15, pages 767-775.
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R. P. Pacheco, J. F. Gomes, R. M. Miranda & M. L. Quintino. (2017) Evaluation of the amount of nanoparticles emitted in welding fume from stainless steel using different shielding gases. Inhalation Toxicology 29:6, pages 282-289.
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Mirlande Présumé, Angélique Simon-Deckers, Céline Tomkiewicz-Raulet, Béatrice Le Grand, Jeanne Tran Van Nhieu, Gregory Beaune, Olivier Duruphty, Jean Doucet, Xavier Coumoul, Jean-Claude Pairon, Jorge Boczkowski, Sophie Lanone & Pascal Andujar. (2016) Exposure to metal oxide nanoparticles administered at occupationally relevant doses induces pulmonary effects in mice. Nanotoxicology 10:10, pages 1535-1544.
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Abdullah A. Alkahtane. (2015) Indium tin oxide nanoparticles-mediated DNA fragmentation and cell death by apoptosis in human lung epithelial cells. Toxicological & Environmental Chemistry 97:8, pages 1086-1098.
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M. Présumé, M. Attoui, A. Maisser, G. Petit & S. Lanone. (2015) Design and Characterization of an Inhalation System of Iron and Manganese Oxide Nanoparticles for Rodent Exposure. Aerosol Science and Technology 49:8, pages 580-588.
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Ulrika Bergström, Barbro Ekstrand-Hammarström, Lars Hägglund & Håkan Wingfors. (2015) Comparing Acute Toxicity of Gunshot Particles, from Firing Conventional and Lead-Free Ammunition, in Pulmonary Epithelial Cell Cultures. Journal of Toxicology and Environmental Health, Part A 78:10, pages 645-661.
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Calvin C. Willhite, Nataliya A. Karyakina, Robert A. Yokel, Nagarajkumar Yenugadhati, Thomas M. Wisniewski, Ian M.F. Arnold, Franco Momoli & Daniel Krewski. (2014) Systematic review of potential health risks posed by pharmaceutical, occupational and consumer exposures to metallic and nanoscale aluminum, aluminum oxides, aluminum hydroxide and its soluble salts. Critical Reviews in Toxicology 44:sup4, pages 1-80.
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J. F. Gomes, R. M. Miranda, T. J. Santos & P. A. Carvalho. (2014) Emission of Nanoparticles During Friction Stir Welding (FSW) of Aluminium Alloys. Journal of Toxicology and Environmental Health, Part A 77:14-16, pages 924-930.
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M. Almeida-Silva, S. M. Almeida, J. F. Gomes, P. C. Albuquerque & H. T. Wolterbeek. (2014) Determination of Airborne Nanoparticles in Elderly Care Centers. Journal of Toxicology and Environmental Health, Part A 77:14-16, pages 867-878.
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C. Guerreiro, J. F. Gomes, P. Carvalho, T. J. G. Santos, R. M. Miranda & P. Albuquerque. (2014) Characterization of airborne particles generated from metal active gas welding process. Inhalation Toxicology 26:6, pages 345-352.
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João Fernando Pereira Gomes, Paula Cristina Silva Albuquerque, Helder Manuel Dias Salvação Esteves & Patrícia Almeida Carvalho. (2013) Notice on a methodology for characterizing emissions of ultrafine particles/nanoparticles in microenvironments. Energy and Emission Control Technologies 1, pages 15-27.
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R.K. Raajesh Kannan, S.P. Sivapirakasam, M. Rahul, Sreejith Mohan & B.R. Vishnu. (2024) Effect of activated fluxes on the BZC and Cr (VI) concentration in stellite hardfacing operation. Materials Today Communications 38, pages 107726.
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Vishal Vats, Geoff Melton, Meez Islam & Venkatesan V. Krishnan. (2023) FTIR spectroscopy as a convenient tool for detection and identification of airborne Cr(VI) compounds arising from arc welding fumes. Journal of Hazardous Materials 448, pages 130862.
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Konstantin Pikula, Konstantin Kirichenko, Vladimir Chernousov, Sergey Parshin, Alexander Masyutin, Yulia Parshina, Anton Pogodaev, Alexander Gridasov, Aristidis Tsatsakis & Kirill Golokhvast. (2023) The Impact of Metal-Based Nanoparticles Produced by Different Types of Underwater Welding on Marine Microalgae. Toxics 11:2, pages 105.
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S. A. Egerland, M. Wiesinger, R. Sharma & B. Ebert. (2022) Experimental study of measures preventing welders from fume exposure. Welding in the World 67:1, pages 1-20.
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Pramendra Kumar Saini, Nitish Kumar, Keshu & Uma Shanker. 2023. Handbook of Green and Sustainable Nanotechnology. Handbook of Green and Sustainable Nanotechnology 2553 2579 .
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Elin M. Westin, S. McCarrick, L. Laundry-Mottiar, Z. Wei, M. C. Biesinger, I. Barker, R. Wagner, K.-A. Persson, K. Trydell, I. Odnevall, H. L. Karlsson & Y. S. Hedberg. (2021) New weldable 316L stainless flux-cored wires with reduced Cr(VI) fume emissions: part 1—health aspects of particle composition and release of metals. Welding in the World 65:12, pages 2319-2337.
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Y.S. Hedberg, Z. Wei, S. McCarrick, V. Romanovski, J. Theodore, E.M. Westin, R. Wagner, K.-A. Persson, H.L. Karlsson & I. Odnevall Wallinder. (2021) Welding fume nanoparticles from solid and flux-cored wires: Solubility, toxicity, and role of fluorides. Journal of Hazardous Materials 413, pages 125273.
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Sabyne Audignon-Durand, Céline Gramond, Stéphane Ducamp, Guyguy Manangama, Alain Garrigou, Fleur Delva, Patrick Brochard & Aude Lacourt. (2021) Development of a Job-Exposure Matrix for Ultrafine Particle Exposure: The MatPUF JEM. Annals of Work Exposures and Health 65:5, pages 516-527.
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L. P. SharavaraN. M. DmitrukhaA. I. Sevalnev. (2021) RESEARCH OF ULTRAFINE PARTICLES CONTENT IN THE AIR OF THE WELDER WORKING AREA AT DIFFERENT WELDING WAYS. Bulletin of Problems Biology and Medicine 3:1, pages 111.
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Alexander C. Ø. Jensen, Henrik Harboe, Anders Brostrøm, Keld A. Jensen & Ana S. Fonseca. (2020) Nanoparticle Exposure and Workplace Measurements During Processes Related to 3D Printing of a Metal Object. Frontiers in Public Health 8.
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Manpreet Singh, Sarbjit Singh & Sanjeev Kumar. (2020) Environmental aspects of various electrolytes used in electrochemical discharge machining process. Journal of the Brazilian Society of Mechanical Sciences and Engineering 42:8.
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Marcella Mauro, Matteo Crosera, Massimo Bovenzi, Gianpiero Adami, Giovanni Maina, Elena Baracchini & Francesca Larese Filon. (2019) In vitro transdermal absorption of Al2O3 nanoparticles. Toxicology in Vitro 59, pages 275-280.
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Gonçalo Sorger, Teemu Sarikka, Pedro Vilaça & Telmo G. Santos. (2018) Effect of processing temperatures on the properties of a high-strength steel welded by FSW. Welding in the World 62:6, pages 1173-1185.
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Lalita, Anirudh P. Singh & Rajeev Kr. Sharma. (2017) Selective sorption of Fe(II) ions over Cu(II) and Cr(VI) ions by cross-linked graft copolymers of chitosan with acrylic acid and binary vinyl monomer mixtures. International Journal of Biological Macromolecules 105, pages 1202-1212.
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João F. Gomes, Rosa M. Miranda, Juan A. Porro & José L. Ocaña. (2017) Caracterización experimental de las emisiones de nanopartículas en el tratamiento de AA6061, AISI304 y Ti6Al4V por ondas de choque generadas por LASER. Revista de Metalurgia 53:4, pages 104.
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James Mino & Bernadette Quémerais. (2017) Using a Particle Counter to Inform the Creation of Similar Exposure Groups and Sampling Protocols in a Structural Steel Fabrication Facility. Toxics 5:4, pages 34.
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Sujit Dahal, Taehyeung Kim & Kwangseog Ahn. (2016) Indirect Prediction of Welding Fume Diffusion inside a Room Using Computational Fluid Dynamics. Atmosphere 7:6, pages 74.
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Małgorzata Szewczyńska, Emilia Pągowska & Krystyna Pyrzyńska. (2015) Emissions of fluorides from welding processes. Journal of Environmental Sciences 37, pages 179-183.
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. 2015. Ships and Offshore Structures XIX. Ships and Offshore Structures XIX 619 668 .
Jeong Hoon Byeon, Jae Hong Park, Thomas M. Peters & Jeffrey T. Roberts. (2015) Reducing the cytotoxicity of inhalable engineered nanoparticles via in situ passivation with biocompatible materials. Journal of Hazardous Materials 292, pages 118-125.
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Pasquale Avino, Maurizio Manigrasso, Pietro Pandolfi, Cosimo Tornese, Diego Settimi & Nicola Paolucci. (2015) Submicron Particles during Macro- and Micro-Weldings Procedures in Industrial Indoor Environments and Health Implications for Welding Operators. Metals 5:2, pages 1045-1060.
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P.C. Albuquerque, J.F. Gomes, C.A. Pereira & R.M. Miranda. (2015) Assessment and control of nanoparticles exposure in welding operations by use of a Control Banding Tool. Journal of Cleaner Production 89, pages 296-300.
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Valter Alves de Meneses, João Fernando Pereira Gomes & Américo Scotti. (2014) The effect of metal transfer stability (spattering) on fume generation, morphology and composition in short-circuit MAG welding. Journal of Materials Processing Technology 214:7, pages 1388-1397.
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J. F. Gomes, R. M. Miranda, P.A. Carvalho & M. L. Quintino. (2014) The effect of metal transfer modes and shielding gas composition on the emission of ultrafine particles in MAG steel welding. Soldagem & Inspeção 19:2, pages 168-176.
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J.F. Gomes & R.M. Miranda. (2014) Emission of airborne ultrafine particles during welding of steel plates. Ciência & Tecnologia dos Materiais 26:1, pages 1-8.
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