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Original Articles

A Breakthrough Time Comparison of Nitrile and Neoprene Glove Materials Produced by Different Glove Manufacturers

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Pages 941-947 | Published online: 04 Jun 2010

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Read on this site (9)

Kandace M. Steele, Todd Pelham & Robert N. Phalen. (2017) Evaluating polymer degradation with complex mixtures using a simplified surface area method. Journal of Occupational and Environmental Hygiene 14:9, pages 720-726.
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RobertN. Phalen & Weng Kee Wong. (2012) Chemical Resistance of Disposable Nitrile Gloves Exposed to Simulated Movement. Journal of Occupational and Environmental Hygiene 9:11, pages 630-639.
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Patcharee Pripdeevech, Weeraya Khummueng & Seung-Kook Park. (2011) Identification of Odor-active Components of Agarwood Essential Oils from Thailand by Solid Phase Microextraction-GC/MS and GC-O. Journal of Essential Oil Research 23:4, pages 46-53.
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Robert Phalen & Shane Que Hee. (2008) A Moving Robotic Hand System for Whole-Glove Permeation and Penetration: Captan and Nitrile Gloves. Journal of Occupational and Environmental Hygiene 5:4, pages 258-270.
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ThomasD. Klingner & MarkF. Boeniger. (2002) A Critique of Assumptions About Selecting Chemical-Resistant Gloves: A Case for Workplace Evaluation of Glove Efficacy. Applied Occupational and Environmental Hygiene 17:5, pages 360-367.
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JamesT. Purdham, BarbaraJ. Menard, PaulR. Bozek & AndreaM. Sass-Kortsak. (2001) MCPA Permeation Through Protective Gloves. Applied Occupational and Environmental Hygiene 16:10, pages 961-966.
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Nader Vahdat, JamesS. Johnson, Amalia Neidhardt, Jeanine Cheng & David Weitzman. (1995) Permeation of Chemicals Through Glove Box Glove Materials. Applied Occupational and Environmental Hygiene 10:11, pages 943-950.
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JeffreyO. Stull & CatherineR. Dodgen. (1995) Permeation of Ethylene Oxide Through Protective Clothing Materials for Chemical Emergency Response. Part II: Follow on Work. Applied Occupational and Environmental Hygiene 10:8, pages 707-711.
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JimmyL. Perkins. (1987) Chemical Protective Clothing: I. Selection and Use. Applied Industrial Hygiene 2:6, pages 222-230.
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Articles from other publishers (23)

Krishnaroop Chaudhuri, Riddhiman Medhi, Zhenglin Zhang, Zhuoyun Cai, Christopher K. Ober & Jonathan T. Pham. (2023) Visualizing Penetration of Fluorescent Dye through Polymer Coatings. Macromolecular Rapid Communications 44:20.
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Janarthanan Supramaniam, Darren Yi Sern Low, See Kiat Wong, Bey Hing Goh, Bey Fen Leo & Siah Ying Tang. (2022) Assessing the suitability of self-healing rubber glove for safe handling of pesticides. Scientific Reports 12:1.
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Marie-Noëlle Crepy, Anders Boman & François Zimmermann. 2020. Kanerva’s Occupational Dermatology. Kanerva’s Occupational Dermatology 1663 1684 .
M A Rahman Bhuiyan, Lijing Wang, Abu Shaid, Robert A Shanks & Jie Ding. (2018) Advances and applications of chemical protective clothing system. Journal of Industrial Textiles 49:1, pages 97-138.
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Abdulqadir M. Suleiman. (2019) Assessment of suitability of disposable gloves for handling of cleaning chemicals with extreme pH values. Safety Science 111, pages 1-6.
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Marie-Noëlle Crepy, Anders Boman & François Zimmermann. 2019. Kanerva’s Occupational Dermatology. Kanerva’s Occupational Dermatology 1 22 .
Jeffrey Stull. 2017. Modern Textile Characterization Methods. Modern Textile Characterization Methods 393 468 .
Robert N. Phalen & Weng Kee Wong. (2015) Polymer properties associated with chemical permeation performance of disposable nitrile rubber gloves. Journal of Applied Polymer Science 132:6, pages n/a-n/a.
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Binh Pham, Robert Phalen, Naoko Sasanuma, Yacinthe Dorsainvil, Jacqueline Tol & Renwu Zhang. (2015) Mechanism on the permeation of ethanol in nitrile gloves studied using positron annihilation lifetime spectroscopy. Journal of Applied Polymer Science 132:3, pages n/a-n/a.
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Anders Boman. 2012. Kanerva's Occupational Dermatology. Kanerva's Occupational Dermatology 1225 1234 .
Thomas Bruno & Paris N. Svoronos. 2010. CRC Handbook of Basic Tables for Chemical Analysis, Third Edition. CRC Handbook of Basic Tables for Chemical Analysis, Third Edition 723 781 .
R. N. Phalen, S. S. Que Hee, W. Xu & W. K. Wong. (2006) Acrylonitrile content as a predictor of the captan permeation resistance for disposablenitrile rubber gloves. Journal of Applied Polymer Science 103:3, pages 2057-2063.
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Gunh A. Mellström & Anders Boman. 2006. Irritant Dermatitis. Irritant Dermatitis 409 419 .
L. B. Georgoulis, M. S. Morgan, N. Andrianopoulos & J. C. Seferis. (2005) Swelling of polymeric glove materials during permeation by solvent mixtures. Journal of Applied Polymer Science 97:3, pages 775-783.
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G. A. Mellström & A. Boman. 2004. Condensed Handbook of Occupational Dermatology. Condensed Handbook of Occupational Dermatology 247 257 .
Thomas Bruno & Paris Svoronos. 2003. CRC Handbook of Basic Tables for Chemical Analysis, Second Edition. CRC Handbook of Basic Tables for Chemical Analysis, Second Edition.
Harriet Andreasson, Anders Boman, Stina Johnsson, Stig Karlsson & Lars Barregard. (2003) On permeability of methyl methacrylate, 2-hydroxyethyl methacrylate and triethyleneglycol dimethacrylate through protective gloves in dentistry. European Journal of Oral Sciences 111:6, pages 529-535.
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Arthur D. Schwope & Larry Janssen. 2000. Protecting Personnel at Hazardous Waste Sites. Protecting Personnel at Hazardous Waste Sites 251 294 .
G. A. Mellström & A. Boman. 2000. Handbook of Occupational Dermatology. Handbook of Occupational Dermatology 417 425 .
Tejraj M. Aminabhavi & Ravindra S. Munnolli. (1994) An assessment of chemical compatibility of bromobutyl rubber, chlorosulfonated polyethylene and epichlorohydrin membranes in the presence of some hazardous organic liquids. Journal of Hazardous Materials 38:2, pages 223-242.
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S. Zack Mansdorf. (1994) Guidelines for the Selection of Gloves for the Workplace. Dermatologic Clinics 12:3, pages 597-600.
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Arthur D. Schwope & Christopher C. O'Leary. 1994. Protecting Personnel At Hazardous Waste Sites. Protecting Personnel At Hazardous Waste Sites 219 257 .
Mary Lou Daugherty, Annetta P. Watson & Tuan Vo-Dinh. (1992) Currently available permeability and breakthrough data characterizing chemical warfare agents and their simulants in civilian protective clothing mater. Journal of Hazardous Materials 30:3, pages 243-267.
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