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Disposable Gloves


When you are choosing a disposable glove it can be overwhelming with such a wide variety to choose from. Some of the best gloves are latex gloves, nitrile gloves, vinyl gloves and many other types. Purchase disposable gloves that fit your needs. Remember to consider the purpose, quality and if you're allergic to latex. Disposable gloves come in all different types, shapes, uses and prices.
Latex Gloves
Textured for increased grip. Ideal for use in laboratories, production, inspection, cleaning and light duty applications.
Nitrile Gloves
Economical, puncture resistant, silicone free, powdered and unpowdered with great comfort, dexterity and tactile sensitivity.
Vinyl Gloves
Textured for increased grip. Ideal for food handling, pharmaceuticals and laboratories. Optimal form fitting comfort flexibility, tactile sensitivity and performance.
Plastic Food Service Gloves
Polyethylene gloves are compliant with FDA requirements and are ideal for food preperation to prevent contamination.
Disposable gloves are utilized in a variety of industries for a number of reasons. Throwaway gloves have often found use in the following industries:
- Healthcare: Disposable gloves are used in the healthcare business to protect healthcare personnel and patients from infectious diseases and to prevent the transmission of germs. They're employed in medical examinations, surgeries, and other operations.
- Food Service: The gloves are used in the food service industry to minimize cross-contamination and to maintain food hygiene requirements. Food handlers use them during food preparation, handling, and serving.
- Cleaning services: In the cleaning industry, disposable gloves are used to protect workers from cleaning chemicals and to prevent the spread of germs. They are used when handling cleaning products or cleaning potentially contaminated areas.
- Autmotive: Disposable gloves are used in the automotive industry to protect workers from contact with grease, oil, and other automotive fluids. Mechanics and body shops use them during repairs and maintenance.
- Laboratory: the gloves are used in laboratory environments to protect personnel and samples against contamination. They are utilized when working with dangerous materials, chemicals, and biological samples.
- Beauty: In the beauty industry, disposable gloves are used to prevent the spread of illnesses and to maintain cleanliness standards. Nail technicians, hairdressers, and other beauty professionals use them during their services.
Disposable gloves can be used in any industry where contamination or exposure to hazardous materials is a possibility. They aid in the maintenance of hygiene standards and the protection of staff and consumers from infections and illnesses.
Chemical Resistance Chart by Glove Material
Key: |
|||
| Recommended: | Limited Use: | Not Recommended: | Not Rated: |
| ------------ | |||
Chemical |
Latex |
Nitrile |
Vinyl |
| Acetaldehyde, 99.5% | |||
| Acetic Acid | |||
| Acetone, 99.5% | |||
| Acetonitrile, 99% | |||
| Acrylic Acid, 99% | ------------ | ||
| Ammonium Fluoride, 40% | |||
| Ammonium Hydroxide, 85% | |||
| Amyl Acetate, 100% | |||
| Amyl Alcohol, 99% | |||
| Aniline, 99% | |||
| Animal Fats | |||
| Aqua Regia | |||
| Battery Acid | |||
| Benzaldehyde, 99.5% | |||
| Benzene | |||
| Benzyl Chloride | |||
| Bromine | ------------ | ||
| Bromopropionic Acid, Sat. | ------------ | ||
| Butane | |||
| 2-Butoxyethanol | ------------ | ------------ | |
| Butyl Acetate, 99% | |||
| Butyl Alcohol, 99% | |||
| Butyl Cellosolve, 99% | |||
| Butyrolactone, 99% | ------------ | ||
| Calcium Hypochlorite | |||
| Carbolic Acid | |||
| Carbon Dichloride | ------------ | ------------ | |
| Carbon Disulfide, 99.9% | |||
| Carbon Tetrachloride, 99% | |||
| Castor Oil | |||
| Cellosolve Acetate, 99% | |||
| Cellosolve Solvent | ------------ | ||
| Chlorine | |||
| Chloroacetone | ------------ | ||
| Chloroform | |||
| Chloronaphalenes | ------------ | ------------ | |
| Chlorothene VG | ------------ | ||
| Chromic Acid, 50% | |||
| Citric Acid, 10% | |||
| Cottonseed Oil | |||
| Creosol | |||
| Cunene | ------------ | ------------ | |
| Cutting Oil | |||
| Cyclohexane | |||
| Cyclohexanol, 98% | |||
| Diacetone Alcohol, 99% | |||
| Dibutyl Phthalate, 99% | |||
| Diamine | ------------ | ------------ | |
| Diethylamine, 99% | |||
| Diethyl Ether | |||
| Di-Isobutyl Ketone, 80% | |||
| Dimethyl Acetamide, 99% | ------------ | ||
| N,N-Dimethyl Formamide, 99% | |||
| Dimethyl Sulfoxide, 99% | |||
| Dioctyl Phthalate, 99% | ------------ | ||
| 1,4-Dioxane, 99.9% | |||
| Epichlorohydrin, 99% | ------------ | ||
| Ethanol | ------------ | ------------ | |
| 2-Ethoxyethanol | ------------ | ------------ | |
| Ethyl Acetate, 99% | |||
| Ethyl Alcohol, 90% | |||
| Ethyl Ether, 99% | |||
| Ethylene Dichloride | |||
| Ethylene Glycol, 99% | |||
| Ethyl Glycol Ether, 99% | ------------ | ||
| Ethylene Trichloride | ------------ | ||
| Fluorine | ------------ | ||
| Formaldehyde, 99% | |||
| Formalin Solution | ------------ | ------------ | |
| Formic Acid, 95% | |||
| Freon TF, 99% | |||
| Furfural, 99% | |||
| Gasoline, 100% | |||
| Glycerine | |||
| Glycerol | |||
| Heptane | ------------ | ------------ | |
| Hexamethyldisilazine, 97% | ------------ | ||
| Hexane, 99% | |||
| Hydraulic Fluid-Petrol Based | |||
| Hydraulic Fluid- Ester Based | |||
| Hydrazine, 65% | |||
| Hydrochloric Acid, 38% | |||
| Hydrofluoric Acid, 48% | |||
| Hydrogen Peroxide, 30% | |||
| Hydroquinone | |||
| Iodine | |||
| Isobutyl Alcohol, 99% | |||
| Iso-Octane, 99% | |||
| Isopropanol | ------------ | ------------ | |
| Isopropyl Alcohol, 99% | |||
| Isopropyl Benzene | ------------ | ------------ | |
| Kerosene, 100% | |||
| Lactic Acid, 85% | |||
| Lauric Acid, 36% | |||
| Linoleic Acid | |||
| Linseed Oil | |||
| Maleic Acid, 100% | |||
| Methanol | ------------ | ------------ | |
| Methyl Acetate | ------------ | ||
| Methyl Alcohol, 99.9% | |||
| Methylamine, 40% | |||
| Methyl-Butyl Ether, 99.8% | ------------ | ||
| Methyl Cellosolve, 99% | |||
| Methylamine | |||
| Methyl Chloride | |||
| Methylene Chloride | |||
| Methyl Ethyl Ketone, 99% | |||
| Methyl Isobutyl Ketone | ------------ | ||
| Methyl Methacrylate | ------------ | ||
| Methyl-T-Butyl Ether | ------------ | ------------ | |
| Mineral Oil | |||
| Mineral Spirits, 100% | |||
| Monoethanolamine, 99% | |||
| Morpholine, 99% | |||
| Muriatic Acid, 100% | |||
| Naphtha VM&P, 100% | |||
| N-Methyl-2 Pyrrolidone, 99% | ------------ | ||
| Naphthalene | |||
| Nitric Acid, 10% | |||
| Nitric Acid, 70% | |||
| Nitrobenzene, 99% | |||
| Nitromethane, 95.5% | |||
| Nitropropane, 95.5% | ------------ | ||
| Octyl Alcohol, 99% | |||
| Oleic Acid, 99% | |||
| Oxalic Acid, 12.5% | |||
| Paint Remover | |||
| Palmitic Acid, Sat. | |||
| Pentachlorophenol, 35% | ------------ | ||
| Pentane, 98% | |||
| Perchloric Acid, 60% | |||
| Perchloroethylene | ------------ | ------------ | |
| Perholffeum Ether | ------------ | ------------ | |
| Phenol, 90% | |||
| Phosphoric Acid, 85% | |||
| Picric Acid | |||
| Potassium Hydroxide, 50% | |||
| Printing Ink | |||
| Propyl Acetate, 99% | |||
| Propyl Alcohol, 96% | |||
| Propylene Oxide | ------------ | ------------ | |
| Pyridine, 99% | ------------ | ||
| Rubber Solvent, 100% | |||
| Rule Solvent | ------------ | ------------ | |
| Sodium Hydroxide, 50% | |||
| Sodium Hypochlorite | |||
| Stoddard Solvent, 99% | |||
| Sulfuric Acid, 95% | |||
| Tannic Acid, 37.5% | |||
| 1,1,2,2-Tetrachloroethane, 99% | ------------ | ||
| Tetrachloroethylene, 100% | |||
| Toluene, 99% | |||
| Toluene Di-Isocyanate | ------------ | ||
| 1,1,1-Trichlorethane, 99% | ------------ | ||
| Trichloroethylene | |||
| Tricresyl Phosphate, 90% | |||
| Triethanolamine, 85% | |||
| Tung Oil | ------------ | ||
| Turbine Oil | |||
| Turpentine, 100% | |||
| Vegetable Oil | |||
| Xylene |




