What is ultraviolet radiation?
Ultraviolet (UV) radiation is similar to visible light in all physical aspects, except that it does not enable us to see things. The light that enables us to see things is referred to as visible light and is composed of the colours we see in a rainbow. The ultraviolet region starts right after the violet end of the rainbow.
In scientific terms, UV radiation is electromagnetic radiation just like visible light, radar signals and radio broadcast signals (see Figure 1). Electromagnetic radiation is transmitted in the form of waves. The waves can be described by their wavelength or frequency and their amplitude (the strength or intensity of the wave). Wavelength is the length of one complete wave cycle. For radiation in the UV region of the spectrum, wavelengths are measured in nanometers (nm), where 1 nm = one millionth of a millimetre.
Different wavelengths of electromagnetic radiation cause different types of effects on people. For example, gamma rays are used in cancer therapy to kill cancerous cells and infrared light can be used to keep you warm.
UV radiation has shorter wavelengths (higher frequencies) compared to visible light but has longer wavelengths (lower frequencies) compared to X-rays. UV radiation is divided into three wavelength ranges:
Figure 1 - Electromagnetic spectrum
Table 1 summarizes the general features of each type.
- context not filtered out in the atmosphere
- context passes through glass
- context produces some tanning
- context once considered harmless but now believed harmful over the long term
- context levels remain relatively constant throughout the day
- context some filtered out in the atmosphere by the ozone layer
- context does not pass through glass
- context causes sunburn, tanning, wrinkling, aging of the skin and skin cancer
- context highest intensity at noontime
- context filtered out in the atmosphere by the ozone layer before reaching earth
- context major artificial sources are germicidal lamps (to kill bacteria)
- context burns the skin and causes skin cancer
What are some sources of ultraviolet radiation?
Sunlight is the greatest source of UV radiation. Man-made ultraviolet sources include several types of UV lamps, arc welding, and mercury vapour lamps.
UV radiation is widely used in industrial processes and in medical and dental practices for a variety of purposes, such as killing bacteria, creating fluorescent effects, curing inks and resins, light emitting diode (LED) plant grow lights, phototherapy and suntanning. Different UV wavelengths and intensities are used for different purposes.
Table 2 gives some examples of occupations with a potential risk of ultraviolet exposure. Table 3 gives examples of devices which employ UV radiation.
- context Food and drink irradiators Salon workers and patrons Laboratory workers Lighting technicians Lithographic and printing workers Forensic expertsDentists and assistantsDermatologists and pediatriciansGeneral freight truckers | Outdoor workersConstruction workersContractors and surveyors Paint and resin curers Physiotherapists Plasma torch operators Welders Agriculture, forestry, fishingGreenhouse workersPhotolithography
- context Bactericidal lamps Black light lamps Carbon, xenon and other arcs Dental polymerizing equipment Fluorescence equipment Hydrogen and deuterium lampsUltraviolet nail curing lamps | LED greenhouse lightsMetal halide lamps Mercury lamps Plasma torches Phototherapy lamps Printing ink polymerizing equipment Welding equipmentCounterfeit currency detectors
What are some health effects of exposure to UV radiation?
Some UV exposure is essential for good health. It stimulates vitamin D production in the body. In medical practice, one example is UV lamps can be used for treating psoriasis (a condition causing itchy, scaly red patches on the skin).
Excessive exposure to ultraviolet radiation is associated with different types of skin cancer, sunburn, accelerated skin aging, as well as cataracts and other eye diseases. The severity of the effect depends on the wavelength (see Figure 2), intensity, and duration of exposure.
How do you protect yourself from UV radiation?
UV radiation is invisible and therefore does not stimulate the natural defences of the eyes. Workers must use eye and skin protection while working with UV radiation sources which present the potential for eye harmful exposure. The selection of eye protection depends on the type and intensity of the UV source. For more information, consult the CSA Standard CAN/CSA-Z94.3 2020 Eye and Face Protectors.
UV radiation is easily absorbed in a variety of materials. Shielding is usually easy to design. Mercury lamps and metal halide lamps have an outer glass cover to stop UV radiation, and are designed such that if the outer glass is broken, the lamp ceases to function.
For information on how to protect yourself from ultraviolet radiation in sunlight, please see the OSH Answers Skin Cancer and Sunlight.