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Sunscreen comes in many forms,
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each with its own impacts on your body and the environment.
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With so many options,
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how do you choose which sunscreen is best for you?
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To answer that question,
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we first have to understand how sunscreens work.
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Sunlight is composed of electromagnetic waves
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and is our primary source of ultraviolet radiation,
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which has a shorter wavelength than visible light and carries more energy.
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UVA,
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UVB,
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and UVC are classified according to their wavelengths.
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Short wavelength UVC never reaches the Earth's surface,
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but UVB and UVA do.
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Medium wavelength UVB rays can enter the skin's superficial layers
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and long length UVA rays can penetrate into the deeper layers.
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UVB in small amounts actually helps us make vitamin D,
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which enables our bodies to build and maintain strong bones.
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However, prolonged exposure to UVA and UVB can damage DNA,
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age your skin,
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and promote the development of potentially deadly skin cancer.
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Sunscreen protects your skin either physically by deflecting UV rays
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with an inorganic blocker like zinc oxide or titanium dioxide,
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or chemically by using carbon-based compounds to absorb UV photons
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that are then harmlessly dissipated as heat.
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So, what differentiates one sunscreen from another?
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When we choose a sunscreen,
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we can compare application method,
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the SPF,
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and the active ingredients.
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Sprays can be convenient to put on, especially when you're wet,
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but a recent study found that most people don't apply a thick enough layer
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to get full protection.
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And the possible health risks of inhaling sunscreen compounds from a spray cloud
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might make you consider reaching for that bottle of lotion instead.
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Opt for a sunscreen with an SPF of at least 15, although 30 is better.
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SPF is a nonlinear scale of how much UVB radiation is needed
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to give protected skin a sunburn.
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SPF 15 does a pretty good job by blocking 93% of UVB rays.
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You get a slight increase as SPF goes up,
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with SPF 30 blocking 97%,
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and 50 blocking 98%.
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SPF is based on the quantity of solar exposure.
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So how much time you have before you start to burn
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really depends on a long list of factors,
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including your genetics,
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and when, where, and how you spend your time in the sun.
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Even though US marketed sunscreens have been deemed safe by the FDA,
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scientists are still researching the effects of many active ingredients
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on the human body.
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So if you're worried about potential irritants,
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look for mineral-based formulas with zinc oxide or titanium dioxide.
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Even though they may go on a bit thick at first,
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they're less irritating than carbon-based chemical sunscreens.
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These mineral-based sunscreens are preferential for the environment, too.
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If you plan on catching rays while splashing in a river or the ocean,
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keep in mind that carbon-based chemical sunscreens
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can harm marine life.
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Take coral reefs for example.
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Although they cover less than 1% of the Earth's underwater surface,
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they're home to nearly 25% of all fish species,
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making them the most diverse and productive marine ecosystems.
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Research shows that carbon-based chemical sunscreen ingredients,
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like oxybenzone, butylparaben, octinoxate, and 4MBC
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contribute to a stress condition called coral bleaching in corals,
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which are living creatures.
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Exposure to these organic compounds
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results in the death of the coral's symbiotic algae.
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In addition to providing a reliable food source,
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these algae give coral their brilliant rainbow of colors.
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Without them, corals turn a bleached white
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and are susceptible to disease and possibly death.
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And once the coral dies,
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the entire reef ecosystem is not far behind.
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So you're now ready to make an informed choice when picking out your next sunscreen.
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SPF is clearly labeled on the front.
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On the back under "active ingredients,"
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you can find whether zinc oxide,
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titanium dioxide,
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and those coral-harming components are present.
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Taking a bit more time to check can be well worth it
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for both you and the environment.