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Why is the Great Salt Lake so shallow?

Great Salt Lake has a much greater surface-area-to-volume ratio than other lakes in the region. As a result, a tremendous amount of water -- an average of 2.6 billion gallons -- evaporates from the lake each day. This affects not only the lake's depth, but also the weather.



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Water experts say it's going to take more than one big year to fill the Great Salt Lake. SALT LAKE CITY — Ever since The Great Salt Lake hit its lowest water level on record in November 2022, concerns over things like arsenic in the exposed lake bed have only grown.

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According to a recent study by Brigham Young University, it's possible that Great Salt Lake could dry up completely in the next five years.

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Lake Levels Due to its shallowness (an average of 14 feet deep and a maximum of 35 feet deep), the water level can fall dramatically during dry years and rise during wet years.

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With a salinity level over 40 percent, Don Juan is significantly saltier than most of the other hypersaline lakes around the world. The Dead Sea has a salinity of 34 percent; the Great Salt Lake varies between 5 and 27 percent. Earth's oceans have an average salinity of 3.5 percent.

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Because of the abundant algae and halophiles, as well as the high salinity, the lake does not support fish — but it teems with brine shrimp and brine flies, which provide essential nutrition for migrating birds.

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The best place to swim or float in the lake is at Antelope Island State Park, where white oolitic sand beaches provide easy access to the lake without the brine flies that are prevalent on other areas of the shoreline. The beach area also has showers to rinse off the salty water.

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The shallow bottom of Great Salt Lake supports a microbial carpet that harness the sun's energy through the process of photosynthesis. This carpet is made up of a community of microbes, including several types of cyanobacteria (also known as blue-green algae), algae and other organisms.

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The Great Salt Lake is home to many important biological and wildlife species, from archaea, to bacteria, to phytoplankton (400+ species). Perhaps the three most apparent species that can be seen with the naked eye are brine shrimp (tons), brine flies (billions) and birds (millions).

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It was called Lake Bonneville, and northern Utah, southern Idaho, northern Nevada was all underwater, a freshwater lake. But as the Earth warmed up, ice dams broke, and water evaporated, and all the water seeping out left behind this salty puddle in the bottom of the bathtub, and that's what we call Great Salt Lake.

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However, the most deleterious effect of the Great Salt Lake drying up is that the air surrounding Salt Lake City could sporadically become poisonous. Since the bed of the Great Salt Lake holds high levels of dangerous particles like arsenic, antimony, copper, zirconium, and various heavy metals.

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However, the most deleterious effect of the Great Salt Lake drying up is that the air surrounding Salt Lake City could sporadically become poisonous. Since the bed of the Great Salt Lake holds high levels of dangerous particles like arsenic, antimony, copper, zirconium, and various heavy metals.

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Since 1850, the lake has lost 73 percent of its water and 60 percent surface area. A January 4, 2023, report by scientists at Brigham Young University warns that the saline lake could disappear within five years if no action is taken.

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The state of Utah owns basically most of the Great Salt Lake, including Antelope Island, Fremont Island, Gunnison Island, the Ogden and Farmington bay wetland areas, along with the entire lakebed.

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Most recent data within water-surface elevations show a downward trend. With climate change and Utah's ever growing human population, we expect this negative trend to continue. In fact, it is estimated that the lake is 11 feet lower due to human diversions.

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Even when the water temperature is in the 20's (°F), the lake does not freeze, due to the high salt content of the water; but icebergs have been ob- served floating on the lake's surface, formed from freshwater that flows into the lake from tributaries and freezes on the surface before it mixes with the brine.

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There are several types of algae in Great Salt Lake, the most common are two species of Dunaliella (green algae). Dunaliella salina is found in the more saline waters of the north arm. This species produces beta- carotene in large quantities, turning the water quite red.

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The Great Salt Lake boasts some of the world's largest populations of birds! The area is a regionally, nationally and hemispherically important ecosystem for migratory birds. No fish can survive in the North or South arms of the lake. The largest aquatic animals in the lake are brine shrimp and brine fly larvae!

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Where does Great Salt Lake get its water? Runoff from the Uinta Mountains and the Wasatch Range supplies most water to the lake. The Bear, Weber, and Jordan Rivers empty into the eastern part of Great Salt Lake and supply around 70 percent of the water input into the lake.

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Lake Michigan in particular is the roughest of the Great Lakes, and poses a major risk to those thinking of taking a dip.

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Its shallow depth means that much of its surface area is exposed to the air, and is subject to its seasonal temperature fluctuations. Water temperatures vary from below freezing in the winter to more than 80 degrees Fahrenheit in the summer.

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