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Why is the Great Salt Lake cut in half?

A railroad causeway built in 1959 cut Utah's Great Salt Lake into two very different lakes, ecologically speaking, as seen in this striking drone footage posted by ABC News on Wednesday. The water north of the causeway is a deep red, reflecting its highly saline chemistry.



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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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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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Yet the transformation is threatened: Because of overuse of water and climate change, the Great Salt Lake is drying up — and the Mormon Church is taking on an unusually public role to help save it. Last summer, the church began urging conservation and touted its water-saving efforts in the American West.

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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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New analysis says Great Salt Lake can be saved, but not without great effort, and expense.

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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. When snowpack melts in the spring, the lake usually rises about 2 feet. However, record snowpack in 2023 triggered a rise of 5.5 feet!

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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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A new scientific report warns the lake is on track to disappear in the next five years, unless water use is cut by as much as 50% annually. I don't know of any other environmental threat that's moving this quickly, said Bonnie Baxter, a Westminster College biochemist and one of the authors of that study.

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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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A recent report found that the lake could essentially disappear within five years. As a key stopover for migrating birds, the lake's loss could undermine whole ecosystems.

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Swimming in the Great Salt Lake is a One-of-a-Kind Experience. We loved the unique experience of swimming in the biggest body of water west of the Mississippi. There are so few Salt Lakes in the world, so its unique to say you have swam in a salt lake.

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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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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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Great Salt Lake has ranged in salinity from about 5 percent to 27 percent over the past 22 years. This is two to nine times saltier than the ocean's 3 percent. At present Farmington Bay is approximately 5 percent salt, while the North arm is 26 percent and the South arm is 14 percent.

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Great Salt Lake is an average of just 14 feet deep, with a maximum depth of 33 feet. Its shallow depth means that much of its surface area is exposed to the air, and is subject to its seasonal temperature fluctuations.

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