The world’s largest lithium reserves are at risk due to water shortages

Freshwater essential for lithium mining is found in parts of Argentina, Bolivia, and Chile, situated in the world’s “lithium triangle” on the Andean plateau, boasting half of all global lithium reserves.

A recent study in Communications Earth and the Environment revealed that available freshwater for lithium extraction in these regions is significantly lower than previously believed. With global demand for lithium expected to surge by 2040, this poses a challenge as it surpasses the limited annual rainfall supplying water to the dry lithium triangle.

Minimizing freshwater usage in the lithium industry is crucial to prevent disruption in mining activities. Extracting one ton of lithium requires approximately 500,000 gallons of water, which also sustains small indigenous communities and unique wildlife habitats in the region.

Water scarcity affects both the ecosystem and the industry in the lithium triangle, as lithium is a key component in batteries driving the global shift towards clean energy technologies. Despite the projected quadrupling demand for lithium batteries by 2030, delays in mining operations due to resource availability raise concerns about meeting this growing demand.

Freshwater plays a vital role in determining the supply of lithium available for mining in the lithium triangle. Rainfall washes lithium-rich minerals out of rocks, creating lagoons filled with lithium-rich water where mining companies extract the mineral. However, limited weather data and overestimation of freshwater supply in the region pose challenges to sustainable mining.

Research into water and resource availability for lithium mining operations is ongoing, emphasizing the need for a comprehensive understanding of the entire lithium supply chain. Studies in lithium-rich regions worldwide are essential to grasp the environmental and social impacts of lithium extraction.

Source: www.nbcnews.com

Marine reserves do not aid in the recovery of fish populations

Grunts and gray grunts in Holchan Marine Reserve off the coast of Belize

Pete Oxford/ILCP

Fish populations in Caribbean marine reserves have not recovered, according to a 12-year study. Researchers say poor enforcement of marine protection regulations, coastal development and rising water temperatures are likely to blame.

Stretching for more than 1,000 kilometers along the Caribbean coasts of Belize, Guatemala, Honduras, and Mexico, the Mesoamerican Reef is home to a wide range of wildlife, including more than 500 species of fish and 65 species of coral.

Over the past few decades, governments in these countries have created many marine protected areas (MPAs) with the aim of protecting the precious biodiversity of coral reefs and restoring fish populations that have declined due to overfishing. I did. These areas may prohibit fishing during certain times of the year, prohibit certain types of fishing gear, and restrict other activities such as tourism and mining.

To evaluate the effectiveness of these MPAs, stephen canty Researchers from the Smithsonian Environmental Research Center in Maryland analyzed changes in fish biomass in 111 protected lands and 28 non-protected lands from 2006 to 2018. The data was collected during a survey by a scuba diver as part of the investigation. Initiatives for healthy coral reefs.

The researchers found that adult fish biomass increased in only 11 of the marine protected areas during the study period, indicating an increase in adult fish populations. Meanwhile, adult fish populations declined in 28 of the reserves and remained unchanged in the remaining locations. Less protected sites did see declines, but the declines were often smaller than the most protected sites.

The study found that 11 areas where fish populations have recovered have well-enforced MPA regulations and less fluctuation in sea surface temperatures. Sites with poor recovery showed opposite trends, including poor implementation of conservation measures, increased human activity in coastal areas, and increased temperature anomalies.

“Enforcement plays a huge role in whether some of these areas are successful or not,” Canty says. He suggests that local residents, who make a living from adult fish, should be given a greater role in managing MPAs. It's also important to ensure MPAs are located in areas that are better protected from climate change and easier to manage, he says.

“There's still a lot we don't know about marine protected areas,” team members say Justin Nowakowski, also located at the Smithsonian Environmental Research Center. “Therefore, it is important to be able to look to the past to optimize how he positions and manages his MPAs in the future.”

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Source: www.newscientist.com

Albanian mines reveal large reserves of natural hydrogen gas underground

Albanian mine where hydrogen naturally seeps through rocks

FV.Donze

The largest flow of natural hydrogen gas ever recorded has been measured deep in an Albanian mine. The discovery could help locate underground reserves of this clean fuel.

“The lather is really intense,” he says. Laurent Truche Researchers at France’s Grenoble-Alpes University measured gas in a pool of water about a kilometer underground. “It’s like a jacuzzi.”

Companies are currently searching for natural hydrogen deposits around the world as a source of clean fuel, but there is scant evidence that this “golden hydrogen” has accumulated in large quantities. Most claims about vast subsurface hydrogen deposits rely on extrapolation rather than direct measurements.

In search of more substantive evidence, Truche and his colleagues descended on Albania’s Balkizekromite mine. There, hydrogen gas escaping from the rocks has caused several explosions. The mine is also located in an outcrop of iron-rich rocks known as ophiolites. In other places, such as Oman, water is known to react with such rocks to produce hydrogen.

The researchers found that more than 80% of the gas bubbling out of the pool was hydrogen, mixed with methane and small amounts of nitrogen. That gas was flowing at a rate of 11 tons per year, almost an order of magnitude more than any other gas. Flow of hydrogen gas measured from a single point source elsewhere on the Earth’s surface.

To determine the source of the gas, the researchers also modeled various geological scenarios that could produce such flows. They found that the most likely scenario is that the gas is coming from a deeper reservoir of hydrogen accumulated in faults beneath the mine. Based on the geometry of the fault, they estimate that the reservoir contains at least 5,000 to 50,000 tons of hydrogen.

“This is one of the largest amounts of natural hydrogen ever measured,” he says. Eric Gaucher an independent geochemist focused on natural hydrogen.

But he says it’s still not a huge amount. Jeffrey Ellis At the U.S. Geological Survey. But evidence of stable hydrogen accumulation supports the idea that there is more hydrogen stored underground, he says. “We need to look deeper.”

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Source: www.newscientist.com