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Humans changed the ecosystems of Central Africa more than 2,600 years ago

A team of scientists discovered that humans triggered the transformation of dense forests to savannahs in Central Africa around 2,600 years ago. The sudden change, known as the 'rainforest crisis,' was not caused by climate change but rather by human activities such as agriculture and population growth.

SourceGFZ GeoForschungsZentrum Potsdam, Helmholtz Centre·JournalProceedings of the National Academy of Sciences·DateFeb 26, 2018

Moths in mud can uncover prehistoric secrets

Researchers have developed a new technique to study lake sediments, using moth scales to identify past and future insect outbreaks. This discovery can help improve knowledge of insect impact on forests, predictability, and links to climate change.

SourceFrontiers·JournalFrontiers in Ecology and Evolution·DateFeb 22, 2018

Earthquakes as a driver for the deep-ocean carbon cycle

Researchers used new dating methods to study dynamic sediment remobilisation processes triggered by seismic activity in the Japan Trench. The methods enabled precise analysis of organic matter in individual sediment layers, revealing key findings about the history of earthquakes and the carbon cycle in the deep ocean.

SourceETH Zurich·JournalNature Communications·DateJan 10, 2018

New depth limit for deep-sea marine burrows

Scientists discovered fossil evidence of deep-sea marine life burrowing up to eight meters below the seabed, which is four times deeper than previously thought. The findings suggest that deep-sea burrowing marine life may be more abundant than previously considered.

SourceUniversity of Leeds·JournalScientific Reports·DateJan 10, 2018

In the footsteps of Jacques Cousteau

A team of researchers led by Eberhard Gischler analyzed the Blue Hole stalactite recovered in 1970, revealing concentric layers that detail climate conditions since the last ice age. The study provides new insights into paleo-environmental conditions and storm patterns.

SourceGoethe University Frankfurt·JournalJournal of Sedimentary Research·DateDec 18, 2017

Scientists show how Himalayan rivers influenced ancient Indus civilization settlements

A new study by Imperial College London and the Indian Institute of Technology Kanpur reveals that ancient Indus Civilization urban centers didn't need an active river system to thrive. The research found that a major Himalayan river, the Sutlej River, changed course eight thousand years ago, leaving behind an abandoned river valley occ...

SourceImperial College London·JournalNature Communications·DateNov 28, 2017

Determining when humans started impacting the planet on a large scale

Researchers applied high-resolution mass spectrometry to investigate synthetic chemical contamination in two lakes in Central Europe, capturing the past 100 years of sediment layers. The analysis revealed concentrations of industrial chemicals starting in the 1950s, marking the beginning of large-scale human impact on the environment.

SourceAmerican Chemical Society·JournalEnvironmental Science & Technology·DateOct 25, 2017

Ancient humans left Africa to escape drying climate

Researchers found that climate in northeast Africa shifted from wet to very dry around 70,000 years ago, coinciding with human migration out of Africa. The team's analysis of sediment cores revealed a significant drop in sea surface temperature and rainfall patterns, making the environment less hospitable for human habitation.

SourceUniversity of Arizona·JournalGeology·DateOct 4, 2017

Examining the lifestyles of microbes

University of Delaware researchers studied microbes from James Cameron's Deepsea Challenge Expedition, revealing a new branch on the microbial family tree. The Parcubacteria were found to have a simple metabolism but with extra features, indicating they may be able to perform anaerobic respiration and adapt to cold environments.

SourceUniversity of Delaware·JournalEnvironmental Microbiology·DateSep 27, 2017

Geophysical investigation aims revealing how vegetation responds to climate change

A team of scientists from five countries analyzed sediment cores to reconstruct the past 1 million years of the Atlantic Rainforest biome in southern Brazil. The research aimed to understand how vegetation responded to climate change, using sediment samples that contained information about plant cover, rainfall, and subsoil communities.

Urban development in ancient Rome

A study by Hugo Delile and colleagues used high-resolution geochemical and isotopic analyses to reconstruct Rome's urban development. The analysis of a sediment core from Ostia harbor revealed the installation of ancient Rome's lead pipe system was around 2nd century BC, with a peak during the early-high Imperial period.

SourceProceedings of the National Academy of Sciences·JournalProceedings of the National Academy of Sciences·DateAug 28, 2017

Surveying sea floor animals for offshore renewable energy

Researchers at Oregon State University have developed a method to analyze sediment and animal life on the ocean floor, reducing the need for time-intensive identification work. The study found relationships between sediment characteristics and marine animal life consistent across eight sites off the Pacific Northwest coast.

SourceOregon State University·JournalContinental Shelf Research·DateJul 6, 2017

Amazonia's future will be jeopardized by dams

Researchers warn that building hundreds of hydroelectric dams in the Amazon River Basin will cause massive environmental damage, affecting nine countries and the entire system. The Amazon Basin's unique ecosystem and biodiversity are at risk due to the dams' impact on sediment flow, regional climate, and food supply.

SourceUniversity of Arizona·JournalNature·DateJun 14, 2017