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Deep-sea black carbon comes from hydrothermal vents

Research reveals hydrothermal vents as a previously undiscovered source of dissolved black carbon in the oceans, transporting it thousands of kilometers away. This discovery sheds light on the ocean's role as a carbon sink and provides insights into the formation of recalcitrant dissolved organic carbon.

SourceHokkaido University·JournalScience Advances·TypeData/statistical analysis·DateFeb 10, 2023

Whales could be a valuable carbon sink, say scientists

Researchers explore the importance of understanding whale carbon sequestration potential to combat climate change. Whales can store more carbon than small animals, influencing nutrient dynamics and carbon cycling over ocean-basin scales.

SourceCell Press·JournalTrends in Ecology & Evolution·TypeLiterature review·DateDec 15, 2022

Symbiotic CO2 sequestration

Researchers genetically engineered a microbial community that can convert CO2 into sugar and produce useful chemicals, effectively acting as a living carbon sink. The community, consisting of bacteria and cyanobacteria, produces chemicals with a negative carbon balance.

SourceWiley·JournalAngewandte Chemie International Edition·TypeExperimental study·DateDec 9, 2022

Marine diazotrophic bacteria, great little allies against climate change

Researchers have discovered that marine diazotrophic bacteria contribute directly to the biological carbon pump, exporting and sequestering carbon in the deep ocean. This process was previously attributed mainly to phytoplankton, but experts now understand that these microorganisms also store carbon on the seabed.

SourceInstitut de Ciències del Mar (ICM-CSIC)·JournalThe ISME Journal·TypeExperimental study·DateOct 17, 2022

Living in timber cities could avoid emissions – without using farmland for wood production

A new study suggests that timber cities could significantly reduce greenhouse gas emissions by using wood as a building material. The researchers found that housing in mid-rise buildings made of wood could avoid more than 100 billion tons of CO2 emissions by 2100, equivalent to 10% of the remaining carbon budget for the 2°C target.

SourcePotsdam Institute for Climate Impact Research (PIK)·JournalNature Communications·TypeComputational simulation/modeling·DateAug 30, 2022

Tracking the journey of mangroves in southern Japan

A study by OIST Graduate University's Marine Biophysics Unit found that mangroves in the Ryukyu Islands have limited connectivity, making it crucial to protect isolated forests. The research used genetics and oceanography to track propagule dispersal, revealing rare genetic exchanges between islands.

SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournalFrontiers in Marine Science·TypeObservational study·DateAug 24, 2022

Coastal marsh migration may further fuel climate change

A new modeling study predicts that coastal marsh migration will release more carbon into the atmosphere, exacerbating climate change. As marshes move inland due to sea level rise, they convert land from a net carbon sink to a net carbon source, releasing stored carbon into the air.

SourceDuke University·JournalPLOS Climate·TypeComputational simulation/modeling·DateJun 23, 2022

For wetland plants, sea-level rise stamps out benefits of higher CO2

A new study published in Science Advances reveals that the environmental stress of too much water wipes out the plant growth benefits of higher CO2 levels. Rising sea levels have caused the effects of increased CO2 to disappear in a 33-year field experiment, highlighting the critical need for conservation and adaptation efforts.

SourceSmithsonian·JournalScience Advances·TypeExperimental study·DateMay 18, 2022

Land-building marsh plants are champions of carbon capture

A new study reveals that innovative restoration practices can replicate natural landscape-building processes in wetlands, enhancing their carbon-storing potential. Successful restorations require dense plant clumps or large areas restored in one go to mimic the plants' landscape-forming properties.

SourceDuke University·JournalScience·TypeMeta-analysis·DateMay 5, 2022

Deforestation of Indigenous lands could prevent Brazil from achieving climate change mitigation targets

Deforestation in Indigenous lands, particularly in Apyterewa Territory, poses a significant threat to Brazil's ability to meet its international climate change mitigation targets. The Brazilian government must take effective action to enforce environmental laws and protect the Amazon region.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalScience·TypeImaging analysis·DateApr 19, 2022

Increased heat and drought stunt tropical trees, a major carbon sink

A recent study published in Nature Geoscience has found that tropical trees' trunk growth is reduced in years with drier and warmer conditions. The researchers also discovered that the effect of climatic fluctuations is more dramatic in arid or warm regions, suggesting climate change may increase the sensitivity of tropical trees.

SourceUniversity of Arizona·JournalNature Geoscience·TypeData/statistical analysis·DateMar 31, 2022

Tropical peatland, sea level rise and climate change

Researchers analyzed two peat cores to discover that higher concentrations of charcoal occurred between 9,000 to 4,000 years ago due to larger forest fires. Mangrove pollen found in the earlier period indicates rising sea levels and increased salt, contributing to dry conditions suitable for massive forest fires.

SourceUniversity of Göttingen·JournalGlobal Change Biology·TypeExperimental study·DateMar 24, 2022

Decreasing carbon sink across the Belt and Road in the future

Climate change, elevated CO2 concentrations, and increasing nitrogen fixation are projected to reduce the Belt and Road region's net ecosystem production trend by ~40% from 2031-2100. Net primary production may increase in response to rising CO2, but soil respiration is expected to rise more, leading to a decrease in carbon sequestration.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAtmospheric and Oceanic Science Letters·DateMar 1, 2022

Closing in on the carbon costs of wildfires

A new study suggests that wildfires can lead to increased soil carbon stocks in savannahs and grasslands, potentially offsetting short-term emissions. The research found that fires could store up to 90 million tonnes of carbon per year, but the breakdown rate of charcoal in soils remains uncertain.

SourceUniversity of East Anglia·JournalNature Geoscience·TypeComputational simulation/modeling·DateFeb 10, 2022

Aircraft reveal a surprisingly strong Southern Ocean carbon sink

A new study led by NCAR finds that the Southern Ocean absorbs significantly more carbon than it releases, clarifying its role as a carbon sink. Airborne measurements of carbon dioxide reveal critical patterns in the global carbon cycle, providing insights into climate change projections and emission reduction measures.

A rocky fate for greenhouse gases

Researchers used synchrotron X-ray scattering and quantum computer modeling to investigate temperature's impact on amorphous magnesium carbonate. The findings suggest that modifying the precursor material's physical properties can help create more efficient carbon capture technologies.

SourceUniversity of Tsukuba·JournalScientific Reports·DateNov 29, 2021

New study exposes big differences amongst Amazonian countries in their rates of forest recovery as well as deforestation

A new study reveals significant differences in forest recovery rates across Amazonian countries, with some experiencing little to no recovery even 20 years after deforestation. The research highlights the need for targeted interventions to protect and restore remaining forests.

SourceBangor University·JournalEnvironmental Research Letters·TypeData/statistical analysis·DateAug 4, 2021

A new satellite-measured "Solar-induced Chlorophyll Fluorescence" (SIF) product aims to improve carbon neutrality research

A new satellite-measured Solar-induced Chlorophyll Fluorescence (SIF) product is introduced to enhance carbon neutrality research. The SIF product, developed using a physical-based algorithm named IAPCAS/SIF, retrieves emission data from two micro-windows within the O2 A-band.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAdvances in Atmospheric Sciences·DateMar 17, 2021

Earth's terrestrial ecosystems may transition from carbon sinks to carbon sources within decades

The study suggests that up to half of land ecosystems could reach a tipping point where they release more carbon than they absorb by 2100 under a business-as-usual emissions scenario. Biomes with high carbon storage, such as rainforests and Taiga forests, may lose over 45% of their carbon sink capabilities by midcentury.

Peatland preservation vital to climate

Researchers warn that peatlands, a significant carbon sink, are expected to shift from absorbing to emitting carbon due to human impacts. The study predicts total carbon loss from 2020-2100 at 104 billion tons, emphasizing the need for urgent inclusion in climate models and better preservation efforts.

SourceUniversity of Exeter·JournalNature Climate Change·DateDec 7, 2020

A carbon sink shrinks in the arctic

The Arctic Ocean's capacity to remove carbon dioxide from the atmosphere has decreased due to rapid warming and sea-ice loss. This reduction will have significant implications for climate change, with the Canada Basin predicted to become a minimal carbon sink by 2030.

SourceUniversity of Delaware·JournalNature Climate Change·DateJun 15, 2020