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Microplastics show unexpected link to climate warming

A new study reveals that microplastics in the air can trap heat, making them a previously unknown contributor to climate change. Researchers found that colored microplastics absorb roughly 16% as much heat as black carbon, with an effect equivalent to running 200 coal-fired power plants annually.

SourceDuke University·JournalNature Climate Change·DateJul 6, 2026

New sulfur-iron biochar shows powerful ability to lock up arsenic and cadmium in contaminated soils

A novel engineered biochar has been developed to simultaneously immobilize arsenic and cadmium in contaminated water and agricultural soils. The sulfur-ferrihydrite-modified biochar achieves high adsorption capacities for both pollutants, transforming them into more stable residual fractions.

From herbal waste to high performance clean water material: Turning traditional medicine residues into powerful biochar

Researchers convert herbal waste into high-performance biochar materials capable of removing toxic pollutants from water and soil. The biochars possess unique advantages due to their natural composition, which includes cellulose, hemicellulose, lignin, and bioactive compounds.

Turning waste into power: scientists convert discarded phone batteries and industrial lignin into high-performance sodium battery materials

Researchers develop a new method to transform waste streams into a promising material for next-generation sodium-ion batteries. The study demonstrates how waste recycling can reduce environmental pollution and support the transition to sustainable energy storage technologies.

Rapid microwave method creates high performance carbon material for carbon dioxide capture

Researchers developed a fast and energy-efficient way to produce advanced carbon materials capable of capturing carbon dioxide, dramatically reducing production time while improving adsorption performance. The new material demonstrates exceptional ability to capture and selectively separate carbon dioxide from gas mixtures.

Scientists turn agricultural waste into powerful material that removes excess nutrients from water

Researchers develop calcium hydroxide modified biochar from discarded Camellia oleifera shells to remove ammonium and phosphate from water, showcasing strong adsorption performance. The material demonstrates potential for practical agricultural and industrial wastewater treatment, maintaining strong performance in real-world tests.

Biochar’s promise under pressure: Study urges realistic, systems based path forward

A new study urges a realistic and systems-based path forward for biochar deployment, highlighting technical variability, policy gaps, and sustainability constraints. The authors argue that biochar can be a powerful tool when designed with its limits in mind, but only if viewed as critical infrastructure within a circular economy.

Smart biochar that remembers pollutants offers a new way to clean water and recycle biomass

Researchers have combined molecular imprinting technology with biochar to create materials that can selectively target specific molecules, achieving high adsorption capacity and selectivity. These smart sorbents show promise for efficient pollution control in complex mixtures and at low concentrations.

New review shows how biomass can deliver low-carbon gaseous fuels at scale

A new review highlights how converting biomass into gaseous fuels like hydrogen, methane, and syngas can play a critical role in the global transition to low-carbon energy systems. Biomass-based gaseous fuels can be used for electricity generation, industrial heat, transportation, and as building blocks for chemicals and synthetic fuels.

Turning livestock waste into clean water: Animal manure biochar emerges as a low cost tool to remove toxic pollutants from wastewater

Animal manure biochar effectively removes hazardous pollutants such as dyes, antibiotics and heavy metals from wastewater. The material's surface chemistry and mineral content support mechanisms like electrostatic attraction, hydrogen bonding and ion exchange.

Black carbon from wheat straw burning shown to curb antibiotic resistance spread in farmlands with plastic mulch residues

A new study found that black carbon formed during wheat straw burning can significantly reduce the spread of antibiotic resistance genes in soil and soybean crops. Black carbon altered nutrient availability, modified the physical and chemical aging of mulch films, contributing to reduced gene transfer.

New USC study links wildfire smoke exposure and heat stress to adverse birth outcomes

A recent USC study found associations between increased exposure to wildfire smoke and heat stress during preconception and the first trimester with the odds of having a small-for-gestational-age infant. Living in a climate-vulnerable neighborhood can increase these risks, particularly for women exposed to heat stress.

SourceKeck School of Medicine of USC·JournalEnvironmental Science & Technology·TypeMeta-analysis·DateJun 18, 2025

Study finds dramatic boost in air quality from electrifying railways

A new study found that electrifying the Caltrain commuter rail line reduced riders' exposure to black carbon by an average of 89%, cutting excess cancer deaths by 51 per 1 million people. The study's findings support the case for electrifying U.S. rail systems, which still rely on old diesel locomotives.

SourceUniversity of California - Berkeley·JournalEnvironmental Science & Technology Letters·TypeObservational study·DateApr 16, 2025

Two hundred times better catalysts thanks to carbon

Scientists have discovered that adding carbon to metal nanoparticles makes them 200 times more active, which could lead to significant cost savings and improved efficiency in industrial processes. The discovery was made possible by precise measurements and simulations of the interaction between metal nanoparticles and a carbon substrate.

SourceVienna University of Technology·JournalACS Catalysis·TypeExperimental study·DateNov 11, 2024

Researchers reveal oceanic black carbon sink effect driven by seawater microdroplets

Researchers identify a degradation process that accelerates refractory pyrogenic carbon in coastal sediments. Seawater microdroplets facilitate this electrochemical degradation through interfacial electron transfer pathways, contributing to the ocean's carbon cycle.

SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalJournal of the American Chemical Society·TypeCommentary/editorial·DateApr 16, 2024

Black carbon sensor could fill massive monitoring gaps

A new portable sensor has been found to accurately measure black carbon concentrations as well as a regulatory standard sensor, filling a massive gap in air quality monitoring. The sensor's portability and affordability make it suitable for remote or inaccessible sites, allowing for more comprehensive data collection.

SourceUniversity of Utah·JournalSensors·DateFeb 26, 2024

War and fire on the eastern Silk Road

Researchers found that intense fires in the region were more likely caused by human activities like war than climate change. The study used sediment cores to analyze black carbon and soot deposits from Tianchi Lake, dating back 6,000 years.

SourcePNAS Nexus·JournalPNAS Nexus·DateDec 19, 2023

Fanning the flames

Researchers at Washington University in St. Louis discovered that wildfires emit dark brown carbon, a potent climate-warming particle that absorbs solar radiation. This finding has broad implications for climate models and highlights the need to revise existing approaches to account for the unexpected effects of brown carbon.

SourceWashington University in St. Louis·JournalNature Geoscience·TypeExperimental study·DateAug 7, 2023

Dark clouds on the horizon

The study improves the accuracy of black carbon's refractive index, revealing it may contribute up to 16% to atmospheric warming, affecting climate models. The method developed can be applied to other particles in the atmosphere and ocean.

SourceUniversity of Tokyo·JournalAerosol Science and Technology·TypeExperimental study·DateMay 9, 2023

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

Following the wind

Researchers at King Abdullah University of Science & Technology (KAUST) have developed a more robust and realistic general method for dealing with wind-driven phenomena in geostatistical modeling, which promises to greatly improve the accuracy of pollutant dispersion prediction.

SourceKing Abdullah University of Science & Technology (KAUST)·JournalJournal of the American Statistical Association·DateSep 6, 2022

New evidence shows planting around school playgrounds protects children from air pollution

A new study published in Scientific Reports shows that selectively planting vegetation between roads and playgrounds can cut toxic air pollution reaching school children. Western red cedar tredges were found to be most effective at capturing particulate matter, with almost half of black carbon and 46% of fine particles eliminated.

SourceLancaster University·JournalScientific Reports·TypeExperimental study·DateAug 26, 2022

Wildfire-smoke observations fill gap in estimating soot’s role in climate change

Scientists have developed a new method to estimate the impact of black carbon from wildfires on climate change, using measurements of light absorption by coated soot particles. The study provides a more accurate way to forecast global climate change and resolves a long-standing uncertainty in earth system models.

SourceDOE/Los Alamos National Laboratory·JournalGeophysical Research Letters·TypeObservational study·DateJul 21, 2022

Seashell-inspired Sandia shield protects materials in hostile environments

Researchers at Sandia National Laboratories have developed a seashell-inspired coating that can protect materials from mechanical, shock, and thermal insults. The coating is made from thin layers of confectioners' sugar, silica, and carbon black, and has been shown to be lightweight, mechanically strong, and thermally stable.

SourceDOE/Sandia National Laboratories·JournalMRS Advances·TypeExperimental study·DateMay 3, 2022