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Search results for “Radioactive Waste”

1,000+ results for "Radioactive Waste"

Novel robost and radiation-resistant sodalite microspheres: Breakthrough for integrated adsorption in situ immobilization of radioactive Cs+ and Sr2+

Researchers have developed radiation-resistant sodalite microspheres for efficient adsorption and in-situ immobilization of radioactive Cs+ and Sr2+ ions. The material's high strength, adsorption capacity, and radiation resistance make it a promising solution for nuclear waste management.

SourceTsinghua University Press·JournalJournal of Advanced Ceramics·DateSep 23, 2026

Co-digestion of waste and wastewater from biomanufacturing for energy recovery

Researchers developed an ABCS reactor for simultaneous treatment of solid waste and wastewater from biomanufacturing, achieving a 1.62-fold increase in methane production. The technology improves wastewater treatment efficiency, reduces facility size, and enables energy self-sufficiency.

SourceNational Institute of Advanced Industrial Science and Technology·JournalJournal of Environmental Chemical Engineering·DateSep 10, 2026

Microwave-driven conversion of waste plastics to high-value chemicals:Progress, challenges, prospects

Researchers at Tsinghua University have developed microwave catalytic systems for the conversion of waste plastics into high-value chemicals. The technology achieves efficient and rapid conversion of various types of plastics, including polyesters, polyolefins, and others, with high yields and selectivity. The study highlights the pote...

SourceTsinghua University Press·JournalCarbon Future·DateSep 1, 2026

Fabrication of a fused filament extrusion system for recycled PET and comparative mechanical characterization studies vis-à-vis PLA

Researchers developed a filament extrusion system to process recycled PET from waste plastic bottles, producing filament suitable for 3D printing. The recycled PET filament demonstrated competitive mechanical performance compared to PLA, highlighting its potential as a feedstock for additive manufacturing.

SourceELSP·JournalAdvanced Manufacturing·TypeExperimental study·DateAug 23, 2026

Reusing liquid pickle waste to produce omega-3 fatty acids

Hiroshima University researchers demonstrate that food processing liquid waste can be reused to produce omega-3 fatty acids by cultivating Aurantiochytrium sp. The study shows that three types of pickle seasoning waste can be utilized by the thraustochytrid to produce DHA and EPA. Reusing the waste medium also produces DHA and EPA, but...

SourceHiroshima University·JournalLWT·TypeExperimental study·DateAug 19, 2026

Genome-scale model-guided microbial engineering converts agricultural waste into biodegradable bioplastics

Researchers develop a genome-scale model-guided microbial engineering strategy to convert agricultural waste into biodegradable bioplastics. The approach enables efficient production of poly(3-hydroxybutyrate) from radish hydrolysate, a promising feedstock for sustainable biomanufacturing.

SourceNational Research Council of Science & Technology·JournalBioresource Technology·DateAug 18, 2026

Recycling food waste would bring huge benefits, but microplastics a challenge

Diversion of U.S. food waste from landfills could significantly reduce climate impacts and nutrient pollution, with potential benefits including a 89-99% reduction in greenhouse gas emissions and a 49-54% decrease in nitrogen pollution. However, the resulting compost and organic materials may carry up to 20,000 tons of microplastics in...

SourceUniversity of Vermont·JournalNature Food·TypeComputational simulation/modeling·DateJul 23, 2026

One-pot catalyst design could help turn plastic waste into higher-quality liquid fuels

Researchers developed a one-pot synthesis strategy for hierarchical ZSM-5 catalysts that can improve catalyst lifetime during microwave-assisted catalytic pyrolysis of plastic waste. The study found that crystallization temperature strongly controlled the catalyst's pore structure, acidity, morphology, and lifetime.

SourceShenyang Agricultural University Collaborative Journals·JournalSustainable Carbon Materials·TypeExperimental study·DateJul 1, 2026

Radionuclides trapped in a deep-sea sample point to an ancient cosmic event

Researchers have discovered rare radioactive isotopes in a deep-sea manganese crust, pointing to an ancient cosmic event that occurred at least 100 million years ago. The discovery provides new insights into the formation of heavy elements in the universe and helps refine our understanding of past astrophysical events.

SourceAustralian National University·JournalNature Astronomy·TypeObservational study·DateJun 16, 2026

Indonesia’s air quality got worse after China banned plastic waste imports

A new study by Ellen Considine and Rachel Nethery shows that Indonesia's air pollution increased in 2018 and 2019 due to the diversion of plastic waste from China, which was previously a major import source. The team used satellite data to evaluate changes in fine particulate matter at 356 open dump sites in Indonesia.

SourceUniversity of Colorado at Boulder·JournalJournal of the Royal Statistical Society Series C (Applied Statistics)·DateJun 2, 2026

The right heat makes biochar a better helper for food waste composting

A new study published in Biochar shows that the temperature used to produce biochar plays a decisive role in controlling nitrogen losses during food waste digestate composting. Hardwood biochar made at 400 °C reduced total nitrogen loss by 46.3% compared with composting without biochar, outperforming biochars made at 300 °C and 800 °C.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateJun 2, 2026

Turning waste into smarter carbon materials for soil and water conservation

Researchers used game theory to identify promising porous carbon materials made from agricultural and industrial waste. The study found that certain samples, such as rice straw-KOH-level 2, performed well in terms of surface area and pore volume, making them suitable for applications in soil amendment, water conservation, and pollutant...

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateMay 28, 2026

Turning waste into wealth: high-acid-value waste oil upgraded to high-performance natural ester insulating oil in one efficient process

A multi-stage coupled refining process converts high-acid-value waste cooking oil into high-performance natural ester insulating oil with improved physical, chemical and electrical properties. The process increases the oil's dielectric dissipation factor and power frequency breakdown voltage.

SourceHEP Data Cooperation Journals·JournalJOURNAL OF ENGINEERING STUDIES·TypeExperimental study·DateMay 20, 2026

Fast-food waste driven by wrong orders: study

A review of food waste in Australia's quick service restaurants found order mistakes as the biggest driver of waste, with better staff training crucial for reduction. The study recommends ongoing training and making food waste metrics part of performance evaluations to mitigate back-of-house food waste.

Reversible glue technology goes electric

Researchers at Newcastle University have created an electrically conductive, water-based reversible adhesive that can join electronic components and allow for their reuse or recycling. This technology has the potential to address the massive problem of e-waste globally.

SourceNewcastle University·JournalAdvanced Electronic Materials·TypeExperimental study·DateMay 15, 2026

From plastic waste to chemical building blocks: a sustainable path for polyethylene upcycling

Researchers create tandem catalytic strategy to efficiently upcycle polyethylene into aromatic chemicals without precious metals or external hydrogen acceptors. The process achieves high aromatics yield and demonstrates excellent stability, offering a promising solution for managing plastic pollution and reducing fossil resource reliance.

SourceScience China Press·JournalScience Bulletin·TypeExperimental study·DateMay 13, 2026

From e-waste to energy storage: Recycled phone batteries and lignin power a high-performance sodium-ion anode

Researchers developed a high-performance sodium-ion anode material by converting discarded mobile phone batteries into NiCo₂S₄ and combining it with lignin-derived carbon. The new material achieved improved capacity, rate capability, and cycling stability, making it a promising alternative for lower-cost battery production.

SourceMaximum Academic Press·TypeExperimental study·DateMay 6, 2026

Tree bark could help clean water and air

Researchers at RMIT University have discovered that eucalyptus bark can be converted into a highly porous form of carbon that traps pollutants, providing a practical solution to clean polluted water and air. The findings highlight the potential of turning waste materials into useful environmental resources.

SourceRMIT University·JournalBiomass and Bioenergy·TypeExperimental study·DateMay 4, 2026

Hot spring microbiomes could transform industrial CO2 waste into valuable products, Manchester researchers find

Researchers at the University of Manchester have found that terrestrial hot spring microbiomes can transform industrial CO2 waste into biomass and other valuable compounds. This discovery could enable the production of value-added products directly from CO2-rich waste streams, reducing emissions while generating economic value.

SourceUniversity of Manchester·JournalEnvironmental Microbiome·DateApr 21, 2026

Unlocking the power of industrial waste heat: new dynamic model optimizes "carnot batteries" for green energy storage

Researchers developed a quasi-dynamic mathematical model to optimize Thermally Integrated Carnot Batteries (TI-CB) under fluctuating conditions typical of factory environments. The study yielded crucial insights, including a clear roadmap for handling off-design fluctuations, bringing Carnot batteries closer to widespread deployment.

SourceHigher Education Press·JournalENGINEERING Energy·TypeExperimental study·DateApr 8, 2026

Coffee waste transformed into high-performance, biodegradable insulation material

Researchers developed a biodegradable composite made from spent coffee grounds and natural polymer, offering strong thermal insulation while being environmentally sustainable. The new material has a thermal conductivity comparable to commercial expanded polystyrene and is fully derived from renewable resources.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateApr 2, 2026

Agricultural and industrial waste transformed into advanced porous carbon for soil and water conservation

Researchers transformed waste into high-performance porous carbon materials for soil and water conservation. The study identified top-performing materials from agricultural wastes, which exhibited high surface areas and favorable pore structures, enhancing adsorption capacity and water retention.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateMar 13, 2026

Recycling jumps when garbage collection drops, new Concordia research shows

A new Concordia study reveals that UK household recycling rates are influenced by factors such as garbage collection frequency, education, and population density. The research found that districts with less frequent garbage collection and convenient recycling systems had higher recycling rates, with median levels of around 61%.

SourceConcordia University·JournalWaste Management·TypeData/statistical analysis·DateMar 3, 2026

UCO designs a 100% recycled paving block made from mollusk shells and mining waste

A team from UCO develops a 100% recycled paving block made from mollusk shells and mining waste, replacing natural aggregates and conventional cement. The block meets mechanical, durability, and safety criteria without using single natural material, contributing to circular economy and decarbonization in the construction sector.

SourceUniversity of Córdoba·JournalMaterials and Structures·TypeExperimental study·DateMar 3, 2026

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.

Jeonbuk National University researchers develop an innovative prussian-blue based electrode for effective and efficient cesium removal

Researchers at Jeonbuk National University have developed a new Prussian-blue based electrode that can effectively remove cesium from water. The electrode, made by combining Prussian blue with chemically treated carbon cloth, demonstrates high capacity for cesium adsorption and excellent reusability.

SourceJeonbuk National University, Sustainable Strategy team, Planning and Coordination Division·JournalChemical Engineering Journal·TypeExperimental study·DateFeb 18, 2026

HKUST research reveals cost-effective food waste treatment through sewage systems

A HKUST research team developed an innovative urban food waste management framework analyzing food waste data from 29 large cities worldwide. The study shows that grinding food waste and diverting it into sewage systems can reduce greenhouse gas emissions by 47% and lower total waste-management costs by 11%.

SourceHong Kong University of Science and Technology·JournalNature Cities·TypeData/statistical analysis·DateFeb 4, 2026