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Study calls for action to explore potential impacts of decommissioned offshore structures

Researchers highlight the need for a coherent international framework for decommissioning offshore structures due to limited evidence on their environmental impact. The study emphasizes the critical need for consensus on future approaches as an estimated 1,800 offshore wind turbines will require decommissioning by 2030.

SourceUniversity of Plymouth·JournalTrends in Ecology & Evolution·TypeLiterature review·DateMay 9, 2023

Drug industry’s carbon impact could be cut by half

A new study from Cornell University found that the pharmaceutical industry can significantly reduce its environmental impact. The study analyzed the full life cycle of the HIV antiretroviral drug Tenofovir Disoproxil Fumarate (TDF) and found that energy usage is the biggest contributor to carbon emissions, accounting for up to 45% of t...

SourceCornell University·JournalACS Sustainable Chemistry & Engineering·DateMay 8, 2023

Tiny microbes could brew big benefits for green biomanufacturing

Researchers have engineered bacteria to combine natural enzymatic reactions with the carbene transfer reaction, producing new-to-nature carbon products that can be used in biochemicals and advanced biofuels. This breakthrough could reduce industrial emissions by providing sustainable alternatives to chemical manufacturing processes.

SourceDOE/Lawrence Berkeley National Laboratory·JournalNature·TypeExperimental study·DateMay 8, 2023

GAME-Net: a graph neural network for fast evaluation of the adsorption energy in heterogeneous catalysis

Researchers developed GAME-Net, a graph neural network that rapidly evaluates adsorption energy for large molecules like plastics and biomass. The model achieves accuracy comparable to density functional theory (DFT) while utilizing simple molecular representations.

SourceInstitute of Chemical Research of Catalonia (ICIQ)·JournalNature Computational Science·TypeComputational simulation/modeling·DateMay 2, 2023

New, comprehensive systematic review and meta-analysis illustrate the need for nuance in public health guidance related to consumption of sugars

A comprehensive review of 169 clinical trials found that the effect of fructose-containing sugars on adiposity varies among food sources and energy control. High doses of certain sources, like SSBs, lead to increased body weight, while others, such as fruit and honey, show moderate beneficial effects when consumed in moderation.

SourceAmerican Society for Nutrition·JournalAmerican Journal of Clinical Nutrition·TypeSystematic review·DateApr 26, 2023

Fishermen-developed “banger bar” helps reduce risk of injury on crab boats, OSU study finds

A study by Oregon State University found that a metal bar installed on the crab-sorting table can reduce the strain on fishermen's bodies and prevent injuries. The researchers tested different banger bar configurations and found that higher bars and triangular bars were the most effective in reducing muscle activity and joint moment.

SourceOregon State University·JournalApplied Ergonomics·TypeExperimental study·DateApr 25, 2023

Computational ‘short cuts’ offer fast answers to complex supply chain problems

Computational heuristics like Grey Wolf Optimizer and Whale Optimization Algorithm offer fast solutions to complex supply chain problems, providing accurate results within a shorter time frame. The research suggests these tools can be a valuable addition to supply chain management, especially in responding to unexpected disruptions.

SourceNorth Carolina State University·JournalIEEE Access·TypeComputational simulation/modeling·DateApr 25, 2023

Researchers team up with national lab for innovative look at copper reactions

A team of researchers at Binghamton University partnered with Brookhaven National Laboratory to investigate copper oxide peroxides and their effects on oxidation reactions. They used two spectroscopy methods to observe changes in the surface of copper oxide and found that peroxides enhance H2 oxidation but inhibit CO oxidation.

SourceBinghamton University·JournalProceedings of the National Academy of Sciences·DateApr 24, 2023

Fungal genetics could help develop novel biotechnologies

A new review paper highlights the potential of fungal biotechnology to advance various industries. By manipulating fungal genomes, researchers can develop bioinformatic tools and create sustainable biomaterials, such as machine learning algorithms for predicting mycological patterns or fungal batteries.

SourceOhio State University·JournalFrontiers in Fungal Biology·TypeLiterature review·DateApr 20, 2023

Nagoya University researchers in Japan develop a new ultra-high-density sulfonic acid polymer electrolyte membrane for fuel cells

Nagoya University researchers have developed a poly(styrenesulfonic acid)-based PEM with an ultrahigh density of sulfonic acid groups, exceeding five times that of typical commercially available membranes. The new membrane exhibits a proton conductivity of 0.93 S/cm at 80°C under 90%RH, six times higher than Nafion or Selemion under th...

SourceNagoya University·JournalACS Applied Polymer Materials·DateApr 19, 2023

Warm-up time corrects creativity power imbalance

Researchers at Cornell University found that employees who are not in positions of power can become more creative when given time to warm up to a task by engaging in it multiple times. This challenges the idea that power boosts creativity and suggests a simple intervention to empower all employees.

SourceCornell University·JournalJournal of Experimental Psychology·DateApr 19, 2023

Researchers develop carbon-negative concrete

Scientists at Washington State University have created a carbon-negative concrete that can sequester up to 23% of its weight in CO2 while maintaining strength comparable to regular cement. This innovation could significantly reduce the industry's carbon footprint, with potential applications in pavements and bridges.

SourceWashington State University·JournalMaterials Letters·DateApr 18, 2023

Breaking inert bonds: Multicomponent catalysts pave the way for green chemistry and green carbon science

Researchers explored multicomponent electrocatalysts for activating and converting inert bonds in CO2 and N2. Three models were developed: Type I, II, and III, offering advantages in stability, activity, and reaction processes. Future directions involve scaling up and integrating these processes into industrial applications.

SourceIndustrial Chemistry & Materials·JournalIndustrial Chemistry and Materials·TypeLiterature review·DateApr 10, 2023

MSU to refurbish world’s first superconducting cyclotron for chip testing

The MSU facility will provide several thousand additional hours of chip testing capacity annually, addressing the US national shortfall in advanced microelectronics testing. The K500 cyclotron will be used to test electronic components for space-based applications where levels of ionizing radiation are higher than at Earth's surface.

Across the divide: Manufacturing better batteries

The article explores knowledge gaps between laboratory and industrial manufacturing of batteries, highlighting the need for a shift in research priorities. Researchers propose new ways to design experiments that account for industry challenges, such as cost efficiency and impurity tolerance. The study aims to bridge the gap between fun...

SourceDOE/Pacific Northwest National Laboratory·JournalNature Energy·TypeLiterature review·DateMar 30, 2023

Pusan National University researchers develop non-intrusive sensor for pipeline monitoring

A novel, low-cost sensor system utilizing force-sensing resistor technology has been developed by Pusan National University researchers for real-time pipeline monitoring. The system demonstrated a 99.4% correlation with commercial sensors, enabling accurate detection of pipeline damages.

SourcePusan National University·JournalStructural Control and Health Monitoring·TypeExperimental study·DateMar 29, 2023

Scientists integrate two-dimensional materials into silicon microchips for advanced data storage and computation

Researchers at King Abdullah University of Science & Technology (KAUST) successfully integrated two-dimensional materials on silicon microchips, achieving high integration density, electronic performance, and yield. The resulting hybrid devices exhibit special electronic properties that enable low-power consumption artificial neural ne...

Pusan National University researchers develop portable color-changing food spoilage sensor

Researchers at Pusan National University have created a portable molecular sensor that detects biogenic amines released from spoiled food using polydiacetylene-based beads. The sensor, which changes color to red upon binding with BAs, can be used for rapid visual detection of spoiled food during storage and distribution.

SourcePusan National University·JournalFood Chemistry·TypeExperimental study·DateMar 21, 2023

Turning vegetable oil industry waste into power: innovative electrode modification improves bio-electrochemical treatment of wastewater

Researchers have developed a novel and cost-effective anode catalyst that can improve and stabilize power generation performance of MFCs treating vegetable oil industry wastewater. The study investigates modification of electrodes to increase bacterial adhesion and efficient electron transfer.

SourceSociety of Chemical Industry·JournalJournal of Chemical Technology and Biotechnology·DateMar 13, 2023

New study finds offering paid sick leave is good for U.S. business

A recent study by Florida Atlantic University and Cleveland State University researchers found that offering paid sick leave to US workers leads to fewer occupational injuries, less presenteeism and better employee health and safety. The study also shows positive impacts on business outcomes such as improved morale, retention, profitab...

SourceFlorida Atlantic University·JournalAmerican Journal of Industrial Medicine·TypeMeta-analysis·DateFeb 23, 2023