A novel RNA-based barcoding system enables scientists to identify and track which bacteria receive genetic material from bacteriophages within complex microbial environments.
#SyntheticBiology #Microbiology #Bioengineering #EnvironmentalEngineering #sflorg
https://www.sflorg.com/2026/06/sybi06162601.html
RNA Barcoding Maps Virus-Host Dynamics

A novel RNA barcoding system maps bacteriophage-host interactions in complex microbiomes without the need for traditional lab culturing.

Legacy systems rely on kinetic friction. We offer a solid-state, zero-friction utility standard.
​Deploying multi-tiered acoustic standing waves synchronized to a 1/26 Hz baseline, our architecture establishes absolute fluidic homeostasis. It scales seamlessly from terrestrial desalination and smog abatement to deep-space life support.
​Multi-Tiered Harmonic Architecture:
https://doi.org/10.17605/OSF.IO/XVNK6

@physics @engineering #FluidDynamics #Desalination #LifeSupport #Aerospace #EnvironmentalEngineering

OSF

U.S. Army Corps of Engineers Bay Model - Wikipedia

Problem with weather in your area? Ask doctor weather

Congratulations 🎉 #flood
#cmu #civilengineering #environmentalengineering

Heteroatom-engineered covalent organic framework (COF)-based mixed matrix membranes (MMMs) are advanced porous materials integrated into polymer films designed to rapidly and accurately separate carbon dioxide from other gases.
#MaterialsScience #PhysicalChemistry #EnvironmentalEngineering #sflorg
https://www.sflorg.com/2026/05/ms05252601.html
Breakthrough COFs for Carbon Capture

Discover how heteroatom-engineered COF membranes beat the permeability-selectivity trade-off to revolutionize energy-efficient carbon capture.

A novel manufacturing method that successfully embeds living bacteria within a highly permeable polymer coating without requiring a drying phase, significantly increasing cellular survival rates.
#MaterialsScience #Microbiology #Bacteriology #EnvironmentalEngineering #SoftMatterPhysics #sflorg
https://www.sflorg.com/2026/05/ms05202601.html
Wet Biocoatings Transform Wastewate

A new permanently wet biocoating method keeps embedded bacteria alive, transforming wastewater treatment, carbon capture, and biofuel production.

A new probabilistic modeling framework that combines spatial sea surface temperature (SST) patterns with a global atmospheric climate model to quantitatively predict the intensity and frequency of severe typhoons under historical and future climate conditions.
#Climatology #Meteorology #Oceanography #EnvironmentalEngineering #sflorg
https://www.sflorg.com/2026/05/as05142601.html
Predicting typhoon intensity using ocean surface temperatures

Kyoto University researchers developed a probabilistic model using sea surface temperatures to predict the future intensity and frequency of typhoons.

This methodology is an advanced, integrated waste treatment process that converts up to 80% of municipal sewage sludge into high-purity renewable natural gas. It optimizes energy recovery while significantly reducing the operational costs and environmental impact associated with wastewater management.
#ChemicalEngineering #EnvironmentalEngineering #Microbiology #Bioenergy #sflorg
https://www.sflorg.com/2026/04/eng04212601.html
Researchers develop method to make renewable natural gas directly from waste

Enhances carbon conversion efficiency and methane yield but also enables direct production of pipeline-quality renewable natural gas