Researchers from Idaho National Laboratory are developing tools to monitor water flow and contaminants in the vadose zone beneath the Savannah River Site. They planted soil monitoring equipment to measure water content, tritium concentration, and soil tension, providing valuable information about the vadose zone.
The Decontamination, Decommissioning, and Remediation Optimal Planning System (DDROPS) simulates facility decontamination and waste minimization. This software optimizes cutting and packaging of debris to reduce radiation exposure risk and disposal costs.
Researchers have compiled a vast collection of gamma-ray spectra, enabling identification of radioactive materials and prediction of decay. The data includes over 315 reference spectra and more than 371 associated decay schemes.
Researchers from the Partnership for Natural Disaster Reduction (PNDR) presented various studies on wind and earthquake resistance, including a large-scale extreme wind research facility and hurricane-resistant homes. The PNDR program aims to reduce damage from natural disasters through concerted nationwide research efforts.
Researchers at Idaho National Laboratory are exploring quantum-based phenomena to enhance computer microchips and other electronic devices. They aim to develop tiny, efficient semiconductors using quantum dots, which could lead to quantum computing and improved light-emitting applications.
The Center for Ion Mobility Spectrometry (IMS Center) brings together top researchers to develop new applications and advance fundamental research in ion mobility spectrometry. The center aims to expand the technology's utility into new areas, improving detection of hard-to-detect molecules like pesticides and environmental contaminants.
Researchers at Idaho National Laboratory have developed a new method to convert used french fry oil into biodiesel, producing a higher grade fuel with less waste and at a lower cost. The process eliminates the need for acid neutralization and wastewater, making it more efficient and environmentally friendly.
Researchers at Idaho National Laboratory and Miragen are developing a technique that uses antibodies to identify individuals, offering a potential alternative to DNA testing. The Antibody Profile Assay can distinguish between identical twins and provide results in just two hours.
Engineers have developed a method for coating threads with size using supercritical fluids, reducing chemical and water waste in the textile industry. The new technique could speed up thread processing by a factor of ten and replace centuries-old technology.
Researchers and scientists can now access the germanium (Ge) Gamma-Ray Spectrum Catalogue and a version of Heath's sodium iodide NaI(TI) Gamma-Ray Spectrum Catalogue online. The catalogues have been updated with new features, including replotted spectra, color coding, and zooming capabilities.
The INEEL Laser Ultrasonic Camera transforms sound waves into an image, revealing object thickness, stiffness and imperfections. The system's dynamic holographic image shows waves moving along the surface of the entire object in real-time.
Researchers at Idaho National Laboratory have discovered that water flows chaotically through the ground in heterogeneous soils and fractured rock environments. Chaos theory can now be used to model this non-linear process, which is crucial for environmental restoration.
A scale model wind machine is being tested at the Idaho National Engineering and Environmental Laboratory to simulate natural storms. The experimental data collected will aid in designing hurricane-resistant homes, with a focus on affordable solutions for shelter protection.
A group of engineers and scientists reconstruct hurricanes using a custom-built tower with data-gathering equipment. The goal is to fabricate house-sized hurricane-force winds at the HomeSaver national test facility.
Researchers have created a technique to map underground iron oxide layers, providing ideal habitats for microbes that can clean up heavy metals and organic chemicals. This method will help track the movement of these microbes through the earth and improve bioremediation efforts.
A team of scientists from Idaho National Laboratory developed a system to evaluate what's inside projectiles without opening them. The PINS technology uses neutron spectroscopy to determine the type and amount of chemical agents, enabling safe disposal and preventing accidental destruction of incinerators.
Researchers coax bacteria from contaminated soil into cleaning up toxic heavy metal chromium by adding appropriate nutrients. The team aims to optimize microbial action at contaminated sites for effective bioremediation.
Dahl's award-winning ion optics simulation program, SIMION, has been instrumental in designing instruments for the Cassini mission to Saturn. On Earth, SIMION is used to analyze environmental contaminants, decode DNA, and uncover illegal drugs in urinalysis samples.
Two Idaho National Engineering and Environmental Laboratory-developed technologies have been recognized internationally for their potential to improve the power industry. The Electro-Optic High Voltage Sensor provides safer and more cost-effective ways to measure high voltages. Rapid Solidification Process Tooling Technology reduces pr...