Polski

Laser technology reveals hidden gases in complex mixtures

413
2024-01-11 14:29:04
Zobacz tłumaczenie

Laser Network reported on January 11th that modern equipment has been fine tuned to detect highly specific gases, including trace gases found in the atmosphere, gases present in combustion exhaust emissions, and gases used in technology plasma applications.

They achieve this by calculating the percentage of light at a certain wavelength that is absorbed or attenuated by the sample. This way, the concentration of the gas can be calculated. The chemicals to be tested determine which detection wavelength should be used. In fact, multiple molecules can absorb the same amount of light, even at carefully selected wavelengths, which is a typical problem.

The efficiency of measurement methods is limited by this phenomenon called cross sensitivity. So far, this issue has been resolved, either by conducting additional measurements at various wavelengths, such as measuring spectra, or by using gas chromatography to separate interfering gases before measurement.

Dr. Ibrahim Sadiek, a former doctoral candidate at Gernot Friedrich and Leibniz Institute of Plasma Science and Technology, has now proven that there is a simpler solution.

Scientists have created a technology that enables them to surpass this cross sensitivity in absorption spectroscopy, even when producing single wavelength data. The scientific journal Science Report recently released a feasibility study on a novel, patent pending dual species one wavelength technology based on selective optical saturation.

This new technology utilizes the optical saturation phenomenon in molecules. Only very high light intensity - now easily generated by lasers - can lead to optical saturation. Subsequently, these molecules showed "transparency" in the absorption spectrum, indicating that the light emitted by radiation is no longer weakened.

The characteristic of the corresponding gas type is the point where the sample becomes transparent. Due to the deviation of concentration measurement caused by light saturation, it was previously believed to be harmful to absorption measurement and should be avoided at all costs.

As shown by Sadiek and Friedrich's research, using selective optical saturation can even measure the number of two molecules that completely interfere with each other at a given wavelength.

For example, a typical problem in practice is the detection of very low concentrations of chlorinated hydrocarbons in the atmosphere.

Currently, his team is conducting maritime research projects to advance the application of this technology in traditional absorption spectrometers. Then, on-site measurements will demonstrate the potential for reducing cross sensitivity to better explore the exchange process at the water air interface. If trace gases have sufficiently diverse saturation intensities, this method can theoretically be used to simultaneously detect multiple trace gases.

Source: Laser Net

Powiązane rekomendacje
  • TRUMPF machine cooler saves 50 percent energy

    Ditzingen, 05. March 2025 – At its in-house exhibition INTECH, high-tech company TRUMPF is showcasing a new cooler for its laser cutting machines. The new unit is capable of reducing energy consumed during the cooling process and uses fifty percent less energy than conventional solutions. Unlike conventional coolers, the main components of this new solution— such as pumps, fans and compressors— ar...

    03-14
    Zobacz tłumaczenie
  • Researchers have developed the world's smallest silicon chip quantum photodetector

    Researchers at the University of Bristol have made significant breakthroughs in expanding quantum technology by integrating the world's smallest quantum photodetector onto silicon chips. The paper "A Bi CMOS Electron Photon Integrated Circuit Quantum Photodetector" was published in Science Advances.In the 1960s, scientists and engineers were able to miniaturize transistors onto inexpensive microch...

    2024-05-21
    Zobacz tłumaczenie
  • Shanghai Optics and Machinery Institute has made progress in near-field state analysis of high-power laser devices based on convolutional neural networks

    Recently, the research team of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Fine Mechanics identified and analyzed the abnormal near-field output of the SG - Ⅱ upgrade device by using the spatial domain computing method and the deep learning model with attention mechanism in response to the requirements of real-time and effective...

    2024-04-25
    Zobacz tłumaczenie
  • The United States has successfully developed a full 3D printed electric spray engine

    The fully 3D printed electric spray engine is suitable for small satellite in orbit maneuver, and its production cost is only a small part of that of traditional thrusters.Image source: Massachusetts Institute of Technology, USAThe Massachusetts Institute of Technology team recently demonstrated an electric spray engine made entirely of 3D printing technology, which can be propelled by emitting ...

    02-20
    Zobacz tłumaczenie
  • Due to research conducted by scientists from South Korea and the UK, the power of lasers will increase by one million times

    Due to research conducted by scientists from South Korea and the UK, the power of lasers will be able to increase by one million times. The researchers plan to apply this improvement for scientific purposes.The study was led by representatives of Strathclyde University and the Korea Institute UNIST and GIST. Behind the scenes footage of their work in the journal Nature Photonics. It has been prove...

    2023-11-27
    Zobacz tłumaczenie