Polski

ABB will add optical sensors to four greenhouse gas monitoring satellites

398
2023-12-06 14:03:33
Zobacz tłumaczenie

ABB has signed a third contract with the global leader in high-resolution space greenhouse gas monitoring, GHGSat, to manufacture optical sensors for its C12, C13, C14, and C15 satellites. It is reported that C12, C13, C14, and C15 satellites are scheduled to be launched into orbit in 2024.

These new satellites will join GHGSat's expanding constellation for detecting and quantifying industrial gas leaks in space. ABB has built payloads (instruments carried on the satellites) for the emission monitoring of 10 greenhouse gas satellites launched into space.

Earlier this year, GHGSat reported that due to the excellent performance of sensors, their existing satellite methane emission measurement capabilities have doubled. This enables GHGSat to accelerate the scale of its monitoring services, helping industries such as oil and gas, power generation, and mining understand and reduce greenhouse gas emissions.

Marc Corriveau, Global Operations Head of ABB Measurement and Analysis Business Line Analysis, stated: "The new contract demonstrates GHGSat's confidence in ABB's manufacturing capabilities, as ABB has the ability to build complex, high-performance optical payloads for hyperspectral Earth observations. This year, we will double our manufacturing infrastructure dedicated to space projects so that we can better serve the thriving private space sector. As we expand into other Earth observation missions, we strive to contribute to the success of our existing clients."

GHGSat CEO Stacphane Germain said, "Our collaboration began in 2018, showcasing ABB's technical expertise and manufacturing capabilities." This experience has enhanced our confidence in ABB's support for GHGSat's ability to expand in building proprietary high-resolution payloads. This partnership is key to significantly reducing greenhouse gas emissions and ultimately having specific impacts in the fight against climate change. "

For over 20 years, ABB has been a leader in the field of orbital gas sensing, starting with the development of the Canadian Space Agency's SCISAT mission payload, which describes the concentrations of over 70 different gas types from cloud tops to outer space, as low as one in a trillion.

ABB has also provided hyperspectral technology to the Japanese GOSAT program, which is the first to conduct global mapping of greenhouse gas sources and sinks in orbit at a regional scale, starting with the first satellite in 2009 and progressing to an improved version in 2018.

Today, ABB has manufactured an enhanced version of GHGSat's proprietary wide-angle Fabry Perot (WAP) interferometer, built upon this tradition, which can track the same infrared fingerprints of greenhouse gases. Through this approach, ABB applies its extensive expertise gained from early highly anticipated government space missions to private sector space, with a focus on civilian operable low latency satellite data.

Source: OFweek

Powiązane rekomendacje
  • Researchers use desktop laser systems to generate ultrafast electrons

    In a mass particle accelerator, subatomic particles are accelerated to ultrahigh speeds that are comparable to the speed of light towards the target surface. The accelerated collision of subatomic particles produces unique interactions, enabling scientists to gain a deeper understanding of the fundamental properties of matter.Traditionally, laser based particle accelerators require expensive laser...

    2024-03-14
    Zobacz tłumaczenie
  • The influence of post-processing methods on the fatigue performance of materials prepared by selective laser melting

    Researchers from Opole University of Technology in Poland have reported the latest progress in studying the effect of post-processing methods on the fatigue performance of materials prepared by selective laser melting (SLM). The related research was published in The International Journal of Advanced Manufacturing Technology under the title "Influence of post processing methods on fatigue performan...

    01-17
    Zobacz tłumaczenie
  • University of California, Los Angeles Joins the American High Power Laser Facility Alliance

    The University of California, Los Angeles is joining LaserNetUS, a high-power laser facility alliance established by the Department of Energy, aimed at advancing laser plasma science.Unique facilities are located in universities and national laboratories across the United States and Canada, providing a wide range of opportunities for researchers and students.The Phoenix Laser Laboratory at the Uni...

    2023-09-15
    Zobacz tłumaczenie
  • Scene Cinemas Unveils Cinematic Changes with IMAX with Laser Upgrade

    Under the visionary leadership of acclaimed producer Hisham Abdel Khalek, Scene Cinemas proudly presents a revolutionary upgrade to its multiplex – IMAX with Laser. This cutting-edge upgrade, featuring a next-generation laser projection and multi-channel sound system exclusively for IMAX theaters, promises an unmatched cinematic journey.IMAX with Laser has a state-of-the-art 4K laser project...

    2023-12-07
    Zobacz tłumaczenie
  • Scientists have demonstrated a new way to make infrared light from quantum dots, and the experiments are still in the early stages

    Scientists at the University of Chicago have demonstrated a way to create infrared light using colloidal quantum dots. The researchers say this approach shows great promise; Although the experiment is still in its early stages, these quantum dots are already as efficient as existing conventional methods.These points could one day form the basis of infrared lasers, as well as small and inexpensive ...

    2023-09-08
    Zobacz tłumaczenie