September 1, 2026

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Satellite and flyover tech advances for landfill methane as industry seeks more clarity

Satellite and flyover tech advances for landfill methane as industry seeks more clarity

A growing number of technologies are taking to the skies to remotely detect leaking methane. Meanwhile, analysis frameworks are debuting down on Earth to make sense of the data. As these tools expand, so do their differences.

While the technology advances, state and federal regulatory frameworks largely remain the same. This means landfill operators or outside groups may rely on different standards for how to remotely measure emissions or talk about their findings. That could complicate the communication needed to reduce landfill methane through corporate goals or federal programs

On July 5th, the U.S. EPA announced it is collecting information about “new technologies” that could be incorporated into updated emissions guidelines and standards of performance for MSW landfills. The EPA could eventually regulate how the technologies are deployed, a policy shift that some groups say needs to happen. 

“This is about moving from the needle-in-a-haystack to a much more accurate and effective approach of monitoring,” said Katherine Blauvelt, the circular economy director at Industrious Labs, a nonprofit focused on cutting emissions from industrial sectors. “This is not bleeding edge at all.”

While EPA data shows the waste sector’s greenhouse gas emissions have declined in recent years, municipal landfills still release the third-largest amount of human-generated methane in the U.S. Today, about 600 of those locations are required by the Clean Air Act to have a technician walk the surface once a quarter with a handheld methane detection tool.

According to Industrious Labs, these standard protocols might be missing crucial information. In a recent examination of EPA inspection reports, the group found that 21 of 22 examined locations had methane exceedances above 500 parts per million — the federal regulatory limit. It also found that site and federal records about emissions contradicted one another at 10 of these locations.

One way to solve this issue, Industrious Labs suggested, is to adopt more comprehensive and up-to-date methane technology.

Currently, EPA regulations don’t speak to the role that remote detection could play in monitoring and regulating this gas. However, policies for oil and natural gas systems — the second-largest source of methane emissions —do recognize these technologies. Revamped guidelines, effective May 7, allow the EPA to inform owners and operators about “super-emitter” data collected by agency-approved satellites and flyover gear. In some cases, owners will have to fix the source of the greenhouse gases.

Whether the technology is in orbit (like a satellite) or passes closer to the ground (like on a drone or plane), the systems aboard are spectrometers. These devices record light as it bounces off Earth’s atmosphere. More specifically, the spectrometer detects the exact wavelength that methane reflects. When flying past, the device takes a picture of how the methane-specific wavelength is behaving in one spot. An analytics system turns the photo into an estimate of how much methane a given location is emitting.

If the EPA set standards for how remote methane sensing will work in the oil and gas industry, said Blauvelt, then it can do the same for the waste sector. That’s why Industrious Labs is advocating for the federal agency to revise parts of the Clean Air Act to include super emitter interventions for MSW landfills that are similar to what was enacted for oil and gas.

Some remote sensors that could gain EPA approval and accomplish the same tasks for landfills have been operating for years. The commercial enterprise GHGSat, for example, has 12 satellites imaging emissions for fossil fuel and waste industry customers. Other possible remote sensors are just getting started.

Taking to the skies

Launched in March, MethaneSAT is the first emissions detection device sent into orbit by an eight-party partnership including the Environmental Defense Fund, Google and Harvard University.

What looks like a gold box with solar panel wings will scan the Earth in 200 kilometer-wide swathes, creating images with a higher resolution than other devices of its kind that are already circling the globe and detecting methane. The satellite will also pick up on point sources releasing over 500 kilograms of methane per hour. A publicly available online portal will host the MethaneSAT data.

While the program is focusing on oil and gas for now, the satellite will eventually record emissions from waste facilities. 

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