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Case for Space Debris Removal

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Outer space has been utilized for scientific discovery by many organizations around the world for over half a century, which has led to technological advancements that presently provide society with many everyday benefits including GPS, weather forecasting, and methods of telecommunication. Although we enjoy these services as part of our modern way of life, they, just like many other space activities, come at a cost to the space environment in the form of traffic, accessibility, and arguably the most dangerous: debris.

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Case for Space Debris Removal

History / Engineering / Law & Policy



Outer space has been utilized for scientific discovery by many organizations around the

world for over half a century, which has led to technological advancements that presently

provide society with many everyday benefits including GPS, weather forecasting, and methods

of telecommunication. Although we enjoy these services as part of our modern way of life, they,

just like many other space activities, come at a cost to the space environment in the form of

traffic, accessibility, and arguably the most dangerous: debris. Several pieces of science fiction

have envisioned a future where Earth becomes encased in a dense layer of artificial space debris

resulting from humanity’s careless use of outer space. Despite this exaggerated and fictitious

scenario, debris in space remains an issue that poses a constant threat to current and future

activities in space. To prevent this threat from worsening, debris minimizing guidelines and

policies have been established internationally. When exploring the history that inspired these

regulations, their importance can be fully realized as well as approaches to removing debris from

the space environment to keep its utilization sustainable.

October 4th, 1957 marked the beginning of the space age and the first pieces of artificial

debris in space with the launch of the Russian satellite Sputnik I (the satellite and its rocket

stage). This revealed to the United States Air Force the need for keeping surveillance on objects

in orbit, which led to the creation of Project Space Track, the beginnings of the first domestic

tracking system for all artificial satellites and probes orbiting Earth. Located at Hanscom Field in

Bedford, Massachusetts and later known as the National Space Surveillance Control Center

(NSSCC), Space Track was the first formalized effort by the U.S. to catalog satellites (Hoots et

, al., 2004). Original observations for this effort were collected from over 150 sites including

telescopes, radio receivers, Baker-Nunn cameras, and participants of the Operation Moonwatch

program (amateur astronomers). The observations were then sent to the NSSCC, via telephone,

teletype, mail, or personal messenger, where an analyst would reduce the data and provide

corrections to orbital elements for accurate orbital predictions (Hoots et al., 2004).

During the 1960s, space debris numbers rose significantly as a result of more space

launches (U.S. and Soviet Union competing in the space race), old rocket stages exploding from

leftover propellant, and many U.S. and Soviet Union anti-satellite (ASAT) weapon tests which

sought out to destroy satellites, deliberately creating debris. In the beginning of the decade, the

foundation set by Space Track and the NSSCC was improved through the development of the

Space Detection and Tracking System (SPADATS) operated by the North American Air Defense

(NORAD, now known as the North American Aerospace Defense Command) (Weeden &

Cefola, 2010). Although debris numbers in this database at the time were steadily rising (as well

as the amount of small untraceable pieces), NORAD saw them more then triple on June 28,

1961, with the explosion of a U.S. Able Star rocket stage, which was the first known artificial

object to break up unintentionally in space. The cause of the explosion was unknown and

produced at least 294 trackable pieces of debris with a majority remaining in orbit for decades

afterwards (Portree & Loftus, 1999).

Further advancing the space debris discussion in the rapidly developing industry, Donald

Kessler and Burton Cour-Palais from the National Aeronautics and Space Administration

(NASA) published an influential paper on June 1, 1978, that proposed a theoretical scenario

where collisions in space would no longer be dependent on new space launches, but rather result

from the densely polluted space environment alone. This phenomenon would create a cascading

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July 24, 2026
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2023/2024
Type
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