The China Mail - Rocket re-entry pollution measured in atmosphere for first time

USD -
AED 3.673042
AFN 63.503991
ALL 82.403989
AMD 368.150403
ANG 1.790403
AOA 918.000367
ARS 1465.449815
AUD 1.426534
AWG 1.8025
AZN 1.70397
BAM 1.705709
BBD 2.013483
BDT 122.708482
BGN 1.69088
BHD 0.37702
BIF 2985
BMD 1
BND 1.290663
BOB 6.90816
BRL 5.151601
BSD 0.999721
BTN 94.239742
BWP 13.585663
BYN 2.777729
BYR 19600
BZD 2.010527
CAD 1.41635
CDF 2280.000362
CHF 0.807012
CLF 0.02293
CLP 902.460396
CNY 6.769604
CNH 6.783725
COP 3452.68
CRC 453.506829
CUC 1
CUP 26.5
CVE 96.403894
CZK 21.091104
DJF 177.720393
DKK 6.516504
DOP 58.403884
DZD 133.34504
EGP 49.986489
ERN 15
ETB 158.37504
EUR 0.871204
FJD 2.235504
FKP 0.755912
GBP 0.755744
GEL 2.64504
GGP 0.755912
GHS 11.303856
GIP 0.755912
GMD 73.000355
GNF 8777.503848
GTQ 7.625892
GYD 209.119888
HKD 7.83535
HNL 26.703838
HRK 6.566204
HTG 130.583803
HUF 306.820388
IDR 17826.55
ILS 2.956604
IMP 0.755912
INR 94.37505
IQD 1310
IRR 1375000.000352
ISK 125.530386
JEP 0.755912
JMD 157.959917
JOD 0.70904
JPY 161.30504
KES 129.470385
KGS 87.450384
KHR 4012.503796
KMF 425.00035
KPW 900.00035
KRW 1528.650383
KWD 0.30802
KYD 0.833035
KZT 487.855928
LAK 22030.000349
LBP 89550.000349
LKR 333.641485
LRD 182.150382
LSL 16.20377
LTL 2.95274
LVL 0.60489
LYD 6.375039
MAD 9.245039
MDL 17.654036
MGA 4200.000347
MKD 53.691363
MMK 2099.523204
MNT 3579.573337
MOP 8.070939
MRU 40.080379
MUR 47.570378
MVR 15.460378
MWK 1736.000345
MXN 17.345204
MYR 4.137904
MZN 63.903729
NAD 16.203727
NGN 1360.440377
NIO 36.610377
NOK 9.699904
NPR 150.787532
NZD 1.743376
OMR 0.384983
PAB 0.999725
PEN 3.384039
PGK 4.38775
PHP 60.716504
PKR 278.303701
PLN 3.71375
PYG 6138.96617
QAR 3.640504
RON 4.568104
RSD 102.170373
RUB 73.103247
RWF 1464
SAR 3.74824
SBD 8.061424
SCR 13.683262
SDG 600.503676
SEK 9.583504
SGD 1.292404
SHP 0.746601
SLE 24.750371
SLL 20969.503664
SOS 571.503662
SRD 37.402504
STD 20697.981008
STN 21.4
SVC 8.747449
SYP 110.532098
SZL 16.203649
THB 32.890369
TJS 9.272075
TMT 3.51
TND 2.91175
TOP 2.40776
TRY 46.437504
TTD 6.779085
TWD 31.715038
TZS 2630.985038
UAH 44.909735
UGX 3638.520172
UYU 39.96965
UZS 12005.000334
VES 596.036404
VND 26320
VUV 118.645306
WST 2.751804
XAF 572.078806
XAG 0.015419
XAU 0.00024
XCD 2.70255
XCG 1.801643
XDR 0.703697
XOF 565.000332
XPF 103.250363
YER 238.625037
ZAR 16.485037
ZMK 9001.203584
ZMW 17.919703
ZWL 321.999592
  • CMSC

    0.0500

    22.37

    +0.22%

  • CMSD

    0.0000

    22.29

    0%

  • NGG

    -1.2400

    79.44

    -1.56%

  • RBGPF

    -0.5300

    60.61

    -0.87%

  • RYCEF

    -0.0300

    18.4

    -0.16%

  • BTI

    -0.5800

    58.91

    -0.98%

  • AZN

    -2.9600

    174.93

    -1.69%

  • GSK

    -1.4800

    50.67

    -2.92%

  • RIO

    -2.5900

    100.08

    -2.59%

  • BCE

    0.0000

    23.28

    0%

  • VOD

    -0.2300

    14.3

    -1.61%

  • RELX

    -0.8300

    31.18

    -2.66%

  • BCC

    3.8500

    74.66

    +5.16%

  • JRI

    0.0500

    12.67

    +0.39%

  • BP

    -1.0400

    39.1

    -2.66%

Rocket re-entry pollution measured in atmosphere for first time
Rocket re-entry pollution measured in atmosphere for first time / Photo: © GETTY IMAGES NORTH AMERICA/AFP/File

Rocket re-entry pollution measured in atmosphere for first time

When part of a SpaceX rocket re-entered Earth's atmosphere exactly a year ago, it created a spectacular fireball that streaked across Europe's skies, delighting stargazers and sending a team of scientists rushing towards their instruments.

Text size:

The German team managed to measure the pollution the rocket's upper stage emitted in our planet's difficult-to-study upper atmosphere -- the first time this has been achieved, according to a study published on Thursday.

It is vital to learn more about this little-understood form of pollution because of the huge number of satellites that are planned to be launched in the coming years, the scientists emphasised.

In the early hours of February 19, 2025, the upper stage of a Falcon 9 rocket was tumbling back to Earth when it exploded into a fireball that made headlines from the UK to Poland.

"We were excited to try and test our equipment and hopefully measure the debris trail," the team led by Robin Wing and Gerd Baumgarten of the Leibniz Institute of Atmospheric Physics in Germany told AFP via email.

In particular, the scientists wanted to measure how the rocket polluted what they call the "ignorosphere" -- because it is so difficult to study.

This region between 50 to 100 kilometres (31 to 62 miles) above Earth includes the mesosphere and part of the lower thermosphere.

- 'Harbinger' -

The team used technology called LIDAR, which measures pollution in the atmosphere by shooting out lots of laser pulses and seeing which bounce back off something.

They detected a sudden spike in the metal lithium in an area nearly 100 kilometres above Earth. This plume had 10 times more lithium than is normal in this part of the atmosphere.

The team then traced the plume back to where the rocket re-entered the atmosphere, west of Ireland.

For the first time, this proves it is possible to study pollution from re-entering rockets at such heights before it disperses, the scientists said.

But the impact from this rocket pollution remains unknown.

"What we do know is that one ton of emissions at 75 kilometres (altitude) is equivalent to 100,000 tons at the surface," they said.

The study warned the case was a "harbinger" of the pollution to come, given how many rockets will be needed to launch all the satellites that Earth is planning to blast into space.

Currently, there are around 14,000 active satellites orbiting our planet.

In the middle of last month, China applied for permission to launch around 200,000 satellites into orbit.

Then at the end of January, billionaire Elon Musk's SpaceX applied for permission to launch one million more.

Eloise Marais, a professor of atmospheric chemistry at University College London not involved in the new study, told AFP the research was "really important".

"There is currently no suitable regulation targeting pollution input into the upper layers of the atmosphere," she explained.

"Even though these portions of the atmosphere are far from us, they have potentially consequential impacts to life on Earth if the pollutants produced are able to affect Earth's climate and deplete ozone in the layer protecting us from harmful UV radiation."

The study was published in the journal Communications Earth & Environment.

A.Kwok--ThChM