The Fort Worth Press - Artificial cloud brightening could tame El Nino, but with risks: study

USD -
AED 3.672499
AFN 65.999625
ALL 82.015257
AMD 365.929895
ANG 1.790258
AOA 917.999984
ARS 1478.4698
AUD 1.428704
AWG 1.8
AZN 1.702143
BAM 1.710961
BBD 2.014085
BDT 123.358845
BGN 1.717508
BHD 0.377139
BIF 2973.545159
BMD 1
BND 1.290723
BOB 6.923833
BRL 5.104297
BSD 1
BTN 96.401827
BWP 14.30696
BYN 2.890524
BYR 19600
BZD 2.011233
CAD 1.405835
CDF 2259.999927
CHF 0.810335
CLF 0.023721
CLP 933.679823
CNY 6.77325
CNH 6.768905
COP 3269.8
CRC 453.686531
CUC 1
CUP 26.5
CVE 96.461377
CZK 21.202056
DJF 178.080274
DKK 6.55191
DOP 58.517339
DZD 133.230989
EGP 51.081801
ERN 15
ETB 161.409875
EUR 0.87657
FJD 2.221802
FKP 0.74341
GBP 0.744875
GEL 2.624988
GGP 0.74341
GHS 11.565245
GIP 0.74341
GMD 74.000079
GNF 8774.385443
GTQ 7.630262
GYD 209.224201
HKD 7.84053
HNL 26.781153
HRK 6.605398
HTG 130.682017
HUF 316.277042
IDR 17903.1
ILS 3.054705
IMP 0.74341
INR 96.45205
IQD 1310.057039
IRR 1375000.000224
ISK 125.350104
JEP 0.74341
JMD 158.507567
JOD 0.709019
JPY 162.558981
KES 129.269994
KGS 87.450256
KHR 4039.962207
KMF 429.00018
KPW 900.000068
KRW 1477.945001
KWD 0.30977
KYD 0.833362
KZT 470.500752
LAK 22588.095321
LBP 89552.524758
LKR 336.310669
LRD 181.002205
LSL 16.482748
LTL 2.95274
LVL 0.604891
LYD 6.407138
MAD 9.343504
MDL 17.595444
MGA 4289.288589
MKD 53.862438
MMK 2100.202771
MNT 3585.401867
MOP 8.076425
MRU 39.92109
MUR 47.129847
MVR 15.460022
MWK 1734.086853
MXN 17.45313
MYR 4.092098
MZN 63.910598
NAD 16.482748
NGN 1379.740201
NIO 36.7986
NOK 9.680698
NPR 154.242923
NZD 1.71097
OMR 0.384496
PAB 1.000017
PEN 3.390684
PGK 4.471991
PHP 61.670974
PKR 277.882913
PLN 3.79713
PYG 6059.943311
QAR 3.645263
RON 4.593102
RSD 102.875985
RUB 78.571234
RWF 1471.550548
SAR 3.755397
SBD 8.071362
SCR 13.451441
SDG 600.502876
SEK 9.68411
SGD 1.291375
SHP 0.746601
SLE 24.375025
SLL 20969.507346
SOS 571.526052
SRD 37.611019
STD 20697.981008
STN 21.432945
SVC 8.749891
SYP 110.532098
SZL 16.484411
THB 33.6705
TJS 9.245285
TMT 3.51
TND 2.954361
TOP 2.40776
TRY 47.182415
TTD 6.788676
TWD 32.28502
TZS 2635.002993
UAH 44.713148
UGX 3704.837722
UYU 40.241449
UZS 11955.418693
VES 724.839802
VND 26295
VUV 118.50378
WST 2.742715
XAF 573.850474
XAG 0.017494
XAU 0.000249
XCD 2.70255
XCG 1.802308
XDR 0.713511
XOF 573.840434
XPF 104.316641
YER 238.609021
ZAR 16.50425
ZMK 9001.197378
ZMW 18.225321
ZWL 321.999592
  • RYCEF

    0.1000

    18.3

    +0.55%

  • RBGPF

    0.0000

    67.35

    0%

  • GSK

    -1.3350

    50.425

    -2.65%

  • BCE

    -0.0250

    21.815

    -0.11%

  • NGG

    -1.2350

    82.755

    -1.49%

  • RIO

    -0.9400

    89.21

    -1.05%

  • CMSC

    0.0400

    22.07

    +0.18%

  • BTI

    -0.3700

    62.47

    -0.59%

  • VOD

    -0.3200

    15.42

    -2.08%

  • BP

    0.0550

    41.955

    +0.13%

  • CMSD

    0.0050

    22.265

    +0.02%

  • AZN

    -2.7150

    166.185

    -1.63%

  • RELX

    0.2350

    33.935

    +0.69%

  • JRI

    0.0400

    12.98

    +0.31%

  • BCC

    -0.3100

    76.88

    -0.4%

Artificial cloud brightening could tame El Nino, but with risks: study
Artificial cloud brightening could tame El Nino, but with risks: study / Photo: © NOAA/AFP/File

Artificial cloud brightening could tame El Nino, but with risks: study

A brewing "Super" El Nino cycle is poised to unleash heat waves, floods and drought worldwide, with the effects amplified by long term human-caused climate change.

Text size:

But what if it was possible to interrupt and effectively "switch off" the Pacific Ocean heating phenomenon as it starts to form?

That's the premise of a new Science Advances study published Wednesday, which uses computer models to show that artificially brightening clouds over the Pacific, when timed right, could neutralize the influential weather pattern and blunt its worst impacts.

While previous research on so-called geoengineering has focused on cooling the planet as a whole, the new paper instead proposes more targeted interventions.

"These shorter timescales of interventions could be a very powerful way that geoengineering enters this portfolio of responses to climate change," lead author Jessica Wan, a postdoctoral researcher at the University of Chicago, told AFP.

Prior research had shown that the "Black Summer" bushfires that scorched Australia in 2019-2020 played a key role in creating a multi-year La Nina, the cool phase of the El Nino-Southern Oscillation cycle.

As smoke particles entered the clouds, they set off chain reactions that actually made the clouds brighter, bouncing more of the Sun's energy back to space.

Motivated by this "natural experiment," Wan and her colleagues wondered whether solar geoengineering could achieve a similar effect.

They used a powerful forecasting model to gauge what impact artificial marine cloud brightening over a vast rectangular zone in the equatorial Pacific would have had on the 1997-1998 and 2015-16 El Nino events.

This could theoretically be achieved by using ships fitted with nozzles that spray sea salt into the lower atmosphere.

El Ninos are linked with warming sea surfaces in the eastern tropical Pacific, with knock on effects globally including drier conditions and drought in Australia, wetter winters in East Africa, and warmer overall global temperatures.

After running several simulations, they found the intervention worked best when started early -- in June -- and continued through the following February.

"But the reason people would ever care about this is not temperature in a box in the Pacific, but how the impacts translate over land," said Wan.

Extreme weather events linked to El Nino have caused loss of life and trillions of dollars of economic damage.

The modeled cloud brightening reversed most of the temperature and precipitation effects -- those areas that got warmer under an El Nino were cooler, regions that got wetter instead became drier, and vice versa.

So what's the catch?

- Unknown consequences -

For starters, the technology isn't yet ready.

Teams around the world are developing the nozzles to spray sea salt into the sky, but the devices can't yet shoot nearly enough volume. Even if a nozzle is perfected, it would take roughly 2,400 ships to make the required impact.

Beyond the engineering challenges, there are further risks.

Not all regions of the world would benefit from reversing El Nino conditions, and the models showed unintended consequences, including warming over Europe and Asia.

"The other catch I would say is that we didn't look at long-term impacts," said Wan, including what would happen if marine cloud brightening was used repeatedly to suppress El Ninos.

Geoengineering has many detractors, who argue it creates a moral hazard by giving polluters a free pass to keep emitting if the climate can be artificially cooled. Wan disagrees.

"We're beyond the point now where we could just turn off emissions today and be totally fine, we're locked into warming already, and so the way that I viewed geoengineering is 'how can we reduce the worst of those impacts while we work on a long-term solution?'" she said.

"I think it would be irresponsible to not do the research, given that's the context we're in."

J.Barnes--TFWP