Dubai Telegraph - 'Extremely exciting': the ice cores that could help save glaciers

EUR -
AED 4.339975
AFN 76.814055
ALL 96.797455
AMD 444.535927
ANG 2.115423
AOA 1083.663344
ARS 1692.015434
AUD 1.685082
AWG 2.130101
AZN 2.013663
BAM 1.954639
BBD 2.37329
BDT 144.104396
BGN 1.984592
BHD 0.444336
BIF 3491.925652
BMD 1.181748
BND 1.500509
BOB 8.142163
BRL 6.165657
BSD 1.1783
BTN 106.731597
BWP 15.599733
BYN 3.385189
BYR 23162.260663
BZD 2.369792
CAD 1.617282
CDF 2599.846012
CHF 0.916635
CLF 0.025765
CLP 1017.355497
CNY 8.200091
CNH 8.189295
COP 4354.327742
CRC 584.152989
CUC 1.181748
CUP 31.316322
CVE 110.877553
CZK 24.230684
DJF 209.825355
DKK 7.471252
DOP 74.365824
DZD 153.099053
EGP 55.224195
ERN 17.72622
ETB 183.179684
FJD 2.611077
FKP 0.872136
GBP 0.867943
GEL 3.184858
GGP 0.872136
GHS 12.949308
GIP 0.872136
GMD 86.268024
GNF 10342.855918
GTQ 9.037631
GYD 246.523555
HKD 9.234002
HNL 31.26319
HRK 7.534948
HTG 154.358305
HUF 377.809361
IDR 19918.953296
ILS 3.676034
IMP 0.872136
INR 107.038538
IQD 1548.680745
IRR 49781.134392
ISK 145.012752
JEP 0.872136
JMD 184.420447
JOD 0.837906
JPY 185.77138
KES 151.999706
KGS 103.344316
KHR 4765.99007
KMF 495.152823
KPW 1063.575845
KRW 1729.84719
KWD 0.363045
KYD 0.981917
KZT 582.993678
LAK 25320.958308
LBP 105522.815101
LKR 364.543446
LRD 221.518409
LSL 19.009707
LTL 3.489395
LVL 0.714828
LYD 7.461568
MAD 10.854401
MDL 20.090066
MGA 5230.892634
MKD 61.603405
MMK 2481.679614
MNT 4231.489931
MOP 9.482267
MRU 47.093105
MUR 54.43176
MVR 18.258453
MWK 2052.696671
MXN 20.401229
MYR 4.664955
MZN 75.33688
NAD 19.009707
NGN 1615.426317
NIO 43.36424
NOK 11.451852
NPR 170.770555
NZD 1.964016
OMR 0.453131
PAB 1.1783
PEN 3.979541
PGK 5.052998
PHP 69.145302
PKR 329.485672
PLN 4.218238
PYG 7785.375166
QAR 4.303159
RON 5.093811
RSD 117.646603
RUB 90.749791
RWF 1719.778381
SAR 4.431245
SBD 9.522701
SCR 16.161135
SDG 710.825762
SEK 10.663153
SGD 1.504252
SHP 0.886617
SLE 28.894177
SLL 24780.663673
SOS 672.200685
SRD 44.691391
STD 24459.797516
STN 24.485455
SVC 10.309876
SYP 13069.630436
SZL 19.00571
THB 37.266468
TJS 11.040741
TMT 4.142027
TND 3.365032
TOP 2.845365
TRY 51.538989
TTD 7.97926
TWD 37.331853
TZS 3045.890616
UAH 50.612034
UGX 4192.509477
USD 1.181748
UYU 45.542946
UZS 14469.404578
VES 446.683163
VND 30666.360419
VUV 141.795603
WST 3.221816
XAF 655.567566
XAG 0.015204
XAU 0.000238
XCD 3.193733
XCG 2.123638
XDR 0.815316
XOF 655.567566
XPF 119.331742
YER 281.732962
ZAR 18.960639
ZMK 10637.154271
ZMW 21.945963
ZWL 380.522372
  • RBGPF

    0.1000

    82.5

    +0.12%

  • VOD

    0.4900

    15.11

    +3.24%

  • NGG

    1.1700

    88.06

    +1.33%

  • GSK

    1.0600

    60.23

    +1.76%

  • RIO

    2.2900

    93.41

    +2.45%

  • SCS

    0.0200

    16.14

    +0.12%

  • CMSC

    -0.0400

    23.51

    -0.17%

  • BTI

    0.8400

    62.8

    +1.34%

  • AZN

    5.8700

    193.03

    +3.04%

  • RYCEF

    0.2600

    16.88

    +1.54%

  • RELX

    -0.7100

    29.38

    -2.42%

  • BP

    0.8400

    39.01

    +2.15%

  • CMSD

    0.0600

    23.95

    +0.25%

  • BCC

    1.8700

    91.03

    +2.05%

  • JRI

    0.0900

    12.97

    +0.69%

  • BCE

    -0.4900

    25.08

    -1.95%

'Extremely exciting': the ice cores that could help save glaciers
'Extremely exciting': the ice cores that could help save glaciers / Photo: GREG BAKER - AFP

'Extremely exciting': the ice cores that could help save glaciers

Dressed in an orange puffer jacket, Japanese scientist Yoshinori Iizuka stepped into a storage freezer to retrieve an ice core he hopes will help experts protect the world's disappearing glaciers.

Text size:

The fist-sized sample drilled from a mountaintop is part of an ambitious international effort to understand why glaciers in Tajikistan have resisted the rapid melting seen almost everywhere else.

"If we could learn the mechanism behind the increased volume of ice there, then we may be able to apply that to all the other glaciers around the world," potentially even helping revive them, said Iizuka, a professor at Hokkaido University.

"That may be too ambitious a statement. But I hope our study will ultimately help people," he said.

Thousands of glaciers will vanish each year in the coming decades, leaving only a fraction standing by the end of the century unless global warming is curbed, a study published in the journal Nature Climate Change showed Monday.

Earlier this year, AFP exclusively accompanied Iizuka and other scientists through harsh conditions to a site at an altitude of 5,810 metres (about 19,000 feet) on the Kon-Chukurbashi ice cap in the Pamir Mountains.

The area is the only mountainous region on the planet where glaciers have not only resisted melting, but even slightly grown, a phenomenon called the "Pamir-Karakoram anomaly".

The team drilled two ice columns approximately 105 metres (328 feet) long out of the glacier.

One is being stored in an underground sanctuary in Antarctica belonging to the Ice Memory Foundation, which supported the Tajikistan expedition along with the Swiss Polar Institute.

The other was shipped to Iizuka's facility, the Institute of Low Temperature Science at Hokkaido University in Sapporo, where the team is hunting clues on why precipitation in the region increased over the last century, and how the glacier has resisted melting.

Some link the anomaly to the area's cold climate or even increased use of agricultural water in Pakistan that creates more vapour.

But the ice cores are the first opportunity to examine the anomaly scientifically.

- 'Ancient ice' -

"Information from the past is crucial," said Iizuka.

"By understanding the causes behind the continuous build-up of snow from the past to the present, we can clarify what will happen going forward and why the ice has grown."

Since the samples arrived in November, his team has worked in freezing storage facilities to log the density, alignment of snow grains, and the structure of ice layers.

In December, when AFP visited, the scientists were kitted out like polar explorers to cut and shave ice samples in the comparatively balmy minus 20C of their lab.

The samples can tell stories about weather conditions going back decades, or even centuries.

A layer of clear ice indicates a warm period when the glacier melted and then refroze, while a low-density layer suggests packed snow, rather than ice, which can help estimate precipitation.

Brittle samples with cracks, meanwhile, indicate snowfall on half-melted layers that then refroze.

And other clues can reveal more information -- volcanic materials like sulfate ions can serve as time markers, while water isotopes can reveal temperatures.

The scientists hope that the samples contain material dating back 10,000 years or more, though much of the glacier melted during a warm spell around 6,000 years ago.

Ancient ice would help scientists answer questions such as "what kind of snow was falling in this region 10,000 years ago? What was in it?" Iizuka said.

"We can study how many and what kinds of fine particles were suspended in the atmosphere during that ice age," he added.

"I really hope there is ancient ice."

- Secrets in the ice -

For now, the work proceeds slowly and carefully, with team members like graduate student Sora Yaginuma carefully slicing samples apart.

"An ice core is an extremely valuable sample and unique," said Yaginuma.

"From that single ice core, we perform a variety of analyses, both chemical and physical."

The team hopes to publish its first findings next year and will be doing "lots of trial-and-error" work to reconstruct past climate conditions, Iizuka said.

The analysis in Hokkaido will uncover only some of what the ice has to share, and with the other samples preserved in Antarctica, there will be opportunities for more research.

For example, he said, scientists could look for clues about how mining in the region historically affected the area's air quality, temperature and precipitation.

"We can learn how the Earth's environment has changed in response to human activities," Iizuka said.

With so many secrets yet to learn, the work is "extremely exciting," he added.

Y.Amjad--DT