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

EUR -
AED 4.175728
AFN 73.328437
ALL 92.12319
AMD 413.073921
ANG 2.035429
AOA 1043.654828
ARS 1733.645151
AUD 1.619717
AWG 2.047804
AZN 1.929658
BAM 1.955205
BBD 2.290054
BDT 139.988644
BGN 1.913869
BHD 0.428546
BIF 3410.637413
BMD 1.136879
BND 1.453322
BOB 13.921948
BRL 5.940079
BSD 1.137029
BTN 109.070258
BWP 15.545476
BYN 3.441704
BYR 22282.831098
BZD 2.286635
CAD 1.611242
CDF 2643.243691
CHF 0.945292
CLF 0.027864
CLP 1100.237215
CNY 7.628971
CNH 7.629846
COP 3833.658771
CRC 516.376973
CUC 1.136879
CUP 27.287899
CVE 110.615584
CZK 24.397762
DJF 202.045914
DKK 7.476079
DOP 63.523102
DZD 152.155133
EGP 59.224244
ERN 17.053187
ETB 185.279579
FJD 2.543426
FKP 0.858135
GBP 0.857639
GEL 2.972931
GGP 0.858135
GHS 13.250277
GIP 0.858135
GMD 84.129164
GNF 9951.102741
GTQ 8.683435
GYD 237.900764
HKD 8.919101
HNL 30.520983
HRK 7.532055
HTG 148.801276
HUF 367.143218
IDR 20468.826746
ILS 3.501135
IMP 0.858135
INR 109.123401
IQD 1489.360006
IRR 1563038.2821
ISK 136.971423
JEP 0.858135
JMD 179.985245
JOD 0.806063
JPY 178.950458
KES 147.430914
KGS 99.418378
KHR 4614.657011
KMF 492.268388
KPW 1023.191585
KRW 1546.292209
KWD 0.351091
KYD 0.947524
KZT 499.99229
LAK 25510.575738
LBP 101814.469258
LKR 376.332132
LRD 195.553089
LSL 18.68358
LTL 3.356908
LVL 0.687686
LYD 7.272915
MAD 10.948962
MDL 20.10115
MGA 4987.54849
MKD 61.551275
MMK 2387.259195
MNT 4088.298238
MOP 9.186926
MRU 45.546544
MUR 53.967978
MVR 17.564927
MWK 1971.526233
MXN 20.450757
MYR 4.640284
MZN 72.657494
NAD 18.68358
NGN 1505.819136
NIO 41.83764
NOK 10.842985
NPR 174.517583
NZD 2.006494
OMR 0.437134
PAB 1.136969
PEN 3.863495
PGK 5.143526
PHP 71.042411
PKR 315.023605
PLN 4.369538
PYG 6677.968423
QAR 4.144239
RON 5.276139
RSD 117.410088
RUB 96.042466
RWF 1678.71145
SAR 4.27002
SBD 9.168529
SCR 15.90461
SDG 683.84998
SEK 11.322464
SGD 1.452594
SHP 0.858346
SLE 28.023601
SLL 23839.777847
SOS 649.845174
SRD 42.8444
STD 23531.1028
STN 24.494164
SVC 9.948061
SYP 14781.702837
SZL 18.678893
THB 38.129142
TJS 10.488448
TMT 3.990446
TND 3.366876
TOP 2.737332
TRY 55.698665
TTD 7.716856
TWD 36.144685
TZS 2995.679938
UAH 51.019579
UGX 4450.724294
USD 1.136879
UYU 45.576936
UZS 13433.149672
VES 969.111532
VND 29529.867161
VUV 133.925611
WST 3.121549
XAF 655.957
XAG 0.018746
XAU 0.000276277497
XCD 3.072473
XCG 2.049095
XDR 0.803833
XOF 655.957
XPF 119.331742
YER 269.042434
ZAR 18.643117
ZMK 10233.283289
ZMW 22.142556
ZWL 366.074618
SSP 6494.52655
MXV 2.315995
  • JRI

    -0.2500

    10.77

    -2.32%

  • RIO

    -0.1500

    94.41

    -0.16%

  • RBGPF

    1.6000

    67

    +2.39%

  • NGG

    -0.2500

    75.24

    -0.33%

  • BCE

    -0.4100

    20.56

    -1.99%

  • CMSC

    0.0000

    20.4

    0%

  • GSK

    0.4600

    49.7

    +0.93%

  • BTI

    0.4200

    56.05

    +0.75%

  • CMSD

    -0.0300

    20.27

    -0.15%

  • RELX

    -0.4500

    33.07

    -1.36%

  • BP

    0.2800

    44.43

    +0.63%

  • VOD

    -0.0400

    16.58

    -0.24%

  • AZN

    -0.4300

    166.15

    -0.26%

  • RYCEF

    0.4000

    19.71

    +2.03%

  • BCC

    -0.5500

    76.59

    -0.72%

'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.

X.Blaser--NZN