Berliner Boersenzeitung - UK lab promises air-con revolution without polluting gases

EUR -
AED 4.239393
AFN 76.187455
ALL 93.17114
AMD 421.618341
AOA 1059.703963
ARS 1727.213601
AUD 1.639217
AWG 2.080736
AZN 1.99717
BAM 1.953568
BBD 2.321548
BDT 142.677005
BHD 0.434694
BIF 3439.426093
BMD 1.154361
BND 1.477992
BOB 13.999007
BRL 5.913559
BSD 1.152658
BTN 109.581813
BWP 15.630737
BYN 3.409105
BYR 22625.480557
BZD 2.318242
CAD 1.617168
CDF 2610.011457
CHF 0.933353
CLF 0.026721
CLP 1055.109333
CNY 7.79265
CNH 7.791546
COP 3673.881667
CRC 522.691555
CUC 1.154361
CUP 30.590573
CVE 110.139177
CZK 24.180463
DJF 205.251075
DKK 7.475355
DOP 67.221459
DZD 153.497698
EGP 57.432011
ERN 17.315419
ETB 186.038334
FJD 2.553967
FKP 0.857481
GBP 0.857373
GEL 3.018718
GGP 0.857481
GHS 13.514561
GIP 0.857481
GMD 84.845162
GNF 10124.083393
GTQ 8.791956
GYD 241.124538
HKD 9.054775
HNL 30.893904
HRK 7.535207
HTG 150.703267
HUF 363.227272
IDR 20683.84493
ILS 3.477857
IMP 0.857481
INR 109.853402
IQD 1509.981531
IRR 1587015.850814
ISK 141.789703
JEP 0.857481
JMD 183.165198
JOD 0.818473
JPY 182.195114
KES 149.373012
KGS 100.948559
KHR 4671.521595
KMF 492.911771
KRW 1644.468592
KWD 0.356651
KYD 0.960607
KZT 540.904411
LAK 26056.345982
LBP 103219.381749
LKR 386.741231
LRD 208.05232
LSL 18.909879
LTL 3.408529
LVL 0.698261
LYD 7.33646
MAD 10.743027
MDL 20.027208
MGA 4906.267554
MKD 61.454794
MMK 2423.516623
MNT 4150.898625
MOP 9.312302
MRU 46.220597
MUR 54.185979
MVR 17.834424
MWK 1998.656128
MXN 19.918699
MYR 4.720872
MZN 73.775025
NAD 18.909879
NGN 1571.535555
NIO 42.420069
NOK 11.004093
NPR 175.32615
NZD 1.964048
OMR 0.443836
PAB 1.152683
PEN 3.901942
PGK 5.167939
PHP 70.252174
PKR 320.052553
PLN 4.297219
PYG 6873.998246
QAR 4.214086
RON 5.248764
RSD 117.354656
RUB 94.13771
RWF 1693.214327
SAR 4.331774
SBD 9.313789
SCR 16.730772
SDG 693.190222
SEK 10.936499
SGD 1.479678
SLE 28.401485
SOS 658.727494
SRD 43.482446
STD 23892.947289
STN 24.471302
SVC 10.085522
SZL 18.893924
THB 38.161453
TJS 10.638946
TMT 4.040264
TND 3.382136
TRY 54.928317
TTD 7.817917
TWD 37.252394
TZS 3059.054979
UAH 51.580034
UGX 4299.088703
USD 1.154361
UYU 46.347053
UZS 13702.346382
VES 870.632244
VND 30284.090289
VUV 137.76641
WST 3.150502
XAF 655.188645
XAG 0.018634
XAU 0.00027
XCD 3.119719
XCG 2.077336
XDR 0.814848
XOF 655.194314
XPF 119.331742
YER 273.439379
ZAR 18.840965
ZMK 10390.63435
ZMW 22.003863
ZWL 371.703852
  • RBGPF

    0.0000

    69.74

    0%

  • CMSD

    0.0200

    22.04

    +0.09%

  • CMSC

    -0.0600

    21.73

    -0.28%

  • BCE

    0.0600

    22.06

    +0.27%

  • RIO

    2.5000

    101.51

    +2.46%

  • JRI

    -0.0500

    12.67

    -0.39%

  • BCC

    -1.6900

    84.8

    -1.99%

  • GSK

    -0.0700

    51.46

    -0.14%

  • AZN

    5.8800

    161.5

    +3.64%

  • RYCEF

    0.6000

    21

    +2.86%

  • RELX

    -0.1900

    36.61

    -0.52%

  • VOD

    -0.3800

    15.31

    -2.48%

  • BTI

    0.1500

    59.27

    +0.25%

  • BP

    -1.2300

    41.21

    -2.98%

  • NGG

    -0.1600

    80.26

    -0.2%

UK lab promises air-con revolution without polluting gases
UK lab promises air-con revolution without polluting gases / Photo: HENRY NICHOLLS - AFP

UK lab promises air-con revolution without polluting gases

The soft, waxy "solid refrigerant" being investigated in a UK laboratory may not look very exciting, but its unusual properties promise an air-conditioning revolution that could eliminate the need for greenhouse gases.

Text size:

The substance's temperature can vary by more than 50 degrees Celsius (90 degrees Fahrenheit) under pressure, and unlike the gases currently used in appliances solid refrigerants, it does not leak.

"They don't contribute to global warming, but also they are potentially more energy efficient," Xavier Moya, a professor of materials physics at the University of Cambridge, told AFP.

Approximately two billion air-conditioner units are in use worldwide, and their number is increasing as the planet warms.

Between leaks and energy consumption, the emissions associated with them are also increasing each year, according to the International Energy Agency (IEA).

Moya has been studying the properties of these plastic crystals in his laboratory at the prestigious UK university for 15 years.

On his work surface, a large red and grey machine, topped with a cylinder, tests how the temperature of a substance changes under pressure.

The aim is to identify the best refrigerants among this class of materials, which are already used by the chemical industry and are relatively easy to obtain, even if the exact composition of the crystals eventually selected remains secret.

The phenomenon is invisible to the naked eye, but these crystals are composed of molecules that spin on their own axis.

When the substance is squeezed, that movement stops and the energy is dissipated in the form of heat.

When released, the substance cools its surroundings in what is known as the "barocaloric effect".

- Chilled cans -

"We're expecting demand for air conditioning to increase hugely, globally, between now and 2050," Cliff Elwell, a professor of building physics at University College London, told AFP.

He believes barocaloric solids have the potential to be as efficient as gas, if not more so.

"But whatever we introduce as new technologies always has to hit the basic requirements," which include being compact and quiet enough for use in homes and cars, he said.

Alongside his research at Cambridge, Moya founded the startup Barocal in 2019 to turn his research group's discoveries into tangible products.

It employs nine people and has its own laboratory, which is currently a modest container in a parking lot.

But the startup is attracting interest and in recent years has raised around €4 million ($4.5 million), notably from the European Innovation Council -- an EU program involving the UK -- and Breakthrough Energy, an umbrella group of initiatives founded by US billionaire Bill Gates to reduce greenhouse gas emissions.

It plans to increase its workforce to 25 or 30 this year.

The first air-conditioner prototype is the size of a large suitcase and hums quite loudly when a hydraulic circuit increases or decreases the pressure inside the four crystal-filled cylinders. But it works.

A small refrigerator is attached to the system, and the cans of soda inside are perfectly chilled.

- Cheaper bills -

The prototype has "not really been optimised yet for either mass, volume, or even sound", acknowledged Mohsen Elabbadi, a materials engineer at Barocal.

But the performance of the units they are working to perfect will eventually be comparable with those running on gas, he promised.

While the company is currently focusing on cooling, the technology could also be used to produce heat.

Several teams are studying these materials around the world, but the Cambridge team is a pioneer in the field, according to Breakthrough Energy, which estimates that these devices have the potential to reduce emissions by up to 75 percent compared with traditional units.

Barocal hopes to launch a first product on the market within three years, according to commercial director Florian Schabus.

These will initially be cooling units for "large shopping centres, warehouses, schools" and even "data centres", he said.

The company reasons that the ultimate promise of cheaper bills will convince businesses to stump up the higher initial costs.

Barocal is eventually aiming for retail prices similar to traditional units, allowing it to launch in the residential market.

(O.Joost--BBZ)