Zürcher Nachrichten - Europe’s power shock

EUR -
AED 4.238505
AFN 75.605955
ALL 93.059976
AMD 422.303928
AOA 1059.48236
ARS 1723.637154
AUD 1.632008
AWG 2.080303
AZN 1.956019
BAM 1.956657
BBD 2.324219
BDT 142.113511
BHD 0.435194
BIF 3449.941799
BMD 1.154121
BND 1.476534
BOB 13.611083
BRL 5.986885
BSD 1.154006
BTN 109.951138
BWP 15.534673
BYN 3.446481
BYR 22620.767352
BZD 2.320937
CAD 1.606646
CDF 2625.624645
CHF 0.936644
CLF 0.026772
CLP 1053.504801
CNY 7.784893
CNH 7.784239
COP 3619.06887
CRC 524.229739
CUC 1.154121
CUP 30.584201
CVE 110.3143
CZK 24.236999
DJF 205.50184
DKK 7.476025
DOP 67.378944
DZD 153.379268
EGP 57.838791
ERN 17.311812
ETB 186.665822
FJD 2.551186
FKP 0.854105
GBP 0.854459
GEL 3.01798
GGP 0.854105
GHS 13.212905
GIP 0.854105
GMD 84.829873
GNF 10137.530521
GTQ 8.804782
GYD 241.477918
HKD 9.056819
HNL 30.931287
HRK 7.533526
HTG 150.944842
HUF 364.580973
IDR 20611.789304
ILS 3.438243
IMP 0.854105
INR 110.106759
IQD 1511.749412
IRR 1586569.840741
ISK 142.015164
JEP 0.854105
JMD 182.691646
JOD 0.818256
JPY 183.763152
KES 149.170362
KGS 100.928043
KHR 4673.007414
KMF 492.809227
KRW 1634.990935
KWD 0.356716
KYD 0.961713
KZT 537.32082
LAK 26037.63637
LBP 103340.983682
LKR 385.749051
LRD 209.453606
LSL 18.64611
LTL 3.407819
LVL 0.698116
LYD 7.360289
MAD 10.71909
MDL 20.004594
MGA 4966.219432
MKD 61.556977
MMK 2423.580719
MNT 4150.986256
MOP 9.327569
MRU 46.125614
MUR 54.324368
MVR 17.830915
MWK 2001.094301
MXN 19.688902
MYR 4.715046
MZN 73.172527
NAD 18.64611
NGN 1571.866375
NIO 42.46898
NOK 10.929697
NPR 175.91857
NZD 1.967216
OMR 0.44378
PAB 1.154016
PEN 3.900143
PGK 5.104281
PHP 70.693939
PKR 320.550478
PLN 4.306151
PYG 6886.077428
QAR 4.20728
RON 5.23879
RSD 117.322191
RUB 95.677011
RWF 1699.830207
SAR 4.328364
SBD 9.308031
SCR 16.013388
SDG 693.042857
SEK 11.011524
SGD 1.476599
SLE 28.278953
SOS 659.483299
SRD 43.47588
STD 23887.970053
STN 24.510742
SVC 10.097513
SZL 18.628002
THB 38.179427
TJS 10.674571
TMT 4.050964
TND 3.388485
TRY 55.118201
TTD 7.826498
TWD 37.218662
TZS 3058.417798
UAH 51.563751
UGX 4280.876056
USD 1.154121
UYU 46.450759
UZS 13799.166927
VES 877.437874
VND 30070.039947
VUV 136.697302
WST 3.150738
XAF 656.238905
XAG 0.017531
XAU 0.000261
XCD 3.119069
XCG 2.079811
XDR 0.815854
XOF 656.250282
XPF 119.331742
YER 273.760469
ZAR 18.627377
ZMK 10388.47156
ZMW 21.718706
ZWL 371.626421
  • RBGPF

    2.2800

    72.16

    +3.16%

  • CMSD

    0.0580

    21.688

    +0.27%

  • NGG

    0.2800

    80.55

    +0.35%

  • RIO

    0.5100

    101.5

    +0.5%

  • GSK

    -0.6700

    50.23

    -1.33%

  • RYCEF

    -0.0200

    20.55

    -0.1%

  • CMSC

    0.0900

    21.53

    +0.42%

  • BCE

    -0.4100

    22.96

    -1.79%

  • RELX

    -0.8800

    34.49

    -2.55%

  • BP

    -0.1800

    42.98

    -0.42%

  • VOD

    0.1300

    16.03

    +0.81%

  • BCC

    -1.8130

    83.717

    -2.17%

  • JRI

    0.0100

    12.74

    +0.08%

  • BTI

    -0.8900

    55.92

    -1.59%

  • AZN

    -1.4300

    157.32

    -0.91%


Europe’s power shock




On 28 April 2025, an unprecedented power failure plunged most of Spain and Portugal into darkness. Within seconds the Iberian Peninsula lost around 15 gigawatts of generation—roughly 60 % of demand. Flights were grounded, public transport stopped, hospitals cancelled routine operations and emergency services were stretched. Spain’s interior ministry declared a national emergency, deploying 30 000 police officers, while grid operators scrambled to restore power. The outage, thought to have originated in a failed interconnector with France, highlighted the fragility of Europe’s interconnected grids. An industry association later reported that it took 23 hours for the Iberian grid to return to normal capacity.

Energy analysts noted that the blackout was not only a technical failure but also a structural one. Spain and Portugal depend heavily on wind and solar power, which provide more than 40 % of Spain’s electricity and over 60 % in Portugal. These sources supply little rotational inertia, so when the France–Spain interconnector tripped the system lacked the flexibility and backup capacity to stabilise itself. Reliance on a single interconnector also left the peninsula “islanded” and unable to import power quickly.

A continent on edge
The Iberian blackout came against a backdrop of soaring energy prices, economic malaise and rising electricity demand from data centres and electrified transport. Europe has spent the past two years grappling with the fallout from Russia’s invasion of Ukraine, which cut cheap gas supplies and forced governments to scramble for alternative fuels. Germany’s Energiewende, once a model for the energy transition, has been strained. After shutting down its last three reactors on 15 April 2023, Germany shifted from being a net exporter of electricity to a net importer; by November 2024 imports reached 25 terawatt‑hours, nearly triple the 2023 level. About half of the imported electricity came from France, Switzerland and Belgium—countries whose power systems are dominated by nuclear energy. Germany’s gross domestic product shrank 0.3 % in 2023 and was expected to contract again in 2024, and a survey of 3 300 businesses found that 37 % were considering reducing production or relocating because of high energy costs; the figure was 45 % among energy‑intensive firms.

The collapse of domestic nuclear generation has increased Germany’s reliance on coal and gas. In the first half of 2025 the share of fossil‑fuel electricity rose to 42.2 %, up from 38.4 % a year earlier, while power from renewables fell by almost six percent. Coal‑fired generation increased 9.3 % and gas‑fired output 11.6 %; weak winds cut wind output by 18 %, even as solar photovoltaic production jumped 28 %. The result has been higher emissions and greater dependence on imports.

Yet Germany’s grid remains resilient: the Federal Network Agency reported that power disruptions averaged 11.7 minutes per customer in 2024—one of the lowest figures in Europe—and the energy transition has not compromised supply security. Nevertheless, researchers warn that unexpected shocks like the Iberian blackout could occur if investment in grid flexibility and storage does not keep pace.

Nuclear renaissance across Europe
The energy crisis has prompted many European governments to re‑examine nuclear energy. Belgium has repealed its nuclear‑phase‑out law and plans new reactors, arguing that nuclear power provides reliable, low‑carbon electricity. Denmark, Italy, Poland, Sweden and Spain have all signalled interest in building new plants or extending existing reactors. Italy intends to bring nuclear power back by 2030, while Denmark and Sweden are exploring small modular reactors. The European Union already has about 100 reactors that supply almost a quarter of its electricity. Nuclear plants emit few air pollutants and provide round‑the‑clock power, making them attractive for countries seeking to cut emissions and reduce reliance on gas. Critics remain concerned about waste disposal and the possibility that investment in nuclear could divert resources from renewables.

This shift is visible at the political level. In September 2025, France and Germany adopted a joint energy roadmap that recognises nuclear energy as a low‑carbon technology eligible for European financing. The roadmap aims to end discrimination against nuclear projects and represents a departure from Germany’s long‑standing opposition. It does not alter national policies but signals a shared stance in forthcoming EU negotiations.

Germany’s political U‑turn
Germany’s nuclear exit has become a central issue in domestic politics. Surveys show that two‑thirds of Germans support the continued use of nuclear energy, and more than 40 % favour building new plants. A 2024 report argued that there are no significant technical obstacles to restarting closed reactors and that three units could be back online by 2028 if decommissioning were halted, adding about 4 gigawatts of capacity. The same report noted that a moratorium on dismantling reactors and amendments to the Atomic Energy Act are urgent prerequisites.

During the February 2025 election campaign, conservative leader Friedrich Merz pledged to revive nuclear power and build 50 gas‑fired plants to stabilise the grid. His party’s manifesto proposed an expert review on restarting closed reactors and research into advanced technologies such as small modular reactors. In a surprising political shift, Merz’s government subsequently stopped blocking efforts at the European level to recognise nuclear power as a sustainable investment. At a Franco‑German summit in Toulon, he and French president Emmanuel Macron agreed on the principle of non‑discrimination for nuclear projects in EU financing.

However, the internal debate is far from settled. Katherina Reiche, Germany’s economy and energy minister, ruled out a return to conventional nuclear plants, saying that the phase‑out is complete and that companies lack the confidence to invest. She argued that the opportunity to extend the last three reactors during the crisis had been missed and emphasised the government’s focus on developing a domestic fusion reactor and potentially small modular reactors. Reiche also insisted on a “reality check” for renewable expansion and called for up to 20 gigawatts of new gas‑fired backup capacity. Her position reflects caution within the coalition, and some experts note that restarting closed reactors may face legal and economic hurdles.

Industrial relief and future challenges
High energy costs continue to burden German industry. In November 2025 the ruling coalition agreed to introduce a subsidised power price of five euro cents per kilowatt‑hour for energy‑intensive companies until 2028, pending EU approval. The plan aims to ease the competitive disadvantage faced by manufacturers and includes tendering eight gigawatts of new gas‑fired capacity. Critics argue that subsidies are a stop‑gap and that longer‑term competitiveness requires affordable, low‑carbon baseload power and streamlined permitting for renewable projects.

The Iberian blackout served as a warning that Europe’s future grid must be flexible and resilient. Analysts emphasise the need for more interconnectors, battery storage and demand‑side management to accommodate variable renewables. Germany’s grid reliability remains among the best in Europe, yet the country’s growing dependence on imports and fossil fuels raises concerns about security and climate targets. The energy crisis has revived nuclear energy as a serious option across Europe, forcing policymakers to balance decarbonisation with security of supply. Whether Germany fully embraces nuclear again remains uncertain, but the debate underscores a broader realisation: the energy transition requires a diversified mix of technologies, robust infrastructure and pragmatic policies rather than dogma.