During this year’s Singapore Airshow, electric Vertical Takeoff and Landing (eVTOL) jet developer Lilium has signed a memorandum of understanding with global aviation services provider PhilJets to bring on-demand travel services in Asia, beginning in the Philippines.
Lilium ($LILM) is an advanced air mobility (AAM) startup founded in Munich, Germany, in 2015 that has since expanded its footprint of development teams across Europe and the United States. Its current staff is approaching 1,000 personnel, including 500 aerospace engineers, who continue to work toward bringing Lilium’s unique eVTOL Jet design to commercial operations.
We’ve been following the progress of Lilium since 2016 and have reported on its progress and early failures leading up to today’s news. Most recently, Lilium achieved development certification from the European Aviation Safety Agency (EASA), enabling the company to continue developing, testing, and preparing its eVTOL jets without less EASA oversight en route toward certification and production before commercial operations.
While the German eVTOL specialist continues to make strides in Germany, we may see the first initial air-taxi rides in its jets on another continent – Asia. More specifically, the Philippines.
The eVTOL Jet / Source: Lilium
Lilium plans to bring eVTOL jet operations to Asia
Per news from Lilium today, it signed a Memorandum of Understanding (MoU) with PhilJets – a boutique aviation transport services group based in the Philippines that currently serves the Association of Southeast Asian Nations (ASEAN) region.
Under the agreement signed in Singapore today, PhilJets intends to purchase ten eVTOL jets from Lilium as part of a strategic collaboration that also entails the establishment of air taxi and private flight operations across the Philippines and other ASEAN countries, such as Cambodia.
The new partners shared plans to identify potential sites, requirements, and potential partners for landing infrastructure in the region while sharing vertiport specifications. PhilJets will also gain access to Lilium’s Rolodex of eVTOL charging hardware providers.
From there, Lilium and PhilJets intend to develop and implement commercial eVTOL jet services, including aerial route planning and exploring passenger demand in the region. PhilJets Chairman Thierry Tea spoke about the new partnership with Lilium:
Our team is proud to collaborate with Lilium on the mission to transform the Philippine´s mobility with eVTOLs. With its growing economy, geography, and important tourism industry, the Philippines is a great match to the Lilium Jet´s capabilities. Innovation in aviation is gaining traction among regulators, urban planners, and industry leaders of worldwide economies. Providing efficient connectivity to customers while reducing carbon emissions is a major focus for air transport operators such as PhilJets. We are also looking forward to bringing this technology into Cambodia and other countries in the region.
The new partners shared that they chose the Philippines as a starting point for eVTOL jet travel in Asia because the country has over 7,500 islands. The quick and sustainable regional air mobility Lilium’s eVTOL jets can provide feels like a perfect fit to decarbonize the region while also showcasing the potential of the technology for other island nations.
The Lilium Jet is powered by proprietary Ducted Electric Vectored Thrust (DEVT) technology integrated into its wind flaps, offering better aerodynamics and a lower noise profile than other eVTOLs with more drone-like designs.
The eVTOL offers a modular cabin that can be configured with up to six passenger seats plus the pilot or zero seats to support clean cargo logistics. Lilium eVTOL Jet production began in late 2023, ahead of commercial flights expected to start in 2026. Check out flight footage of the Jet below:
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Despite the will-they, won’t-they uncertainty surrounding the future of tariffs and union jobs and – let’s face it – just about everything else in every industry these days, GM says it has no plans to move production of its Ultium-based EVs from Mexico to the US.
The General seems to know a good thing when it sees one, so it should come as no surprise to learn that GM has no plans to scuttle its assembly lines out of the country.
“At this time, GM has no plans to halt or relocate production of any of our EV models made in Mexico,” the director of GM de México’s EV operations, Adrián Enciso, told the Spanish-language newspaper, Milenio. “It’s possible that additional models, such as (the new 2026 Chevy Spark) could be built here, too.”
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Market Watch is reporting that the proposed tariffs, if they take effect, could raise GM’s cost to make electric cars in Mexico by up to $4,300 per vehicle. But while that could put a significant per-unit dent in GM’s profits, it’s worth noting that the EVs might continue to be built in Mexico and sold in Canada and other markets – the new Spark, especially, is targeted towards Central and South America, anyway.
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The mining equipment experts at Epiroc will supply a fleet of autonomous, zero-emission electric Pit Viper 271E and SmartROC D65 BE drill rigs at a number of Australian mines operated by multinational metals firm, Fortescue.
The $350 million AUD (approx. $225 million US) deal will see Epiroc AB supply its customer, Fortescue, with a number of blast hole drill rigs powered by either a cable connection to grid energy or, for more remote sites, batteries.
Fortescue will put the rigs to work at its iron ore mines in the Pilbara region in Western Australia. The driverless machines will eventually be operated fully autonomously, overseen by remote operators at Fortescue’s Integrated Operations Centre in Perth – more than 1,500 km away!
Epiroc says the machines will eliminate around 35 million liters of diesel consumption annually, according to Fortescue.
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“Fortescue is at the forefront of the mining industry in reducing emissions from operations, and in using automation to strengthen safety and productivity, and we are proud to support them on this important effort,” says Epiroc President Helena Hedblom. “Not only is this the largest contract we have ever received, but it is also a major step forward for our electric-powered surface equipment. We look forward to contributing to Fortescue’s continued success now and in the future.”
The Pit Viper 271 E rotary blast hole drill rig that offers the same levels of performance that the diesel Pit Viper line is acclaimed for. Its patented cable feed system that prolongs component longevity and reduces operational costs. The SmartROC D65 BE is a new, battery-electric version of the proven SmartROC D65 drill rig. They’re manufactured in Texas and Sweden, respectively.
Pit Viper 271E cable electric drill rig; via Epiroc AB.
From drilling and rigging to heavy haul solutions, companies like Fortescue and Epiroc are proving that electric equipment is more than up to the task of moving dirt and pulling stuff out of the ground. At the same time, rising demand for nickel, lithium, and phosphates combined with the natural benefits of electrification are driving the adoption of electric mining machines while a persistent operator shortage is boosting demand for autonomous tech in those machines.
Solar and wind accounted for almost 98% of new US electrical generating capacity added in the first two months of 2025, according to new Federal Energy Regulatory Commission (FERC) data reviewed by the SUN DAY Campaign.
In FERC’s latest monthly “Energy Infrastructure Update” report (with data through February 28, 2025), FERC says 39 “units” of solar totaling 1,514 megawatts (MW) were placed into service in February, along with two units of wind (266 MW). They accounted for 95.3% of all new generating capacity added during the month. Natural gas provided the balance (87 MW).
For both January and February, renewables (6,309 MW) were 97.6% of new capacity, while natural gas (147 MW) provided just 2.3%, with another 0.2% coming from oil (11 MW).
Solar dominated February generating capacity
Solar accounted for 81.1% of all new generating capacity placed into service in February. It was 73.3% of new capacity added during the first two months of 2025.
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Recent solar additions include the 237.3 MW Fence Post Solar in Texas, the 150-MW Northern Orchard Solar in California, and the 135-MW Prairie Ronde Solar Project in Louisiana.
Solar has now been the largest source of new generating capacity added each month for 18 consecutive months, since September 2023.
Solar + wind now almost 25% of US utility-scale generating capacity
New wind accounted for most of the balance (14.3%) of capacity additions in February. New wind capacity (1,568 MW) added in January and February combined was 70% more year-over-year (922 MW).
The new wind farms that came online in February were the 140.3-MW Pioneer DJ Wind in Texas and the 126-MW Downeast Wind in Maine.
The installed capacities of solar (10.7%) and wind (11.8%) are now each more than a tenth of the US total. Together, they’re almost one-fourth (22.5%) of the US’s total available installed utility-scale generating capacity.
Further, approximately 30% of US solar capacity is in the form of small-scale (e.g., rooftop) systems that aren’t reflected in FERC’s data. Including that additional solar capacity would bring the share provided by solar and wind to more than 25% of the US total.
With the inclusion of hydropower (7.6%), biomass (1.1%), and geothermal (0.3%), renewables currently claim a 31.5% share of total US utility-scale generating capacity. If small-scale solar capacity is included, renewables are now about one-third of total US generating capacity.
For perspective, a year ago, the mix of utility-scale renewables accounted for 29.3% of total installed generating capacity. Five years ago, it was 22.6%. Ten years ago, it was 16.9% (with more than half provided by hydropower). Thus, over the past decade, renewables’ share of US generating capacity has nearly doubled.
FERC’s 3-year solar + wind addition forecast
FERC reports that net “high probability” additions of solar between March 2025 and February 2028 total 89,497 MW – an amount almost four times the forecast net “high probability” additions for wind (22,890 MW), the second fastest growing resource. FERC also foresees net growth for hydropower (1,323 MW) and geothermal (92 MW) but a decrease of 130 MW in biomass capacity.
The net new “high probability” capacity additions by all renewable energy sources would total 113,672 MW. There is no new nuclear capacity in FERC’s three-year forecast.
Despite Trump’s big fossil fuel push, FERC is projecting that coal and oil will contract by 24,939 MW and 2,104 MW, respectively. Natural gas capacity would expand by 1,583 MW.
Thus, adjusting for the different capacity factors of gas (59.7%), wind (34.3%), and utility-scale solar (23.4%), electricity generated by the projected new solar capacity to be added in the coming three years should be at least 20 times greater than that produced by the new natural gas capacity, while wind’s new electrical output would eclipse gas by eight-fold.
If FERC’s current “high probability” additions materialize, by March 1, 2028, solar will account for nearly one-sixth (16.3%) of US installed utility-scale generating capacity. Wind would provide an additional one-eighth (12.7%) of the total. So each would be greater than coal (12.4%) and substantially more than either nuclear power (7.3%) or hydropower (7.2%).
Assuming current growth rates continue, the installed capacity of utility-scale solar is likely to surpass coal and wind within the next two years, placing solar in second place for installed generating capacity behind natural gas.
Renewables still on track to exceed natural gas in 3 years
The mix of all utility-scale (ie, >1 MW) renewables is now adding about two percentage points annually to its share of generating capacity. At that pace, by March 1, 2028, renewables would account for 37.6% of total available installed utility-scale generating capacity – nipping on the heels of natural gas (40.2%) – with solar and wind constituting more than three-quarters of the installed renewable energy capacity. If those trendlines continue, utility-scale renewable energy capacity should surpass natural gas in 2029 or sooner.
However, if small-scale solar is factored in, within three years, total US solar capacity (small-scale plus utility-scale) could approach 330 GW. In turn, the mix of all renewables would then exceed 40% of total installed capacity while natural gas’s share would drop to about 37%.
Moreover, FERC reports that there may actually be as much as 220,985 MW of net new solar additions in the current three-year pipeline in addition to 67,811 MW of new wind, 9,788 MW of new hydropower, 201 MW of new geothermal, and 39 MW of new biomass. By contrast, net new natural gas capacity potentially in the three-year pipeline totals just 20,856 MW. Consequently, renewables’ share could be even greater by late winter 2028.
“The Trump Administration’s assault on wind and solar has not – at least not yet – had an appreciable impact on the rapid growth of renewable energy generating capacity,” noted the SUN DAY Campaign’s executive director, Ken Bossong. “Moreover, if FERC’s current projections materialize, the mix of renewables will surpass natural gas capacity before the end of President Trump’s time in the White House.”
Electrek’s Take
Just three days ago, I reported on nonpartisan policy group E2’s latest Clean Economy Works monthly update, which revealed that nearly $8 billion in clean energy investments and 16 new large-scale factories and other projects were cancelled, closed, or downsized in Q1 2025. (E2’s cleaner net is wider than FERC’s and includes such things as EVs, battery storage, hydrogen, and grid and infrastructure projects.) Clean energy is growing, but Trump’s executive orders have still managed to slow its growth. Natural gas is still in the lead, but coal and oil still can’t touch renewables.
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