Sustainable Aviation
ePlane: Transforming Urban Air Mobility with eVTOL Aircraft

The Rise of ePlane: Revolutionizing Urban Air Mobility
Urban Air Mobility (UAM) is no longer a distant dream but a rapidly evolving reality, and ePlane, an electric aircraft startup, is at the forefront of this transformation. Founded in 2019 by Professor Satya Chakravarthy and incubated at IIT Madras, ePlane is pioneering the development of electric vertical take-off and landing (eVTOL) aircraft. These vehicles promise to alleviate urban traffic congestion by offering sustainable, efficient, and affordable aerial transportation solutions. With a recent $1 billion deal to supply air ambulances, ePlane is making significant strides in the UAM sector.
The significance of ePlane’s innovation lies in its potential to redefine urban transportation. As cities around the world grapple with increasing traffic congestion and pollution, eVTOL technology offers a viable alternative. ePlane’s focus on safety, sustainability, and affordability positions it as a key player in this emerging market. The company’s recent achievements, including securing regulatory approvals and significant funding, underscore its commitment to bringing aerial mobility closer to reality.
ePlane’s Vision and Technological Innovation
ePlane’s flagship product, the e200X, is a testament to its innovative approach. This eVTOL aircraft boasts a range of 110 km, a top speed of 200 km/h, and a payload capacity of two passengers or 200 kg. Unlike traditional aircraft, the e200X utilizes a lift-plus-cruise mechanism, which simplifies testing and certification processes. This design allows the aircraft to take off and land vertically, making it ideal for urban environments where space is limited.
The company’s focus on air ambulances as its first go-to-market strategy is both strategic and impactful. By targeting this sector, ePlane aims to fine-tune its infrastructure, customer experience, and airspace management before expanding to urban air taxis. This approach not only addresses a critical need in healthcare but also provides a practical pathway for the broader adoption of eVTOL technology.
ePlane’s commitment to innovation is further evidenced by its recent $14 million Series B funding round, co-led by Speciale Invest and Antares Ventures. This investment will support regulatory certifications, manned aircraft development, and the scaling of drone technology. With total funding now exceeding ₹160.98 crore (approximately $20 million USD), ePlane is well-positioned to achieve its ambitious goals.
“Safety, sustainability, and innovation remain central to our strategy, and this investment will help us bring aerial mobility closer to reality.” – Satya Chakravarthy, Founder and CEO of ePlane
Regulatory Milestones and Market Potential
A critical milestone in ePlane’s journey was the acceptance of its Type Certification Application by the Directorate General of Civil Aviation (DGCA). This approval marks a significant step toward the commercialization of the e200X aircraft. The certification process is rigorous, ensuring that eVTOLs meet the highest safety and performance standards. ePlane’s progress in this area reflects its commitment to regulatory compliance and operational excellence.
The global UAM sector is gaining momentum, with several companies developing eVTOL technology to address urban traffic challenges. ePlane’s focus on the Indian market is particularly noteworthy. India’s high traffic volumes and evolving infrastructure make it an ideal testing ground for eVTOLs. By targeting air ambulances first, ePlane is addressing a pressing need while laying the groundwork for broader market adoption.
Looking ahead, ePlane plans to commence commercial operations by the latter half of 2026, with an initial production of 100 units per year. This timeline aligns with the company’s strategy to gradually scale its operations and refine its technology. As the UAM sector continues to evolve, ePlane’s innovative approach and strategic focus position it as a leader in this transformative industry.
Conclusion
ePlane’s journey from a startup incubated at IIT Madras to a key player in the UAM sector is a testament to its vision and innovation. By developing the e200X and securing critical regulatory approvals, the company is paving the way for the future of urban air mobility. Its focus on air ambulances as a starting point demonstrates a strategic approach to market entry, addressing immediate needs while building the foundation for broader applications.
As cities worldwide seek sustainable solutions to traffic congestion and pollution, eVTOL technology offers a promising alternative. ePlane’s commitment to safety, sustainability, and affordability positions it as a leader in this emerging field. With significant funding and a clear roadmap, the company is well on its way to transforming urban transportation and making aerial mobility a reality.
FAQ
What is ePlane’s primary product?
ePlane’s primary product is the e200X, an eVTOL aircraft designed for urban air mobility, with applications in air ambulances and urban air taxis.
When will ePlane start commercial operations?
ePlane plans to begin commercial operations by the latter half of 2026, starting with air ambulances.
What is the range of the e200X aircraft?
The e200X has a range of 110 km and a top speed of 200 km/h, with a payload capacity of two passengers or 200 kg.
Sources: The Kredible, Inc42, APAC News Network, iFairworthy, ePlane
Sustainable Aviation
Montana Renewables Cuts SAF Expansion Cost to $137M
Calumet’s Montana Renewables targets 200M gallons of SAF annually by 2028 for $137M, down from a $1.2B plan.

Calumet, Inc. and its subsidiary Montana Renewables, LLC announced a revised expansion plan on September 1, 2026, that will scale SAF production to 200 million gallons annually by 2028 for a fraction of the originally projected cost.
By repurposing existing refining equipment at the Great Falls, Montana facility, the company expects to complete the MaxSAF project with only $137 million in remaining capital. This abandons a previous $1.2 billion megaproject design. The pivot eliminates the need for third-party equity and minimizes debt while accelerating domestic sustainable aviation fuel (SAF) capacity.
Capital efficiency and Department of Energy funding
The original Phase 2 plan contemplated $1.2 billion in capital expenditure. The revised strategy captures 70 percent of the expected benefit for 15 percent of the cost. The financial restructuring involves an amended Loan Guarantee Agreement (LGA) with the U.S. Department of Energy (DOE).
The original LGA was executed in January 2025, with a $782 million first tranche funded in February 2025 to recapitalize Montana Renewables, LLC (MRL). Under the amended agreement, the company will make a final draw of $34 million. This is significantly lower than the original $658 million Phase 2 DOE funding limit.
Calumet CEO Todd Borgmann stated the Office of Energy Dominance Financing (EDF) supported the adjustment to the loan agreement.
“Our amended agreement with the DOE facilitates innovative technology and domestic energy security at a fraction of the original cost. EDF’s willingness to right-size the LGA reflects its ongoing support for Montana’s largest agricultural investment. We look forward to our continued collaboration with the DOE on the success of this project,” Borgmann said.
Borgmann credited the company’s engineering and operational teams for developing a project that maximizes output while drastically reducing the required capital investment.
Production timeline and capacity milestones
The Great Falls facility currently operates at a 60 million gallon SAF run-rate following a spring 2026 constraint removal. A scheduled turnaround in the fourth quarter of 2026 will tie in repurposed equipment from the adjacent Calumet Montana Refining facility.
Following the fourth-quarter integration, the company expects to exceed an 80 million gallon SAF run-rate by December 31, 2026. Production is projected to surpass 120 million gallons by spring 2027 and reach the 200 million gallon target by December 31, 2028.
Total renewable product sales, including renewable diesel and renewable gasoline, are targeted at 17,000 barrels per day by year-end 2028. This represents a 40 percent expansion. The expanded facility will consume 2 billion pounds of ranch- and farm-originated feedstocks annually.
AirPro News analysis
The revised MaxSAF expansion highlights a strategic shift in how producers approach SAF scaling. As noted by Aviation Week on September 2, 2026, the plan allows the largest US producer of SAF to more than triple its production capacity for barely 10 percent of the originally planned investment.
During Calumet’s second-quarter 2026 earnings call on August 7, 2026, the company confirmed that Montana Renewables completed performance testing of the newly installed MaxSAF catalyst, which met or exceeded expectations. By leveraging existing fossil-fuel infrastructure rather than pursuing multi-billion-dollar greenfield projects, producers can bring SAF to market faster and with significantly lower financial risk. This capital-efficient model may set a precedent for other refiners looking to enter or expand in the renewable fuels sector without diluting equity or taking on unsustainable debt.
Sources: Calumet, Inc.
Photo Credit: Montana Renewables
Sustainable Aviation
United Airlines Extends Neste SAF Supply Deal Through 2027
United Airlines and Neste extend SAF supply at Chicago O’Hare and Amsterdam Schiphol through mid-2027 after doubling fuel volume in 2025.

United Airlines and Neste Corporation have extended their supply agreement for sustainable aviation fuel at Chicago O’Hare International Airport (ORD) and Amsterdam Airport Schiphol (AMS), securing deliveries through mid-2027. The extension supports the carrier’s expanding use of alternative fuels, which doubled in volume during the 2025 calendar year.
In a press release issued on September 16, 2026, Neste confirmed that deliveries under the extended contract began at Amsterdam in June 2026 and at Chicago O’Hare in July 2026. While the Amsterdam supply concluded in August 2026, the Chicago deliveries are scheduled to continue until June 2027. The agreement reinforces a long-standing partnership between the two companies, as United Airlines was the first carrier globally to utilize blended sustainable aviation fuel (SAF) in regular commercial operations.
Expanding SAF utilization across the United network
United Airlines has steadily increased its integration of SAF, consuming 83,000 metric tons (approximately 27.7 million gallons) in 2025. This represents a 104 percent year-over-year increase in the airline’s SAF usage. The carrier now utilizes the fuel at six of its seven domestic hubs, following recent supply expansions to Newark Liberty International Airport (EWR), Washington D.C., and Houston.
Under current aviation regulations, SAF is certified for commercial use at a maximum blending ratio of 50 percent with conventional jet fuel. United Airlines previously became the first operator to purchase and use blended SAF at Chicago O’Hare in August 2024.
Lauren Riley, Chief Sustainability Officer at United Airlines, highlighted the operational history behind the extended agreement.
“United was the first airline in the world to fly on blended SAF in regular operations, and we’ve spent the years since proving it can work at scale in day-to-day flying, including being the first airline to purchase and use blended SAF at Chicago O’Hare. Continuing our work with Neste across two continents reflects a shared conviction that SAF is available and capable of being scalable.”
Neste’s production capacity and feedstock strategy
Neste currently maintains a global SAF production capability of 1.5 million metric tons (approximately 515 million gallons) per year. The company projects this capacity will increase to 2.2 million metric tons (around 750 million gallons) in 2027, following the completion of an expansion project at its Rotterdam refinery.
To support this scaling production, the manufacturer is actively securing agricultural supply chains. On September 10, 2026, Neste and Bayer finalized a commercial agreement to jointly scale the production of newgold winter canola in the Southern Great Plains of the United States. This partnership is designed to strengthen the supply of lower-carbon-intensity feedstocks required to meet the growing global demand for biofuels.
Carl Nyberg, Senior Vice President of the Commercial, Renewable Products business at Neste, stated that the continued supply at major hubs demonstrates the viability of the fuel alternative.
“This extended agreement with United Airlines covering two international airports across two major aviation regions is a testament to our joint belief in the critical role of SAF in reducing aviation related GHG emissions. By continuing to make SAF available at two of United’s key hubs, we are proving that SAF is a readily available, scalable solution, and we look forward to continuing our longstanding collaboration.”
AirPro News analysis
We note that securing consistent SAF supply at major hubs like Chicago O’Hare remains a critical bottleneck for airlines attempting to meet greenhouse gas (GHG) reduction targets. United’s ability to double its SAF uptake in a single year demonstrates aggressive procurement, but the total volume of 27.7 million gallons remains a fraction of the airline’s overall annual fuel consumption. Neste’s parallel moves to secure agricultural feedstock through partnerships like the recent Bayer agreement indicate that producers are actively working to mitigate supply chain constraints ahead of the anticipated 2027 refinery capacity increases.
Sources: Neste Corporation
Photo Credit: Neste Corporation
Sustainable Aviation
Cathay Pacific and Google Expand AI Contrail Avoidance Program
Cathay Pacific and Google scale AI contrail avoidance to long-haul routes after trials cut warming impact by 40 percent.

Cathay Pacific Airways (CX) and Google announced an expanded partnerships on September 7, 2026, to scale artificial intelligence-driven contrail avoidance technology across the airline’s ultra-long-haul network. Following initial trials that reduced the climate impact of condensation trails by approximately 40 percent, the initiative will now cover transpacific, polar, and Asia-Pacific routes.
In a press release issued by the Hong Kong-based carrier, Cathay Pacific detailed how the system integrates Google’s AI predictions, satellite imagery, and weather data directly into the pilots’ Electronic Flight Folder. Developed in collaboration with the non-governmental organization Contrails.org, the technology allows flight crews to make minor altitude adjustments to avoid atmospheric zones prone to contrail formation. Contrails are responsible for roughly 35 percent of the aviation industry’s total global warming impact.
Scaling AI for climate mitigation
The decision to expand the program follows a testing phase initiated in late 2025. During that period, Cathay Pacific conducted over 80 flights utilizing the predictive technology. The results demonstrated a 40 percent reduction in the warming effect of contrails on those specific routes, proving the operational viability of the software on long-duration flights.
Lawrence Fong, Director of Digital and IT at Cathay Pacific, stated that the collaboration highlights how data and innovation can address real-world challenges at scale. Fong noted that the aviation sector requires immediate climate solutions and that artificial intelligence is accelerating that progress.
Operational integration and cost efficiency
Implementing contrail avoidance requires minimal changes to existing flight operations. Pilots receive contrail forecasts alongside standard operational data, enabling them to request altitude changes from air traffic control when approaching high-risk zones. While flights that alter their trajectory to avoid contrails consume approximately 2 percent more fuel, the fleet-wide fuel burn increase is estimated at just 0.3 percent because only a small fraction of flights require adjustment.
This efficiency makes contrail mitigation highly cost-effective. Google estimates the cost of implementation at $5 to $25 per ton of carbon dioxide equivalent (CO2e). Kemal Armada, Product Manager for Climate and AI at Google, described the technology as an extremely low-cost and effective climate lever that is immediately available for existing aircraft fleets regardless of the fuel type currently in use.
Broader industry adoption
The Cathay Pacific expansion is part of a broader push by Google to deploy its contrail prediction models across the global aviation sector. Prior to the Cathay Pacific trials, Google partnered with American Airlines (AA) for a 70-flight test program that achieved a 54 percent reduction in contrail formation.
On August 18, 2026, Google also launched “Operation Blue Skies,” a 30-month trial backed by the United Kingdom government. That initiative aims to test contrail avoidance at the scale of an entire oceanic airspace, focusing on the Shanwick Oceanic Control Area in the North Atlantic corridor.
AirPro News analysis
We view the expansion of the Cathay Pacific and Google partnership as a critical validation of software-based climate interventions in commercial aviation. While the industry heavily promotes Sustainable Aviation Fuel (SAF) and next-generation propulsion systems, those technologies face severe supply constraints and decades-long development timelines. Contrail avoidance utilizes existing aircraft and current air traffic management frameworks. If the 0.3 percent fleet-wide fuel penalty holds true at scale, airlines can achieve a disproportionately large reduction in their overall climate impact for a fraction of the cost of SAF procurement. The primary hurdle moving forward will likely be air traffic control capacity, as widespread altitude adjustments in congested airspace could introduce operational complexities that isolated trials have not yet fully tested.
Sources: Cathay Pacific
Photo Credit: Cathay Pacific
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