Published on October 29, 2025

Honeywell created new, renewable fuels technology, turning cultivation and forestry discarded into lower-carbon fuels. It responds to nan request for cleaner fuels successful nan maritime industry, 1 of nan hardest industries to decarbonize, and for fuel-grade gasoline and Sustainable Aviation Fuel (SAF).
Honeywell Biocrude Upgrading Technology tackles this situation by transforming abundant and inexpensive biomass, for illustration cultivation discarded (e.g., wood chips, harvest residues), into renewable fuel. This exertion provides nan shipping and aviation industries pinch lower-carbon, cost-effective fuels. It is simply a cleanable clip to decarbonize maritime shipping since this manufacture is nether awesome unit to trim its wide c emissions.
Need for renewable substance successful maritime transport
Heavy substance lipid (HFO) is simply a maritime substance and a byproduct of gasoline, diesel, and kerosene refining. It has besides been a phenomenal greenhouse state emitter, astir 3% of nan world total. This has pushed shipping companies and regulators to substance alternatives to HFO because of biology and economical concerns.
Honeywell’s Biocrude Upgrading caller exertion is simply a affirmative caller improvement for nan company. This caller exertion generates renewable marine fuel, which tin beryllium utilized alternatively of accepted dense substance lipid without making costly upgrades to nan engine. Ship operators will admit nan caller substance because it has a higher power density than galore existent biofuel alternatives, allowing nan substance to widen nan scope of vessels.
Honeywell’s President of Energy and Sustainability Solutions, Ken West, stated that caller exertion provides vessel operators pinch substance that is fresh to beryllium utilized and substance that is inexpensive. This is particularly important to nan maritime manufacture because it is trying to fulfill customer demands and meet caller regulations that require less emissions.
Carbon Emissions Biomass Waste
Honeywell’s Biocrude Upgrading exertion tin person works and cultivation discarded into biocrude astatine nan tract of nan feedstock’s collection. This makes for debased proscription costs. After nan biocrude is made, it tin beryllium stored astatine larger locations and later refined into high-quality marine fuel, gasoline, aliases sustainable aviation substance (SAF).
This innovative attack solves nan problem of turning biocrudes into fuels that tin rival nan capacity of accepted fuels. Using biomass discarded not only reduces emissions but besides generates a self-sustaining substance rhythm that strengthens nan information economy. The expertise to move discarded into power solutions is of peculiar liking to industries that are trying to trim their biology effect while maintaining performance.
Honeywell’s exertion is offered successful nan shape of prefabricated modular plants, which simplifies tract building and cuts down wide risk. As a consequence of modularity, Honeywell tin supply quicker and much effective solutions for companies that want to move to renewable fuels pinch little operational disruption.
Biocrude Upgrading exertion is simply a timely invention for nan maritime industry. As it stands, nan manufacture is trying to navigate regulations that restrict emissions and is truthful seeking improvements successful nan sustainability of its substance alternatives. Unlike nan competition, Honeywell’s exertion enables ships to usage fresh renewable fuels that are different costly to procure aliases implement. Most importantly, location is small to nary alteration needed to a ship’s substance infrastructure, making nan full process seamless. Honeywell is installing caller exertion to switch dense substance oil, which is simply a lower-cost oil, supporting nan simplification of nan shipping industry’s c emissions. Honeywell is not constricted to producing renewable fuels for nan shipping industry; different sectors, specified arsenic aviation and crushed transportation, tin besides usage these renewable fuels, improving nan wide sustainability of proscription fuels.
An industry-leading Longevity successful Renewable Fuel Portfolio
Honeywell’s caller Biocrude Upgrading exertion is designed to further amended reliability successful nan quickly expanding conception of renewable fuels. Honeywell’s renewable fuels portfolio technologies besides amended nan ratio and sustainability of fossil substance power accumulation and dwell of Ecofining™ for renewable diesel and pitchy fuel, Ethanol to Jet technology, Fischer-Tropsch (FT) Unicracking™ technology, and UOP eFining™. UOP eFining™ is simply a process that will thief prevention nan satellite arsenic it converts greenish hydrogen and c dioxide into e-fuels.
The Biocrude Upgrading exertion is designed to thief Honeywell’s fossil substance customers amended their c footprint and meet substance emissions standards. Honeywell uses renewable feedstocks, supporting nan sustainability of biobased fuels.
The deployment of Honeywell’s Biocrude Upgrading exertion makes nan request for renewable fuels much achievable. Honeywell has and will proceed to let much fuel-use-intensive and decarbonizing barren shipping and aviation industries to trim their fossil substance usage and decarbonize slowly.
The upgrading of biocrude technologies will let discarded fluids to beryllium converted to renewable fuels and trim feared greenhouse gases. This will thief industries for illustration shipping and aviation summation their ratio and move their fuels to biocrude. This work manufacture will further turn nan biocrude upgrading work technologies industry.
As nan World Moves to Secure Clean Energy, Honeywell Moves to Meet nan Demand
Honeywell has expanded nan biocrude manufacture by upgrading work technologies to see discarded and greenhouse gas. This will let aerial shipping industries, on pinch aviation, to hinge their fuels connected biocrude. This demonstrates Honeywell’s expertise to pivot pinch changing customer demand, grow biocrude, and grow its cleanable substance technologies.
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