Global Sustainable Aviation Fuel Market Size By Fuel Type (Biofuel, Hydrogen Fuel), By Technology ( Fischer Tropsch Synthetic Paraffinic Kerosene (FT-SPK), Alcohol To Jet SPK (ATJ-SPK)), By Biofuel Blending Capacity (Below 30%, 30% to 50%), By Geographic Scope And Forecast

Published Date: August - 2024 | Publisher: MIR | No of Pages: 320 | Industry: latest updates trending Report | Format: Report available in PDF / Excel Format

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Global Sustainable Aviation Fuel Market Size By Fuel Type (Biofuel, Hydrogen Fuel), By Technology ( Fischer Tropsch Synthetic Paraffinic Kerosene (FT-SPK), Alcohol To Jet SPK (ATJ-SPK)), By Biofuel Blending Capacity (Below 30%, 30% to 50%), By Geographic Scope And Forecast

Sustainable Aviation Fuel Market Size And Forecast

Sustainable Aviation Fuel Market size was valued at USD 352 Million in 2022 and is projected to reach USD 15740 Million by 2030, growing at a CAGR of 60.8% from 2024 to 2030.

The sustainable aviation industry has seen significant developments and expansion over the last few years. The sector has concentrated on lowering emissions and becoming more sustainable in response to growing worries about climate change. The adoption of sustainable aviation fuels (SAFs), technological advancements like electric and hybrid-electric aircraft, carbon offsetting and emissions reduction programs, regulatory measures and incentives, industry collaboration, and increased consumer awareness and demand for greener options are a few of the major highlights. Even if progress has been made, more effort must still be done to decarbonize aviation and ensure a truly sustainable future.

Global Sustainable Aviation Fuel Market Definition

The development, use, and distribution of aviation alternative fuels with a lower carbon footprint than standard jet fuels are collectively referred to as the Global Sustainable Aviation Fuel Market. SAFs are produced using carbon capture technology, waste oils, or renewable feedstocks like biomass. These fuels are essential to the development of a sustainable aviation sector because they lessen greenhouse gas emissions and lessen the negative effects of air travel on the environment. The market for sustainable aviation fuel has grown significantly during the past few years.

Airlines have started incorporating SAFs into their daily operations, and several have even stated their intention to achieve carbon-neutral expansion. Supply chains and infrastructure for SAF production and distribution have been established through cooperation between fuel providers, airlines, and airports. However, there are still issues including high manufacturing costs, a lack of readily available feedstock, and the requirement for enabling governmental regulations. To address the rising demand from the aviation industry, ongoing research, and development efforts are concentrated on enhancing production effectiveness, broadening the selection of feedstocks, and scaling up SAF production.

The market for sustainable aviation fuel has expanded and developed because of many factors. First, the necessity to cut carbon emissions and the growing concern over climate change have encouraged sustainable alternatives to be invested in by governments, airlines, and other industry stakeholders. Second, the adoption of SAFs has benefited from the strict environmental laws and goals established by international organizations like the International Civil Aviation Organization (ICAO). In addition, the desire for greener air travel and growing public awareness have compelled airlines to adopt sustainable procedures, such as the usage of SAFs.

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Global Sustainable Aviation Fuel Market Overview

The aviation sector has been working to lessen its environmental impact, which has led to a major increase in the market for sustainable aviation fuel. Compared to traditional jet fuels, SAFs, which are made from renewable feedstocks, have a lower carbon footprint. Airlines have adopted SAFs because of increased awareness of climate change and strict emissions limits, which has driven the development of supply chains and infrastructure for manufacturing and delivery. There are still issues, though, such as high production costs and a scarcity of feedstock, which call for continued study and development.

Moreover, several factors influence the adoption of sustainable aviation fuels. First off, there is a sense of urgency in the aviation sector to switch to more sustainable alternatives because of the mounting concerns about climate change and the need to cut greenhouse gas emissions. Second, to meet environmental requirements, airlines have been urged to invest in SAFs by strict emissions rules and targets set by international organizations like the International Civil Aviation Organization (ICAO).

Additionally, airlines are under pressure to adopt sustainable practices and provide more environmentally friendly flight alternatives because of rising public awareness of environmental issues and the desire for greener air travel. Despite its growing potential, the market for sustainable aviation fuel is constrained in several ways. The fact that SAFs have higher production costs than conventional jet fuels is a significant obstacle. Another restriction is the scarcity of feedstock because the manufacturing of SAFs depends on renewable resources whose availability may be constrained.

Additionally, the broad adoption of SAFs may be hampered by the absence of favorable government laws and incentives, which could obstruct market expansion. Additionally, the market for sustainable aviation fuel provides multiple opportunities for expansion and innovation. First, improvements in technology and research can result in more effective production, which can lower costs and boost scalability. SAFs may be more readily available if feedstock alternatives are expanded to include fresh, sustainable sources in addition to typical biomass sources. Additionally, alliances and cooperations among governments, oil companies, and airlines can spur investment and develop beneficial regulations that encourage market expansion.

Global Sustainable Aviation Fuel Market Segmentation Analysis

The Global Sustainable Aviation Fuel Market is Segmented on the basis of Fuel Type, Technology, Biofuel Blending Capacity, and Geography.

Sustainable Aviation Fuel Market, By Fuel Type

  • Biofuel
  • Hydrogen Fuel
  • Power to Liquid Fuel
  • Gas-to-Liquid

Based on Fuel Type, The market is segmented into Biofuel, Hydrogen Fuel, Power to Liquid Fuel, and Gas-to-Liquid. Biofuel holds the largest share of the global market for sustainable aviation fuel. As a sustainable substitute for traditional jet fuels, biofuels, which are produced from renewable feedstocks like biomass and used cooking oil, have been widely adopted by the aviation sector. They are the most prevalent fuel type on the market since they have undergone significant study, development, and application in commercial aircraft.

Sustainable Aviation Fuel Market, By Technology

  • Hydroprocessed Fatty Acid Esters and Fatty Acids- Synthetic Paraffinic Kerosene (HEFA-SPK)
  • Fischer Tropsch Synthetic Paraffinic Kerosene (FT-SPK)
  • Synthetic Iso-Paraffin from Fermented Hydroprocessed Sugar (HFS-SIP)
  • Alcohol to Jet SPK (ATJ-SPK)
  • Catalytic Hydrothermolysis Jet (CHJ)

Based on Technology, The market is segmented into Hydroprocessed Fatty Acid Esters and Fatty Acids- Synthetic Paraffinic Kerosene (HEFA-SPK), Fischer Tropsch Synthetic Paraffinic Kerosene (FT-SPK), Synthetic Iso-Paraffin from Fermented Hydroprocessed Sugar (HFS-SIP), Alcohol to Jet SPK (ATJ-SPK), and Catalytic Hydrothermolysis Jet (CHJ). The Fischer Tropsch Synthetic Paraffinic Kerosene (FT-SPK) segment dominates the global market for environmentally friendly aviation fuel. By using the Fischer-Tropsch method, which transforms carbon-based feedstocks like biomass or natural gas into liquid hydrocarbons, FT-SPK is created. Due to its capacity to satisfy the exacting standards and performance demands of jet engines, FT-SPK has grown in favor of the aviation sector. Because it is synthetic, the fuel composition can be better managed, leading to lower emissions and greater energy efficiency.

Sustainable Aviation Fuel Market, By Biofuel Blending Capacity

  • Below 30%
  • 30% to 50%
  • Above 50%

Based on Biofuel Blending Capacity, The market is segmented into Below 30%, 30% to 50%, and Above 50%. The segment with a biofuel blending capability of 30% to 50% holds the majority of the worldwide Sustainable Aviation Fuel Market. This suggests that between 30% and 50% of the conventional jet fuel used in the industry is blended with a sizeable component of sustainable aviation fuel. This blending strategy lowers overall carbon emissions and enables the progressive integration of sustainable fuels into the current aviation infrastructure.

Sustainable Aviation Fuel Market, By Geography

  • North America
  • Europe
  • Asia Pacific
  • Middle East and Africa
  • Latin America

On the basis of Regional Analysis, the Sustainable Aviation Fuel Market is classified into North America, Europe, Asia Pacific, Latin America, Middle East and Africa. The largest share of the market for sustainable aviation fuel was held by North America. With the United States playing a significant role in the market, North America has been at the forefront of programs promoting environmentally friendly aircraft. Due to strict environmental restrictions and airline agreements to cut carbon emissions, the region has witnessed major investments in the manufacture and adoption of sustainable aviation fuels. European nations including the Netherlands, Norway, and the United Kingdom are leading the way in terms of acceptance and manufacturing of sustainable aviation fuels. With nations like Australia, Japan, and Singapore concentrating on sustainable aviation and looking into chances for SAF production, the Asia Pacific area has shown promising growth potential.

Key Players

The “Global Sustainable Aviation Fuel Market” study report will provide valuable insight with an emphasis on the market including some of the major players such as Northwest Advanced Biofuels, LLC., SKYNRG, Avfuel Corporation, Ballard Power Systems, Sundrop Fuels Inc., OMV Aktiengesellschaft, Fulcrum BioEnergy, Inc., TotalEnergies SE, Red Rock Biofuels, SG Preston Company.

Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players.

Key Developments

  • In March 2021, With the recent execution of a Memorandum of Understanding, Northwest Advanced Bio-Fuels, a developer of renewable bio-jet fuel refineries, has made significant progress towards securing a strategic long-term investment into its Sustainable Aviation Fuel project in Washington State from Stonepeak Infrastructure Partners, a private investment company specializing in North American infrastructure.
  • In July 2021, The relationship between Boeing, SkyNRG, and SkyNRG Americas is intended to increase the accessibility and use of sustainable aviation fuels on a global scale. Alaska Airlines has been named a partner in SkyNRG Americas’ SAF production project, which Boeing will also invest in.

Report Scope

REPORT ATTRIBUTESDETAILS
STUDY PERIOD

2019-2030

BASE YEAR

2022

FORECAST PERIOD

2024-2030

HISTORICAL PERIOD

2019-2021

UNIT

Value (USD Million)

KEY COMPANIES PROFILED

Northwest Advanced Biofuels, LLC., SKYNRG, Avfuel Corporation, Ballard Power Systems, Sundrop Fuels Inc., OMV Aktiengesellschaft, Fulcrum BioEnergy, Inc., TotalEnergies SE, Red Rock Biofuels, SG Preston Company.

SEGMENTS COVERED

By Fuel Type, By Technology, By Biofuel Blending Capacity, and By Geography.

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