市场调查报告书
商品编码
1438185
2030 年液体生质燃料市场预测:按产品、原料、製程、应用和地区进行的全球分析Liquid Biofuels Market Forecasts to 2030 - Global Analysis By Product (Bioethanol, Biodiesel and Other Products), Feedstock, Process, Application and By Geography |
根据Stratistics MRC预测,2023年全球液体生质燃料市场规模将达到1,518亿美元,预计2030年将达到3,073亿美元,预测期内复合年增长率为10.6%。
液体生质燃料是透过发酵和酯交换等过程从植物和藻类等有机物中获得的可再生燃料。这些生质燃料,包括生质柴油和乙醇,可用作交通运输中传统石化燃料的替代品。与石化燃料不同,液体生质燃料在燃烧时排放二氧化碳,但排放的碳是自然碳循环的一部分,使它们有可能成为更永续的替代燃料。
运输燃料需求增加
随着人们对环境问题的认识不断增强,人们开始转向使用可再生资源的生质燃料。推动清洁能源解决方案的监管努力和消费者对环保替代燃料的偏好推动了需求的成长。随着世界努力减少碳排放,液体生质燃料正在成为可行且易于使用的选择,以满足对运输燃料日益增长的需求。由于对永续能源来源的日益关注,市场对运输燃料的需求正在迅速增加。
基础设施挑战
生产设施不足阻碍了扩充性,有限的分销网络阻碍了普及。为传统燃料设计的现有基础设施可能与生质燃料不相容,并且需要大量投资进行维修。由于生质燃料通常具有与传统燃料不同的特性,因此储存和运输物流带来了额外的障碍。该市场面临基础设施挑战,包括有限的分销网络、不足的仓储设施以及对专业运输基础设施的需求。
政府政策和奖励
政府政策和奖励在市场成长中发挥关键作用。许多国家实施了支持措施,促进生质燃料的生产和使用,以减少温室气体排放,并加强能源安全。常见的激励措施包括税额扣抵、补贴以及生质燃料和传统燃料的强制混合。此外,研究经费和法律规范将有助于市场扩张并促进向永续和可再生液体生质燃料的过渡。
原料可用性和成本
生物质和农业残留物等原料影响生质燃料生产的经济可行性。作物产量、土地利用和农产品竞争需求等因素在决定原材料的供应方面发挥着重要作用。此外,原料价格的波动会影响液体生质燃料的总成本并影响市场竞争力。原材料供应和成本是市场成长的主要限制因素。
COVID-19大流行对液体生质燃料市场产生了重大影响,导致供应链中断、运输燃料需求减少以及生质燃料计划投资延迟。封锁和旅行限制减少了燃料消费量,影响了乙醇和生物柴油的生产。但这场危机也凸显了永续能源来源的重要性,在人们对环境永续性担忧的情况下,激发了生质燃料在疫情后復苏中的潜力。
生质乙醇领域预计将在预测期内成为最大的领域
生质乙醇领域预计将在预测期内成为最大的领域。生质乙醇源自玉米、甘蔗和纤维素生物质等可再生资源,可减少温室气体排放并促进环境永续性。生质乙醇被广泛用作运输燃料,其受欢迎程度归因于其与现有基础设施的兼容性。随着世界寻求更清洁的能源解决方案,生质乙醇在液体生质燃料市场的份额不断增长,有助于创造更绿色、更具弹性的能源格局。
预计酯交换业在预测期内复合年增长率最高
预计酯交换产业在预测期内的复合年增长率最高。这种化学过程将通常源自植物油或动物脂肪的三酸甘油酯转化为酯和甘油。透过提高液体生质燃料的生产效率、促进可再生资源的使用以及减少对传统石化燃料的依赖,我们为更永续和环保的能源环境做出贡献。
由于其丰富的原料和用于生质燃料生产的耕地,预计北美在预测期内将占据最大的市场占有率。政府促进生质燃料使用的措施和提高人们对环境问题的认识是推动市场扩张的主要因素。该地区减少碳排放的努力进一步促进了液体生质燃料的采用,并将其定位为全球向可再生能源解决方案过渡的关键参与者。
由于人们对环境问题的日益关注和对永续能源来源的关注,预计亚太地区在预测期内将保持最高的复合年增长率。各国政府正在实施支持性政策和奖励,以鼓励生质燃料的生产和消费。技术的进步和产业内的协作也有助于市场的扩张。随着对传统燃料的清洁替代品的需求不断增加,液体生质燃料正在成为该地区能源格局的重要组成部分,具有减少碳排放和促进更永续的未来的潜力。他被定位为强有力的参与者。
According to Stratistics MRC, the Global Liquid Biofuels Market is accounted for $151.8 billion in 2023 and is expected to reach $307.3 billion by 2030 growing at a CAGR of 10.6% during the forecast period. Liquid biofuels are renewable fuels derived from organic materials, such as plants and algae, undergoing processes like fermentation or transesterification. These biofuels, including biodiesel and ethanol, can be used as substitutes for conventional fossil fuels in transportation. Unlike fossil fuels, liquid biofuels release carbon dioxide during combustion, but the carbon emitted is part of the natural carbon cycle, making them a potentially more sustainable alternative.
According to a study completed by Purdue University, on an average the yearly price of ethanol dropped down to to$0.82/ gallon in March 2020 from $1.32/ gallon in December 2019 owing to rapid drop in demand for transport services.
Increasing demand for transportation fuels
With heightened awareness of environmental concerns, there's a significant shift towards biofuels derived from renewable resources. This increased demand is driven by both regulatory initiatives promoting cleaner energy solutions and consumer preferences for eco-friendly alternatives. As the world strives to reduce carbon emissions, liquid biofuels are gaining prominence as a viable and accessible option to meet the rising need for transportation fuels. The market is experiencing a surge in demand for transportation fuels due to the growing emphasis on sustainable energy sources.
Infrastructure challenges
Insufficient production facilities hinder scalability, while limited distribution networks impede widespread adoption. The existing infrastructure designed for conventional fuels may not be compatible with biofuels, requiring substantial investments for retrofitting. Storage and transportation logistics present further hurdles, as biofuels often have different properties than traditional fuels. The market faces infrastructure challenges such as limited distribution networks, inadequate storage facilities, and the need for specialized transportation infrastructure.
Government policies and incentives
Government policies and incentives play a crucial role in the growth of the market. Many countries are implementing supportive measures to promote the production and use of biofuels, aiming to reduce greenhouse gas emissions and enhance energy security. Common incentives include tax credits, subsidies, and mandates for blending biofuels with conventional fuels. Additionally, research funding and regulatory frameworks contribute to market expansion, fostering a transition towards sustainable and renewable liquid biofuels.
Feedstock availability and cost
Feedstocks, such as biomass and agricultural residues, influence the economic feasibility of biofuel production. Factors like crop yields, land use, and competing demands for agricultural products play a crucial role in determining feedstock availability. Additionally, fluctuations in feedstock prices can impact the overall cost of liquid biofuels, affecting market competitiveness. The availability and cost of feedstocks are the factors significantly hampering the growth of the market.
The COVID-19 pandemic has significantly impacted the liquid biofuels market, leading to disruptions in supply chains, reduced demand for transportation fuels, and delayed investments in biofuel projects. Lockdowns and travel restrictions resulted in a decline in fuel consumption, affecting ethanol and biodiesel production. However, the crisis has also underscored the importance of sustainable energy sources, fostering potential for biofuels in a post-pandemic recovery as the focus on environmental sustainability grows.
The bioethanol segment is expected to be the largest during the forecast period
The bioethanol segment is expected to be the largest during the forecast period. Derived from renewable resources such as corn, sugarcane, or cellulosic biomass, bioethanol reduces greenhouse gas emissions and promotes environmental sustainability. Widely used as a transportation fuel, its popularity stems from its compatibility with existing infrastructure. As the world seeks cleaner energy solutions, its prominence in the liquid biofuels market continues to grow, contributing to a more eco-friendly and resilient energy landscape.
The transesterification segment is expected to have the highest CAGR during the forecast period
The transesterification segment is expected to have the highest CAGR during the forecast period. This chemical process involves converting triglycerides, typically derived from plant oils or animal fats, into esters and glycerol. It enhances the efficiency of liquid biofuel production, promoting the use of renewable resources and reducing dependence on conventional fossil fuels, contributing to a more sustainable and environmentally friendly energy landscape.
North America is projected to hold the largest market share during the forecast period owing to the abundance of feedstock and arable area for biofuel production. Government initiatives promoting biofuel usage, along with rising environmental concerns, are key factors propelling market expansion. The region's commitment to reducing carbon emissions further boosts the adoption of liquid biofuels, positioning as a significant player in the global transition towards renewable energy solutions.
Asia Pacific is projected to hold the highest CAGR over the forecast period due to increasing environmental concerns and a focus on sustainable energy sources. Governments are implementing supportive policies and incentives, fostering the production and consumption of biofuels. Technological advancements and collaborations within the industry further contribute to market expansion. The rising demand for cleaner alternatives to traditional fuels positions liquid biofuels as a crucial player in the region's energy landscape, with the potential to reduce carbon emissions and promote a more sustainable future.
Key players in the market
Some of the key players in Liquid Biofuels market include Petrobras, Abengoa Bioenergia, Bunge North America Inc., Archer Daniels Midland Company, Gevo, Green Plains, Wilmar International, Algenol, Pacific Ethanol Inc., Valero Energy Corp., Cargill, Neste Corporation, Renewable Energy Group Inc., BlueFire Renewables and Aceites Manuelita S.A.
In May 2022, Fulcrum BioEnergy Inc. announced that the Sierra Biofuels plant, the world's first facility to convert landfill waste into renewable transportation fuels, has successfully completed its commissioning and operations phase.
In January 2022, Renewable Energy Group, Inc. (REG) announced that it had acquired the remaining 50% ownership stake in Petrotec AG, a leading supplier of renewable diesel to the Swiss market. The acquisition was aimed at expanding REG's presence in the European market and increasing its production capacity for renewable fuels.