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市场调查报告书
商品编码
1364033
绿色甲醇市场 - 2018-2028 年全球产业规模、份额、趋势、机会和预测,按原料、类型、按应用、地区和竞争细分Green Methanol Market- Global Industry Size, Share, Trends, Opportunity, and Forecast, 2018-2028F Segmented By Feedstock, By Type, By Application, By Region and Competition |
由于人们对全球暖化的认识不断增强以及对环保燃料的需求不断增加,预计全球绿色甲醇市场将以12.82%的复合年增长率大幅增长,到2028年将达到约3.8792亿美元。 2021年,全球化石燃料和工业二氧化碳排放量为336.7亿吨。
市场概况 | |
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预测期 | 2024-2028 |
2022 年市场规模 | 1.9021亿美元 |
2028 年市场规模 | 38792万美元 |
2023-2028 年复合年增长率 | 12.82% |
成长最快的细分市场 | 燃油等级 |
最大的市场 | 欧洲 |
近年来,对气候变迁和环境永续性的担忧导致各行业对更清洁、更环保的替代品越来越感兴趣。化学工业是全球温室气体排放的主要贡献者,积极寻求更永续的解决方案,以满足化学品的需求,同时减少对环境的影响。在前景广阔的替代品中,绿色甲醇脱颖而出,成为化工产业转型的关键参与者。
甲醇是一种用于多种工业过程的多功能化学品,传统上是由化石燃料生产的,对温室气体排放有很大影响。此外,绿色甲醇是使用再生能源和永续原料生产的,使其成为碳中和负碳燃料。绿色甲醇的主要来源是生物质、捕获的二氧化碳 (CO2) 和工业过程中产生的废气。绿色甲醇最显着的优点之一是它有可能大幅减少化学工业的碳足迹。传统的甲醇生产会排放大量二氧化碳,导致全球暖化。另一方面,绿色甲醇生产回收大气或工业排放中的二氧化碳,有效闭合碳循环,使其成为环保选择。例如,到 2022 年,Green Umia 专案预计将在其前 10 年营运期间减少 58,000 吨二氧化碳排放,因为每年生产 2,900 吨可再生甲醇,这些甲醇将由 Foresa 本身用于生产併入多种行业。
此外,传统的甲醇生产严重依赖天然气、煤炭和石油等化石燃料,这些资源都是有限的。相较之下,绿色甲醇可以用多种永续原料生产,包括农业废弃物、林业残留物、都市固体废弃物,甚至工业製程中捕获的二氧化碳。它减轻了化石燃料储备的压力,有助于管理废弃物和控制污染。此外,绿色甲醇也用作生产各种化学产品的原料。这些化学产品用于不同的垂直领域,如运输、建筑、製药、化学肥料等。产生甲醛用于油漆和涂料工业,甲基叔丁基醚有助于生产生质柴油,这有助于增加生物柴油作为替代燃料的使用,二甲醚用作化学溶剂。此类化学品的生产有助于减少碳足迹的排放,并创造绿色环境。
此外,绿色甲醇生产在技术和製程效率方面也取得了显着进展。新的催化製程和创新的反应器设计提高了产量并降低了能耗,使其成为化学工业更具经济可行性和吸引力的选择。随着这些技术的不断发展,绿色甲醇的生产成本预计将下降,进一步加速其采用。因此,人们越来越认识到利用绿色甲醇作为永续原料来取代化学工业中的传统原料,这见证了未来几年全球绿色甲醇市场的大幅成长。
为了追求永续的未来,再生能源已成为全球能源格局的重要组成部分。然而,充分利用太阳能和风能等再生能源的潜力目前面临挑战,包括间歇性发电和对高效能能源储存解决方案的需求。绿色甲醇已成为应对这些挑战的一种有前途的替代品,彻底改变了再生能源储存并有助于能源系统的脱碳。
太阳能和风能等再生能源提供了清洁、丰富的能源供应。然而,它们的可变性在能源生产与需求的匹配方面提出了挑战。太阳能在白天可用,风力涡轮机根据风速发电,而风速是不可预测的。因此,当需求低迷时,往往会产生过剩的能源,而在需求高峰期间,可能会出现能源短缺。与此相反,绿色甲醇由于其作为多功能能源载体的能力而成为再生能源储存的最佳解决方案。透过称为「电力转甲醇」(PtM) 的过程,可以利用剩余的再生能源透过转化二氧化碳和氢气来生产绿色甲醇。产生的绿色甲醇可以在需要时储存和利用,有效地以化学形式储存再生能源。例如,据印度电力部称,NTPC Green Energy Ltd. (NGEL) 和HPCL Mittal Energy Ltd. (HMEL) 于2023 年签署了一份谅解备忘录,透过采购250 MW RE-RTC(Round-RTC)进行再生能源合作。The-Clock) 满足HMEL的要求并探索绿色氢业务及其衍生品(绿色氨和绿色甲醇)的机会。
而且,绿色甲醇与现有能源基础设施具有高度相容性。它可以与传统化石燃料混合并用于内燃机或透过燃料电池转化为电力。这种相容性简化了向再生能源的过渡,同时利用现有的能源分配和运输网路。因此,越来越多地使用绿色甲醇作为再生能源储存解决方案导致了预测期内全球绿色甲醇市场的成长。
随着世界面临应对气候变迁的紧迫挑战,严格的环境法规已成为减少碳排放及其对环境影响的关键工具。使用绿色甲醇是解决这个全球问题的创新解决方案之一。由再生资源和碳捕获技术生产的绿色甲醇为最大限度地减少碳排放提供了一条有前途的途径。绿色甲醇有潜力在各个领域取代传统化石燃料。严格的环境法规可以鼓励绿色甲醇作为低碳燃料融入交通、航运和发电领域。透过采用绿色甲醇作为传统燃料的替代品,可以减少这些产业的碳排放,为全球应对气候变迁的努力做出贡献。例如,2023 年,EPA 基于经济高效且可用的控制技术,提出了《清洁空气法》对化石燃料发电厂二氧化碳 (CO2) 的排放限制和指南。
此外,可以利用碳捕获和利用(CCU)技术生产绿色甲醇。这些技术捕获工业过程中排放的二氧化碳,并将其转化为绿色甲醇等有价值的产品。严格的环境法规可以支持 CCU 技术的采用,鼓励各行业投资碳捕获基础设施,并促进将捕获的二氧化碳转化为可持续的甲醇。因此,关于二氧化碳排放的严格环境法规并将其转化为绿色甲醇等永续产品将在预计几年内推动全球绿色甲醇市场的成长。
全球绿色甲醇市场根据原料、类型、应用和地区进行细分。根据原料,市场分为二氧化碳排放、都市固体废弃物、农业废弃物、林业剩余物等。根据类型,市场分为电子甲醇和生物甲醇。依应用,市场分为燃料级、化学原料等。按地区划分,市场分为欧洲、北美、亚太地区和世界其他地区。
OCI NV、Macetex Corporation、Enerkem Inc.、Carbon Recycling International、Sodra Skogsagarna、BASF SE、Topsoe A/S、Liquid Wind AB、Eni SpA、ABEL Energy Pty Ltd.、Thyssenkrupp AG、Nordic Green ApS、三菱瓦斯化学有限公司、Southern Green Gas Limited 和SunGas Renewables Inc. 是全球绿色甲醇市场的主要参与者。
在本报告中,除了产业趋势外,全球绿色甲醇市场也分为以下几类:
公司简介:全球绿色甲醇市场主要公司详细分析。
根据给定的市场资料,TechSci Research 可根据公司的具体需求提供客製化服务。该报告可以使用以下自订选项:
Global green methanol market is anticipated to grow significantly at a CAGR of 12.82% and reach approximately USD 387.92 million in 2028, due to the growing awareness towards global warming and increasing demand of eco-friendly fuel. In 2021, global carbon dioxide emissions from fossil fuels and industry were 33.67 billion metric tonnes.
Green methanol is a sustainable source which can be used for various application like fuel source, feedstock for various chemical industries and as a renewable energy storage solution. The basic advantages of green methanol as an energy storage medium are its scalability and ease of transportation. Unlike conventional batteries, which have limited storage capacities and are bulky, green methanol can be stored in large quantities and transported using existing infrastructure. This scalability makes it an attractive solution for both small-scale and large-scale energy storage applications, enabling the integration of renewable energy into various sectors. Due to these benefits, the demand for green methanol increases, which dominate the growth of global green methanol market in the upcoming years.
Market Overview | |
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Forecast Period | 2024-2028 |
Market Size 2022 | USD190.21 Million |
Market Size 2028 | USD387.92 Million |
CAGR 2023-2028 | 12.82% |
Fastest Growing Segment | Fuel Grade |
Largest Market | Europe |
In recent years, concerns about climate change and environmental sustainability have led to a growing interest in cleaner and greener alternatives across industries. The chemical industry, a major contributor to global greenhouse gas emissions, is actively seeking more sustainable solutions to meet the demand for chemicals while reducing its environmental impact. Among the promising alternatives, green methanol stands out as a key player in transforming the chemical industry.
Methanol is a versatile chemical used in numerous industrial processes, has been traditionally produced from fossil fuels, contributing significantly to greenhouse gas emissions. In addition, green methanol is produced using renewable energy sources and sustainable feedstocks, making it carbon-neutral or carbon-negative fuel. The primary sources of green methanol are biomass, captured carbon dioxide (CO2), and waste gases from industrial processes. One of the most significant advantages of green methanol is its potential to drastically reduce the carbon footprint of the chemical industry. Traditional methanol production emits substantial amounts of CO2, contributing to global warming. Green methanol production, on the other hand, recycles CO2 from the atmosphere or industrial emissions, effectively closing the carbon loop and making it an environmentally friendly option. For instance, in 2022, Green Umia project estimates to achieve a reduction of 58,000 tonnes of CO2 during its first 10 years of operation, as a result of the production of 2,900 tonnes per year of renewable methanol, which will be used by Foresa itself for incorporation into a wide variety of industries.
Moreover, conventional methanol production relies heavily on fossil fuels such as natural gas, coal, and petroleum, which are finite resources. In contrast, green methanol can be produced from a wide range of sustainable feedstocks, including agricultural waste, forestry residues, municipal solid waste, and even carbon dioxide captured from industrial processes. It reduces pressure on fossil fuel reserves and help in managing waste and controlling pollution. Furthermore, green methanol is used as a feedstock for the production of various chemical products. These chemical products are used in different verticals like transportation, construction, pharmaceutical, fertilizers and so on. The generation of formaldehyde used in paint and coating industries, Methyl-tert-butyl-ether is help in the production of biodiesel which helps to increase the use of biodiesel as alternative fuel, dimethyl ether is used as chemical solvent. The production of such chemicals helps in reducing the emission of carbon footprints and results in a green environment.
Additionally, green methanol production has seen significant advancements in technology and process efficiency. New catalytic processes and innovative reactor designs have led to higher yields and reduced energy consumption, making it a more economically viable and attractive option for the chemical industry. As these technologies continue to develop, the production cost of green methanol is expected to decrease, further accelerating its adoption. Thus, increasing awareness regarding the utilization of green methanol as a sustainable feedstock in replacement of conventional feedstock in chemical industries witness substantial growth of Global Green Methanol market in the upcoming years.
In the pursuit of a sustainable future, renewable energy sources have emerged as a crucial component of the global energy landscape. However, harnessing the full potential of renewables like solar and wind energy presently has challenges, including intermittent generation and the need for efficient energy storage solutions. Green methanol has emerged as a promising alternative to address these challenges, revolutionizing renewable energy storage and contributing to the decarbonization of energy systems.
Renewable energy sources like solar and wind offer a clean and abundant energy supply. However, their variability presents a challenge when it comes to matching energy production with demand. Solar power is available during daylight hours, and wind turbines generate electricity based on wind speed, which can be unpredictable. As a result, excess energy is often produced when demand is low, and energy shortages can occur during peak demand periods. In contrast to this, green methanol has emerged as an optimal solution for renewable energy storage due to its ability to act as a versatile energy carrier. Through a process known as Power-to-Methanol (PtM), surplus renewable energy can be utilized to produce green methanol by converting carbon dioxide and hydrogen. The produced green methanol can then be stored and utilized when needed, effectively storing renewable energy in a chemical form. For instance, in 2023, according to Ministry of Power in India, NTPC Green Energy Ltd. (NGEL) and HPCL Mittal Energy Ltd. (HMEL) signed a MoU for collaboration in renewable energy through sourcing of 250 MW RE-RTC (Round-The-Clock) power to meet the requirement of HMEL and exploring opportunities in the green hydrogen business & its derivatives (green ammonia & green methanol).
Moreover, green methanol has high compatibility with existing energy infrastructure. It can be blended with traditional fossil fuels and used in internal combustion engines or converted into electricity through fuel cells. This compatibility eases the transition to renewable energy while utilizing the existing energy distribution and transportation networks. Therefore, increasing use of green methanol as renewable energy storage solution led to the growth of global green methanol market in the forecast period.
As the world faces urgent challenge of combating climate change, stringent environmental regulations have become a critical tool in reducing carbon emissions and their impact on the environment. The use of green methanol is among the innovative solutions emerging to address this global concern. Green methanol, produced from renewable sources and carbon capture technologies, offers a promising pathway to minimize carbon emissions. Green methanol has the potential to replace traditional fossil fuels in various sectors. Stringent environmental regulations can encourage the integration of green methanol as a low-carbon fuel in transportation, shipping, and power generation. By adopting green methanol as an alternative to conventional fuels, carbon emissions from these industries can be reduced, contributing to global efforts to combat climate change. For instance, in 2023, EPA proposed Clean Air Act emission limits and guidelines for carbon dioxide (CO2) from fossil fuel-fired power plants based on cost-effective and available control technologies.
Moreover, green methanol can be produced using carbon capture and utilization (CCU) technologies. These technologies capture carbon dioxide emissions from industrial processes and convert them into valuable products like green methanol. Stringent environmental regulations can support the adoption of CCU technologies, encouraging industries to invest in carbon capture infrastructure and facilitate the conversion of captured carbon dioxide into sustainable methanol. Thus, rising strict environmental regulations regarding the emission of CO2 and converting it into sustainable products such as, green methanol driving the growth of global green methanol market in the projected years.
Global green methanol market is segmented based on feedstock, type, application, and region. Based on feedstock, the market is divided into CO2 emissions, municipal solid waste, agricultural waste, forestry residues, and others. Based on the type, the market is categorized into e-methanol and bio-methanol. Based on application, the market is segmented into fuel grade, chemical feedstock, and others. Based on region, the market is divided into Europe, North America, Asia-Pacific, and rest of the world.
OCI N.V., Methanex Corporation, Enerkem Inc., Carbon Recycling International, Sodra Skogsagarna, BASF SE, Topsoe A/S, Liquid Wind AB, Eni S.p.A., ABEL Energy Pty Ltd., Thyssenkrupp AG, Nordic Green ApS, Mitsubishi Gas Chemical Co Inc, Southern Green Gas Limited, and SunGas Renewables Inc. are some of the key players of global green methanol market.
In this report, the global green methanol market has been segmented into the following categories, in addition to the industry trends, which have also been detailed below:
Company Profiles: Detailed analysis of the major companies in the global green methanol market.
With the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: