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市场调查报告书
商品编码
1744536
2032 年二氧化碳压缩机市场预测:按产品类型、动力来源、技术、应用、最终用户和地区进行的全球分析CO2 Compressor Market Forecasts to 2032 - Global Analysis By Product Type, Power Source, Technology, Application, End User and By Geography |
根据 Stratistics MRC 的数据,全球二氧化碳压缩机市场预计在 2025 年达到 24.2 亿美元,到 2032 年将达到 46.8 亿美元,预测期内的复合年增长率为 9.9%。
二氧化碳压缩机是一种用于各种工业场所,将二氧化碳气体压缩至高压的机械工具。食品饮料、石油天然气、化学加工和冷冻等行业都广泛使用这类压缩机。专门设计用于处理二氧化碳特殊特性(例如高密度和在压力下易熔化)的压缩机称为二氧化碳压缩机。根据所需的流量和压力,二氧化碳压缩机有多种型号,例如离心式、螺桿式和往復式。高效的二氧化碳压缩对于提高采收率、干冰生产、超临界二氧化碳萃取方法等应用至关重要。
30 多年来,天然气压缩机协会 (GCA) 一直致力于彙编和发布特定产业数据,涵盖天然气压缩行业的製造、包装和租赁业务。这些数据涵盖往復式和旋转螺桿式压缩机、引擎、电动马达、冷却器以及压缩机成套设备製造商 (OEM) 的资讯。
扩大超临界二氧化碳在发电和采矿领域的应用
超临界二氧化碳 (sCO2) 技术在发电、食品加工、製药和其他领域的应用日益广泛,这在很大程度上推动了二氧化碳压缩机市场的发展。超临界二氧化碳具有特殊的溶剂特性,使其成为高效环保萃取的理想溶剂。二氧化碳存在于高于其临界温度和压力的状态。此外,二氧化碳压缩机需要维持这些应用所需的高压,这使得它们成为工业和能源创新领域的重要组成部分。
营运和资本成本高
购买和安装这些系统所需的高初始资本支出是限制二氧化碳压缩机市场发展的主要因素之一。二氧化碳压缩机结构复杂,需要专门的材料和工程设计,因此价格昂贵,尤其是在高压或超临界应用中。技术纯熟劳工、能源消耗和维护等营运成本进一步增加了总拥有成本。此外,这些成本对于中小企业 (SME) 来说可能过高,阻碍了其广泛应用。
CO2压缩机技术开发
二氧化碳压缩机的设计不断发展,无油系统、磁力轴承、变速驱动装置(VSD) 和模组化撬装装置等新功能使其更有效率、体积更小,更易于整合到各种应用中。这些技术发展正在降低消费量和维护需求,使压缩机在环保合规性和营运效率至关重要的领域更具吸引力。此外,随着生产商不断改进这些特性,二氧化碳压缩机正在开拓新的市场,使其效用从传统市场扩展到创新的工业应用领域。
工业CO2排放源的环境问题
儘管二氧化碳在永续技术中的应用日益广泛,但工业二氧化碳排放的大部分仍来自石化燃料为基础的来源,例如炼油厂、水泥厂和天然气加工。这种矛盾导致了监管压力和环境审查,尤其是在工业界寻求真正低碳解决方案的当下。如果政府实施严格的生命週期排放分析,或对从污染源提取的二氧化碳施加限製或征收碳排放税,二氧化碳利用的整体可行性可能会降低。此外,这种变化可能会阻碍最终用户购买压缩机等二氧化碳密集型设备,除非绿色二氧化碳和生物来源二氧化碳采购变得更加普遍,否则这可能会阻碍市场扩张。
新冠疫情 (COVID-19) 疫情严重衝击了二氧化碳压缩机市场,因为它减缓了工业活动并扰乱了全球供应链。封锁措施导致压缩机订单和二氧化碳消费量暂时下降,降低了製造业、冷气业以及食品饮料等关键产业的需求。由于设备出货延迟和原材料短缺,生产和安装进度也受到了影响。然而,疫情也促使人们对碳捕获计划和永续技术的兴趣增加,并将其作为经济復苏计画的一部分,重新点燃了人们对二氧化碳压缩机的兴趣。儘管新冠疫情造成了暂时的挫折,但预计环保意识的增强将推动市场的长期成长。
预计往復式压缩机市场在预测期内将占最大份额
预计往復式压缩机领域将在预测期内占据最大的市场占有率。往復式压缩机的主导地位归功于其高效率、耐高压以及中小容量应用,使其成为碳捕获、天然气处理和製冷等领域二氧化碳压缩的理想选择。此外,其坚固耐用的设计和精确的压缩能力使其成为间歇性或可变负载运行过程的首选,从而推动了二氧化碳压缩机领域的巨大市场需求和扩张。
预计发电部门在预测期内将以最高复合年增长率成长
预计发电业将在预测期内实现最高成长率。旨在减少发电厂二氧化碳排放的严格立法以及全球对清洁能源来源日益增长的需求是这一增长的主要驱动力。二氧化碳压缩机是捕碳封存(CCS) 技术的重要组成部分,该技术广泛应用于发电,以减少温室气体排放。此外,对永续能源生产的日益重视以及政府对实施 CCS计划的奖励不断增加,正在推动二氧化碳压缩机在该行业的快速普及。
预计亚太地区将在预测期内占据最大的市场占有率。这种主导地位主要得益于中国和印度等国家的快速都市化和工业化,以及对环保节能冷冻解决方案日益增长的需求。此外,二氧化碳压缩机在食品饮料、製药和工业製冷等许多行业的应用正在显着加速。这得归功于该地区强大的製造业基础和政府支持永续实践的倡议。因此,亚太地区是二氧化碳压缩机规模最大、成长最快的市场。
预计中东和非洲地区在预测期内的复合年增长率最高。南非、阿联酋和沙乌地阿拉伯等国对石油和天然气基础设施的投资不断增加,以及发电能力的提升,推动了这一成长。为了减少排放并遵守国际环境标准,该地区正专注于捕碳封存技术。此外,日益增多的工业活动和政府支持永续能源解决方案的项目也推动了二氧化碳压缩机的需求。
According to Stratistics MRC, the Global CO2 Compressor Market is accounted for $2.42 billion in 2025 and is expected to reach $4.68 billion by 2032 growing at a CAGR of 9.9% during the forecast period. A mechanical tool used in a variety of industrial settings to compress carbon dioxide gas to higher pressures is called a CO2 compressor. Industries including food and beverage, oil and gas, chemical processing, and refrigeration all make extensive use of these compressors. Compressors designed specifically to handle the special characteristics of carbon dioxide, such as its high density and propensity to melt under pressure, are known as CO2 compressors. Various models, such as centrifugal, screw, and reciprocating models, are available based on the required flow rate and pressure. Effective CO2 compression is necessary for procedures such as enhanced oil recovery, dry ice production, and supercritical CO2 extraction.
According to the Gas Compressor Association (GCA) has been compiling and publishing industry-specific statistical data for over 30 years, covering manufacturing, packaging, and rental fleet segments of the natural gas compression industry. This data includes information on reciprocating and rotary screw compressors, engines, electric motors, coolers, and compressor packagers (OEMs).
Growing utilization of supercritical co2 for power generation and extraction
The CO2 compressor market is being driven largely by the growing use of supercritical CO2 (sCO2) technology in sectors like power generation, food processing, and pharmaceuticals. Supercritical CO2 has special solvent qualities that make it the perfect solvent for high-efficiency and environmentally friendly extraction. It exists at a state above its critical temperature and pressure. Furthermore, CO2 compressors are a vital part of the industrial and energy innovation landscapes because they are necessary to maintain the high pressures needed for these applications.
High operating and capital expenses
The significant upfront capital expenditure needed for the purchase and installation of these systems is one of the main factors limiting the CO2 compressor market. CO2 compressors are complicated and need specialized materials and engineering, which raises costs, especially for high-pressure or supercritical applications. The total cost of ownership is further increased by operational expenses such as skilled labor, energy use, and maintenance. Moreover, these costs may be too high for small and medium-sized businesses (SMEs), which would prevent widespread adoption.
Technological developments in co2 compressors
The design of CO2 compressors is constantly evolving, and new features like oil-free systems, magnetic bearings, variable speed drives (VSD), and modular skid-mounted units are making them more effective, smaller, and simpler to integrate into a variety of applications. These technological developments lower energy consumption and maintenance needs, increasing the appeal of compressors to sectors where environmental compliance and operational efficiency are crucial. Additionally, as producers keep refining these characteristics, they open up new markets for CO2 compressors and extend their usefulness beyond conventional markets to innovative industrial applications.
Environmental issues with sources of industrial Co2
The majority of industrial CO2 still comes from fossil fuel-based sources like refineries, cement factories, and natural gas processing, even though CO2 is being utilized more and more in sustainable technologies. This paradox leads to regulatory pressure and environmental scrutiny, particularly as industries look for truly low-carbon solutions. The overall viability of CO2 applications may decrease if governments enforce rigid life-cycle emissions analysis or place limitations or carbon taxes on CO2 extracted from polluting sources. Furthermore, this change could discourage end users from purchasing CO2-intensive equipment, such as compressors, which could hinder market expansion unless green or biogenic CO2 sourcing becomes more common.
The COVID-19 pandemic had a major effect on the market for CO2 compressors because it reduced industrial activity and upset global supply chains. Compressor orders and CO2 consumption temporarily decreased as a result of lockdowns, which reduced demand in important industries like manufacturing, refrigeration, and food and beverage. Timelines for production and installation were also hampered by delayed equipment shipments and shortages of raw materials. But the pandemic also increased attention to carbon capture projects and sustainable technologies as part of plans for economic recovery, which rekindled interest in CO2 compressors. However, even though COVID-19 resulted in temporary setbacks, it is anticipated that greater environmental consciousness will spur long-term market growth.
The reciprocating compressors segment is expected to be the largest during the forecast period
The reciprocating compressors segment is expected to account for the largest market share during the forecast period. Their dominance can be attributed to their high efficiency, high pressure tolerance, and small to medium capacity applications, which make them perfect for CO2 compression in sectors like carbon capture, natural gas processing, and refrigeration. Moreover, they are favored in processes that need intermittent or variable load operations due to their sturdy design and ability to provide precise compression, which fuels the CO2 compressor segment's substantial market demand and expansion.
The power generation segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the power generation segment is predicted to witness the highest growth rate. Stricter laws intended to lower carbon emissions from power plants and rising global demand for cleaner energy sources are the main drivers of this expansion. CO2 compressors are essential components of carbon capture and storage (CCS) technologies, which are extensively used in the production of electricity in an effort to reduce greenhouse gas emissions. Additionally, the industry is experiencing the fastest growth in CO2 compressor adoption due to the increased emphasis on sustainable energy production and government incentives to implement CCS projects.
During the forecast period, the Asia Pacific region is expected to hold the largest market share. The main causes of this dominance are the fast urbanization and industrialization of nations like China and India, as well as the growing need for ecologically friendly and energy-efficient cooling solutions. Furthermore, the adoption of CO2 compressors has been greatly accelerated in a number of industries, including food and beverage, pharmaceuticals, and industrial refrigeration, owing to the region's strong manufacturing base and government initiatives supporting sustainable practices. For CO2 compressors, Asia Pacific is therefore the biggest and fastest-growing market.
Over the forecast period, the Middle East & Africa region is anticipated to exhibit the highest CAGR. Growing investments in oil and gas infrastructure as well as increased power generation capabilities in nations like South Africa, the United Arab Emirates, and Saudi Arabia are driving this growth. To cut emissions and adhere to international environmental standards, the region is concentrating on carbon capture and storage technologies. Moreover, the need for CO2 compressors is also being driven by an increase in industrial activity and government programs supporting sustainable energy solutions, which is why MEA is a new, rapidly expanding market globally.
Key players in the market
Some of the key players in CO2 Compressor Market include Siemens AG, Mitsubishi Heavy Industries, Ltd., Atlas Copco AB, Sanden Corporation, Howden Group, Copeland LP, Ingersoll Rand Inc, Sollant Group, Hitachi, Bengbu AOT Compressor Co., Ltd., HAUG Sauer Kompressoren AG, Panasonic Corporation, Mehrer Compression GmbH, Dorin SpA and Bauer Group.
In March 2025, Mitsubishi Heavy Industries, Ltd. (MHI) has concluded a Nissay Positive Impact Finance agreement with Nippon Life Insurance Company. This is the second Positive Impact Finance Agreement between MHI and Nippon Life. MHI Group, in response to the growing need to address the global challenge of climate change, in 2020, identified five material issues, as priority measures to contribute to solving societal issues and ensuring continued growth over the medium to long term.
In July 2024, Siemens AG and Boson Energy have signed a Memorandum of Understanding (MoU) to facilitate collaboration on technology that converts non-recyclable waste into clean energy. The collaboration aims to advance sustainable, local energy security, enabling hydrogen-powered electric vehicle charging infrastructure without compromising grid stability or impacting consumer prices.
In March 2024, Ingersoll Rand has signed an agreement for the acquisition of ILC Dover from investment company New Mountain Capital for $2.325bn in cash upfront, expanding its presence in life sciences. The acquisition also includes an earnout based on meeting specific operating efficiency metrics this year.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.