市场调查报告书
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1284220
到 2028 年的氙气市场预测 - 按类型(N5、N4.5、N3、其他类型)、供应形式、最终用户和地区分类的全球分析Xenon Market Forecasts to 2028 - Global Analysis By Type (N5, N4.5, N3 and Other Types), Supply Mode, End User and By Geography |
根据Stratistics MRC,预计2022年全球氙气市场规模将达到2.864亿美元,2028年将达到3.644亿美元,复合年增长率为4。预计增长1% .
氙气是一种完全惰性的气体,在放电时会产生蓝光。 儘管氙气的商业可用性相对较低,但由于其优越的性能,氙气是首选。 由于其多功能性和高纯度,这种惰性气体被广泛应用于卫星、成像、照明、电子和医学等各个领域。 由于这些应用在现有和新兴经济体中的积极扩展,预计在预测期内对氙气的需求将会增加。
根据医疗保险和医疗补助服务中心的数据,美国国民医疗保健支出 (NHE) 到 2021 年将增长 2.7%,达到 4.3 万亿美元,占国内生产总值 (GDP) 的 18.3%。
X 射线、计算机断层扫描和磁共振成像 (MRI) 在医疗领域都使用氙气。 它还用于癌症治疗和医疗激光。 它还用于汽车前灯。 它也用于一些汽车的安全气囊。 用于某些激光器和灯泡。 也用于闪光摄影。 因此,存在影响市场扩张的因素。
吸入过多这种气体会引起噁心、头晕、呕吐,甚至死亡,因此这种气体被归类为窒息性气体。 如果氧气含量低,可能会在几秒钟内发生猝死。 此外,氙气的应用受到限制。 因此,对氙气的需求将减少,这可能会阻碍市场扩张。
Xe 是一种惰性气体,在电离子推进系统中用作推进剂时效果很好。 由于其优势,它在卫星行业迅速普及。 成功的星际旅行需要电力推进,太空旅行也依赖于电力推进。 发达国家越来越多地将天然气用于卫星,这有望推动市场。
生产氙气所需的氩气和氪气等原材料价格波动很大。 因此,氙气汽油的成本可能会有波动。 製造氙气的过程需要大量的能量。 结果,製造成本可能很高。 此外,氙气的生产会产生各种温室气体。 因此,环境法可能会变得更加严格并阻碍商业扩张。
大流行扰乱了全球工业活动。 这让我敏锐地意识到稀有气体的必要性。 由于 COVID-19 病例激增,大多数用于惰性气体生成的空气分离设备主要用于生产医用氧气。 大流行的爆发扰乱了全球化工行业的几个特殊产品类别,包括氙气。 建筑、航空航天、工业製造和汽车等氙气的主要消费行业正在减产,造成巨大的供需缺口。
N5 细分市场由于其主导地位,预计将实现有利增长。 N5氙气纯度高,被称为研究用氙气。 它非常昂贵,广泛应用于半导体、照明、电子和製药等各个行业。 儘管价格昂贵,但由于其用途广泛,预计在预测期内对汽油的需求将呈指数增长。
由于采用电力推进的航天器和卫星数量不断增加,预计卫星行业在预测期内将以最快的复合年增长率增长。 几颗卫星将在不久的将来发射,预计还会有更多卫星发布。 由于氙气灯提供比传统照明技术更好的照明效果,对氙气灯的需求正在增加,这有望提振该市场的产品需求。
由于医疗保健行业的发展和氧气发电厂的建设,预计亚太地区在预测期内将占据最大的市场份额。 高气体消耗在用于蚀刻和其他应用的电子和半导体领域。 由于半导体产量的增加,预计电子行业的扩张将有利地支持氙气市场的增长。
由于半导体应用的增加,预计欧洲在预测期内的复合年增长率最高。 由于严格的环境法规,对无害气体的需求不断增加,推动了各地区的市场扩张。 它用于磁共振成像和全身麻醉。 该地区的市场主要受到医疗保健行业对氙气不断增长的需求的推动。
2021 年 9 月,林德宣布计划提高佛罗里达州空分装置的产能,以满足消费者对工业气体的需求。
2018 年 7 月,全球最大的稀有气体和其他工业气体生产商之一的液化空气集团 (Air Liquide) 宣布了多项新收购,旨在为美国、欧洲和亚太地区的卫星和半导体行业供应氙气和氪气。已签署年度合同。 据报导,这些合同价值超过 5900 万美元。
According to Stratistics MRC, the Global Xenon Market is accounted for $286.4 million in 2022 and is expected to reach $364.4 million by 2028 growing at a CAGR of 4.1% during the forecast period. When exposed to electrical discharge, the fully inert gas known as xenon generates blue light. Due to its exceptional qualities, it is preferred even though it has relatively little commercial usage. Because of its versatility and high level of purity, this noble gas is widely used in a variety of fields, including satellites, imaging, lighting, electronics, and medicine. The demand for xenon gas is anticipated to rise during the forecast period as a result of the positive expansion of these applications in both established and emerging economies.
According to the Centers for Medicare & Medicaid Services, national health expenditures (NHE) in the United States grew 2.7% to USD 4.3 trillion in 2021, accounting for 18.3% of the Gross Domestic Product (GDP).
X-rays, computed tomography scans, and magnetic resonance imaging (MRI) all employ xenon in the medical field. Additionally, it is utilised in the treatment of cancer and in medical lasers. Some autos' headlights make use of it. Some vehicles' airbags also utilise it. It is utilised in several lasers and light bulbs. In flash photography, it is employed. So, these are the elements influencing the market's expansion.
The gas is categorised as an asphyxiant, which indicates that breathing in an excessive amount of this gas can cause nausea, dizziness, vomiting, and occasionally even death. At low oxygen levels, sudden death can happen in a matter of seconds. Moreover, there are just a few uses for xenon gas. This may result in less demand for xenon gas, which could impede the market's expansion.
For use in the electric ion propulsion system, the inert gas Xe works great as a propellant. As a result of its benefits, it is rapidly gaining popularity in the satellite industry. Interplanetary operations require electric propulsion to be successful, and space travel also relies on electric propulsion. The market is projected to be driven by the growing use of gas in industrialised nations for satellites.
Raw ingredients like argon and krypton, which are required to make xenon gas, are very erratic in price. The cost of xenon petrol may change as a result of this. The process of creating xenon gas requires a lot of energy. High production costs may result from this. Additionally, xenon gas generation releases a variety of greenhouse pollutants. This might result in stringent environmental laws that would impede commercial expansion.
Worldwide industrial operations were hampered by the pandemic. The need for rare gases was thereby acutely felt. As COVID-19 cases were increasing exponentially, the majority of the rare gas-generating air separation systems were primarily occupied in manufacturing medicinal oxygen. The emergence of a pandemic condition is upsetting several specialist product categories, including xenon gas, in the worldwide chemical sector. As key consumers of xenon gas, the construction, aerospace, industrial manufacturing, and automotive industries have curtailed production, which has resulted in a significant supply-demand gap.
The N5 segment is estimated to have a lucrative growth, due to its advantages. N5 xenon has high purity is known as research-grade xenon. It is very expensive and widely used in a variety of industries, including semiconductors, lighting, electronics, and pharmaceuticals. Despite its high cost, the demand for petrol is predicted to increase dramatically over the course of the forecast period due to its numerous applications.
The satellite segment is anticipated to witness the fastest CAGR growth during the forecast period, due to the growing number of electric propulsion spacecraft and satellites. Several satellites are set to launch in the near future, and many more are anticipated to be announced. Since xenon-based lights give superior illumination than traditional lighting techniques, there is an increasing desire for them, which is projected to boost product demand in this market.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the development of healthcare sectors and the construction of oxygen power plants. High gas consumption is attributed to the electronics and semiconductor sectors for use in etching and other applications. Due to rising semiconductor output, the expansion of the electronics industry is anticipated to favourably support the growth of the xenon market.
Europe is projected to have the highest CAGR over the forecast period, owing to increase in semiconductor applications. Due to strict environmental restrictions, there is an increasing need for non-toxic gases, which is fostering regional market expansion. It is utilised in magnetic resonance imaging systems and general anaesthesia. The market in the region is primarily driven by the expanding demand for Xenon in the healthcare industry.
Some of the key players profiled in the Xenon Market include Airgas, Inc., The Linde Group, Praxair Technology, Inc., Matheson Tri-Gas, Inc., AIR LIQUIDE S.A., Ingas AE, Air Products and Chemicals, Proton Gases (India) Pvt. Ltd., Messer Group GmbH, American Gas Products, Iceblick LLC, Coregas Pty Ltd, Electronic Flurocarbons, LLC, Cryoin Engineering Ltd., American Gas Products and Air Water Inc.
In September 2021, Linde announced plans to enhance its air separation unit capacity in Florida to satisfy consumer demand for industrial gases.
In July 2018, Air Liquide, one of the largest producers of rare gases and other industrial gases in the world, signed several new multi-year contracts for xenon & krypton supply to the satellite and semiconductor industries in the U.S., Europe, and Asia Pacific. The contracts are reported to be worth over USD 59 million.