市场调查报告书
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1359019
2030 年溴化氢市场预测:按细分市场和地区分類的全球分析Hydrogen Bromide Market Forecasts to 2030 - Global Analysis By Type, Form, End User and By Geography |
根据Stratistics MRC的数据,2023年全球溴化氢市场规模为45.7亿美元,预计2030年将达到72.9亿美元,预测期内年复合成长率为6.9%。
溴和氢之间的化学反应产生溴化氢 (HBr),这是一种水溶性气体,也可以以水溶液形式产生。溴化氢既充当催化剂又可作为还原剂。此外,溴化氢与水结合会产生氢溴酸,这是一种主要用于工业的强酸。氢溴酸可用于为任何化合物付加所需的特性。无机溴化物、有机溴、对苯二甲酸、锌、钠和钙的溴化物也可以使用氢溴酸生产。
然而,根据国际劳工组织的说法,溴具有更明显的毒性作用。 AIHA 报告称,短期接触 40 至 60 ppm 的溴对人体是危险的(Henderson 和 Haggard 1943)。
溴化氢主要用于化学工业。使用溴化氢合成多种化合物,包括药物、阻燃剂和特殊化学品。此外,以 HBr 作为原料的新化学製程的开发、经济成长以及消费者对化学产品的需求都影响着该领域的需求。
溴化氢生产和溴提取对环境的影响是巨大的。这包括废弃物的产生和溴化化合物的排放,这可能导致臭氧层消耗。此外,环保意识的增强和法规的收紧可能需要投资于更清洁和更永续的生产技术,这可能会增加生产成本。
半导体技术的不断进步需要尖端的材料和製程。 HBr 在半导体製造的应用超出了传统蚀刻的范围。此外,我们还提供与半导体公司合作创造新材料和程式的机会,以提高微晶片和电子设备的功能和有效性,并加速电脑、通讯和电子领域的进步。
由于市场主要依赖从天然卤水矿床获取的溴,因此存在因地缘政治不稳定或溴产区环境法规等因素导致供应中断的风险。此外,这些地区的政治纷争或衝突导致供应链突然中断,使溴的可得性和成本面临风险。不断变化的环境法规也可能限制这些地区的溴提取,导致供应链集中并增加氢溴酸生产商的供应风险。
溴化氢 (HBr) 市场受到 COVID-19大流行的严重影响。生产和分销最初受到供应链中断、劳动力短缺和限制的阻碍,导致短期供应问题和潜在的价格波动。此外,由于经济活动减少和许多产业的不确定性,对氢溴酸产品的需求会波动。然而,疫情凸显了对依赖氢溴酸的储能方案和半导体技术的需求,导致某些细分市场的需求增加。
溴化氢(HBr)市场预计将在石油、天然气钻探领域占据最大份额。在该行业中,HBr被用作钻井液的关键成分,以提高钻井效率并防止设备腐蚀。 HBr 在石油、天然气行业中至关重要,尤其是在困难的钻井作业中,因为它能够减少地层损害并控制井孔稳定性。此外,由于全球对石油、天然气的高需求,该行业继续广泛使用 HBr,使其成为最常见的化学品用途。
溴化氢(HBr)市场在水处理领域中表现出最高的年复合成长率。 HBr 是水处理行业中使用的许多製程的关键成分,包括 pH 调节、消毒和腐蚀控制。由于对水质问题的日益关注、法规的收紧以及对永续水资源管理的日益重视,水处理用途中对 HBr 的需求正在增加。此外,海水淡化、工业污水处理、市政水处理等产业对高效水处理解决方案的需求不断蔓延,推动了该市场的稳定扩张。
欧洲占据溴化氢(HBr)市场的最大份额。欧洲拥有多元化的工业基础,是氢溴酸的重要消费国,包括德国、英国和法国。 HBr 有多种用途,包括化学、电子、製药和建筑业。此外,欧洲严格的环境法规正在推动环保阻燃剂和水处理等绿色产品中对 HBr 的需求。该地区对永续性和创新的关注也有助于其与北美一起成为 HBr 市场的关键参与者。
预计亚太地区(APAC)的溴化氢(HBr)市场年复合成长率最高。亚太地区正在经历快速的工业化、都市化和经济成长,包括中国、印度、日本和韩国等国家。因此,HBr 在建筑、农业、电子和汽车製造等多个行业都有很高的需求。此外,韩国和台湾等国家不断增长的半导体产业以及对清洁水和永续农业的日益关注也推动了该地区的氢溴酸需求。由于製造和技术能力的扩大以及环保意识的提高,亚太地区是 HBr 市场的高成长地区。
According to Stratistics MRC, the Global Hydrogen Bromide Market is accounted for $4.57 billion in 2023 and is expected to reach $7.29 billion by 2030 growing at a CAGR of 6.9% during the forecast period. The chemical reaction between bromine and hydrogen results in hydrogen bromide (HBr), a water-soluble gas that can also be created as an aqueous solution. It functions as both a catalyst and a reducing agent in reactions. Moreover, hydrobromic acid, a potent acid that is mainly used in industry, is created when hydrogen bromide is combined with water. Any chemical compound can have desirable properties added to it using hydrobromic acid. Inorganic bromides, organ bromines, terephthalic acid, zinc, sodium, and calcium bromides are also produced using it.
According to ILO, however, bromine produces a more marked toxic action. AIHA reported that for humans, 40 to 60 ppm bromine is dangerous for short exposure Henderson and Haggard 1943.
Hydrogen bromide is primarily consumed by the chemical industry. Many different chemical compounds, including pharmaceuticals, flame retardants, and specialty chemicals, are synthesized using HBr. Additionally, the development of new chemical processes that use HBr as a raw material, as well as economic growth and consumer demand for chemical products, all have an impact on this sector's demand.
Environmental effects from HBr production and bromine extraction can be significant. These include the production of waste byproducts and the emissions of brominated compounds, which may contribute to the destruction of the ozone layer. Furthermore, investments in cleaner, more sustainable production techniques are required as a result of increased environmental awareness and stricter regulations, which could raise production costs.
Cutting-edge materials and procedures are necessary for the ongoing advancements in semiconductor technology. The use of HBr in semiconductor fabrication goes beyond just conventional etching. Moreover, it provides chances for cooperation with semiconductor firms to create new substances and procedures that improve the functionality and effectiveness of microchips and electronic gadgets, promoting advancements in computing, communications, and electronics.
Due to the market's reliance on bromine, which is primarily obtained from natural brine deposits, supply disruptions due to elements like geopolitical unrest and environmental regulations in bromine-producing regions are a risk. Additionally, the availability and cost of bromine are put at risk when there is sudden supply chain interruptions brought on by political conflicts or disputes in these regions. The extraction of bromine may also be restricted in these areas due to changing environmental regulations, which would concentrate the supply chain and increase supply risks for HBr producers.
The hydrogen bromide (HBr) market is significantly impacted by the COVID-19 pandemic. Production and distribution were initially hampered by supply chain disruptions, labor shortages, and lockdown procedures, which led to short-term supply problems and potential price changes. Furthermore, the demand for goods based on HBr fluctuated due to decreased economic activity and uncertainty in a number of industries. However, certain market segments experienced increased demand as the pandemic highlighted the need for energy storage options and semiconductor technologies that rely on HBr.
The market for hydrogen bromide (HBr) is anticipated to hold the largest share in the oil and gas drilling segment. In this industry, HBr is used as a crucial component in drilling fluids to increase drilling efficiency and prevent corrosion on equipment. HBr is essential in the oil and gas industry, especially in difficult drilling operations, due to its capacity to reduce formation damage and control wellbore stability. Moreover, this industry continues to use HBr extensively due to the high global demand for oil and gas, making it the chemical's most common use.
The market for hydrogen bromide (HBr) shows the highest CAGR in the water treatment segment. HBr is a crucial ingredient in many processes used in the water treatment industry, including pH regulation, disinfection, and corrosion inhibition. The demand for HBr in water treatment applications has increased as a result of rising concerns about water quality, escalating regulations, and a growing emphasis on sustainable water management. Additionally, the demand for efficient water treatment solutions is widespread across industries, including desalination, industrial wastewater treatment, and municipal water treatment, which is fueling this market's steady expansion.
The European region holds the largest market share for hydrogen bromide (HBr). Due to its diverse industrial base, Europe, which includes nations like Germany, the United Kingdom, France, and others, is a significant consumer of HBr. HBr is used in a variety of applications in the chemical, electronic, pharmaceutical, and construction industries. Furthermore, the strict environmental regulations in Europe fuel the demand for HBr in green products like eco-friendly flame retardants and water treatment. The region's emphasis on sustainability and technological innovation also helps to explain why it is a significant player alongside North America in the HBr market.
The Asia-Pacific (APAC) region is anticipated to have the highest CAGR in the hydrogen bromide (HBr) market. APAC is experiencing rapid industrialization, urbanization, and economic growth and includes nations like China, India, Japan, and South Korea. As a result, HBr is increasingly in demand in a variety of industries, including construction, agriculture, electronics, and auto manufacturing. Moreover, the demand for HBr in this region has also been boosted by the developing semiconductor industry in nations like South Korea and Taiwan, as well as the increasing focus on clean water and sustainable agriculture. APAC is a high-growth region in the HBr market due to the expansion of manufacturing and technological capabilities as well as rising environmental awareness.
Some of the key players in Hydrogen Bromide Market include: Linde Plc, Bhavika Chemicals Corporation, Praxair Technology, Air Liquide, Tata Chemicals Ltd, Matheson Tri-Gas, Inc, Chevron Phillips Chemical Company Llc, Gulf Resources, Inc, Chemtura Corporation, Lanxess, Sontara Organo Industries, Showa Denko K.K, Albemarle Corporation, Neogen Chemical Ltd, Tosoh Corporation, Triveni Interchem Private Limited and Verni Gas Corporation.
In June 2023, Air Liquide has signed a long-term Power Purchase Agreement (PPA) with the China Three Gorges Renewables and China Three Gorges Corporation Jiangsu Branch, subsidiaries of China Three Gorges, one of China's largest producers and retailers of renewable electricity, to purchase a total of 200 MW of renewable power per year in China.
In April 2023, Linde announced that it has signed a long-term agreement with ExxonMobil for the off-take of carbon dioxide associated with Linde's new clean hydrogen production in Beaumont, Texas. Linde previously announced that it will build, own and operate an on-site complex to supply clean hydrogen and nitrogen to OCI Global's (Euronext: OCI) new world-scale blue ammonia plant.
In January 2023, Tata Chemicals Europe signs offtake agreement with Vertex Hydrogen. Under the new offtake agreement, Vertex will supply TCE with hydrogen as the manufacturer continues to decarbonise its operations in the UK with a target of achieving "net zero" manufacturing by 2030.