![]() |
市场调查报告书
商品编码
1560960
2024-2032 年按费用、材料、结构、应用和地区分類的离子交换膜市场报告Ion Exchange Membrane Market Report by Charge, Material, Structure, Application, and Region 2024-2032 |
2023年,全球离子交换膜市场规模达9.741IMARC Group美元。不断增长的废水处理项目、医疗保健和能源储存领域的使用增加以及化学工业的不断进步是推动市场的一些关键因素。
不断增加的废水处理项目促进了市场成长
发展中国家不断兴起的废水处理计画是离子交换膜市场的主要驱动力之一。人们对污染处理措施的偏好增加,例如水和工业废水处理、好氧处理和厌氧处理。此外,由于世界各地对清洁水的需求不断增加,废水处理的利用率也有所增加。此外,个人对水质和健康意识的不断增强正在对市场产生积极影响。
报告涵盖了市场结构、主要参与者的市场份额、参与者定位、最佳制胜策略、竞争仪表板和公司评估象限等竞争分析。此外,也提供了所有主要公司的详细资料。由于创新的增加和小型区域参与者的出现,市场结构适度分散,存在大量全球和区域参与者在该行业中运作。由于产品差异化和转换成本较低,离子交换膜产业的新进入者数量较少。
什么是离子交换膜?
离子交换膜 (IEM) 是一种薄的半透片或薄膜,设计用于从水处理厂的流体中分离阳离子和阴离子。它依赖于能够从流体流中分离、浓缩和排除离子物质的离子物质。它以氯碱、碳氢化合物、全氟化碳、无机、复合和部分卤化变体的形式被广泛使用。与传统离子交换膜相比,它更具成本效益,有助于去除溶解的无机离子和再生树脂。 IEM 也用于电解、色谱分离和水软化过程,以去除水中的钙、镁和有毒金属。
COVID-19大流行的爆发为离子交换膜产业带来了严重的问题,给许多国家带来了前所未有的挑战。社交距离规范和封锁措施的执行导致企业缩减产能或暂时暂停生产过程。此外,由于冠状病毒在全球广泛传播,劳动力短缺也出现了。由于运输限制,化学、废水、石油和天然气等各种最终用途产业停产,导致对离子交换膜的需求下降。此外,有限的跨境流动也阻碍了离子交换膜的进出口。多重检查和码头的引入增加了运输成本,并导致整体供应略有延迟。除此之外,由于商品和服务流动受到限制以及劳动力短缺,许多参与者面临巨大损失。然而,随着部分业务重新开放,离子交换膜的需求预计将增加。因此,疫情后,由于人们对增强安全和健康的意识不断增强,全球范围内对离子交换膜的需求不断增加。
目前,对IEM生产绿色氢气的需求不断增加是积极影响市场的主要因素之一。此外,各国管理机构都鼓励采用清洁和便携式水,这正在加强市场的成长。除此之外,医疗保健领域越来越多地利用入耳式微电极来治疗肾衰竭并清除个体中的毒素和身体废物,这提供了积极的市场前景。此外,化学工业中生产烧碱、烧碱以及氯和氢基础化学产品对 IEM 的需求不断增长,也促进了市场的成长。除此之外,各国不断增加的废水处理项目以鼓励消费和使用安全卫生的水,也支持了市场的成长。此外,全球众多产业对有效废水和放射性废液处理解决方案的需求不断增加。与此一致的是,IEM 的采用越来越多,因为它们有助于去除废水中的硬度、重金属和杂质,为行业投资者提供了利润丰厚的成长机会。
The global ion exchange membrane market size reached US$ 974.1 Million in 2023. Looking forward, IMARC Group expects the market to reach US$ 1,381.7 Million by 2032, exhibiting a growth rate (CAGR) of 3.8% during 2024-2032. The growing wastewater treatment projects, increasing use in the healthcare and energy storage sectors, and rising advancements in the chemical industry represent some of the key factors driving the market.
Rising Wastewater Treatment Projects Augmenting Market Growth
The rising wastewater treatment projects in developing countries represent one of the primary drivers of the ion exchange membrane market. There is a rise in the preference toward pollution treatment measures, such as water and industrial wastewater treatments, aerobic treatment, and anaerobic treatment. In addition, there is an increase in the utilization of wastewater treatment due to the rising demand for clean water around the world. Moreover, the growing awareness about water quality and health among individuals is positively influencing the market.
Competitive analysis such as market structure, market share by key players, player positioning, top winning strategies, competitive dashboard, and company evaluation quadrant has been covered in the report. Also, detailed profiles of all major companies have been provided. The market structure is moderately fragmented with the presence of a large number of global and regional players operating in the industry due to the increase in innovations and emergence of small regional players. The volume of new entrants is low in the ion exchange membrane industry on account of the low product differentiation and switching costs.
What is an Ion Exchange Membrane?
Ion exchange membrane (IEM) is a thin semipermeable sheet or film designed for the separation of cations and anions from fluids in water treatment plants. It relies on ionic species that enable the separation, concentration, and exclusion of ionic material from the fluid flow. It is widely available as chlor-alkali, hydrocarbon, perfluorocarbon, inorganic, and composite and partially halogenated variants. It is more cost-effective and assists in removing dissolved inorganic ions and regenerating resins compared to traditional ion exchange membranes. IEM is also utilized in electrolysis, chromatographic separations, and water softening processes for removing the calcium, magnesium, and toxic metals from the water.
The COVID-19 pandemic outbreak has caused a severe problem for the ion exchange membrane industry and imposed unprecedented challenges on numerous countries. The enforcement of social distancing norms and lockdown measures caused players to downscale capacity or temporarily pause the production process. In addition, the shortage of labor was witnessed due to the widespread coronavirus across the globe. Due to the transportation restrictions, various end-use industries, such as chemical, wastewater, and oil and gas, shut down their operations, which declined the demand for ion exchange membranes. Moreover, the limited cross-border movement has hampered the exports and imports of ion exchange membranes. The introduction of multiple checks and terminals increased the transportation cost and caused a slight delay in overall supply. Apart from this, many players faced huge losses due to the restrictions on the movement of goods and services and the shortage of labor. However, amid partial business reopening, the demand for ion exchange membranes was expected to increase. As a result, post-pandemic, due to the rising awareness among individuals about enhanced safety and health, the demand for ion exchange membranes is rising worldwide.
At present, the increasing demand for IEMs to produce green hydrogen represents one of the major factors influencing the market positively. In addition, governing agencies of various countries are encouraging the adoption of clean and portable water, which is strengthening the growth of the market. Apart from this, the growing utilization of IEMs in the healthcare sector to treat renal failure and remove toxins and body waste among individuals is offering a positive market outlook. Additionally, the rising demand for IEMs in the chemical industry for manufacturing caustic soda, caustic potash, and chlorine and hydrogen-basic chemical products is contributing to the growth of the market. Besides this, the increasing wastewater treatment projects in various countries to encourage the consumption and usage of safe and hygienic water are supporting the growth of the market. Moreover, there is a rise in the need for effective wastewater and radioactive liquid waste treatment solutions across numerous industries around the world. In line with this, the increasing adoption of IEMs, as they assist in removing hardness, heavy metals, and impurities from wastewater, is offering lucrative growth opportunities to industry investors.
IMARC Group provides an analysis of the key trends in each sub-segment of the global ion exchange membrane market report, along with forecasts at the global, regional and country level from 2024-2032. Our report has categorized the market based on charge, material, structure and application.
The report has provided a detailed breakup and analysis of the ion exchange membrane market based on the charge. This includes cation, anion, amphoteric, bipolar, and mosaic. According to the report, anion represented the largest segment, as it provides resistivity from alkali, oxidation, chlorine, and acts as a diffusion dialysis for acid recovery. In addition, the increasing demand for water purification and wastewater treatment is positively influencing the market.
A detailed breakup and analysis of the ion exchange membrane market based on the material has also been provided in the report. This includes hydrocarbon membrane, perfluorocarbon membrane, inorganic membrane, composite membrane, and partially halogenated membrane. According to the report, inorganic membrane accounted for the largest market share, as it offers stability to high temperatures and to wetting-drying cycles over organic membranes. Moreover, the rising adoption of inorganic membrane to enhance conductivity of the membranes and prevent their dehydration under high temperature is impelling the market growth.
A detailed breakup and analysis of the ion exchange membrane market based on the structure has also been provided in the report. This includes heterogeneous membrane and homogenous membrane. According to the report, homogenous accounted for the largest market share, as it has electrochemical properties with lower mechanical characteristics. Additionally, the rising utilization of homogenous membrane to remove high sulphate concentrate from water is contributing to the market growth.
A detailed breakup and analysis of the ion exchange membrane market based on the application has also been provided in the report. This includes electrodialysis, electrolysis, chromatographic separation, desalination, wastewater treatment, and radioactive liquid waste treatment. According to the report, electrolysis accounted for the largest market share due to the increasing utilization in chemical processing, chloralkali and hydrogen production, and metal extraction. In addition, there is a rise in the demand for electrolysis due to the increasing production of chlorine, caustic soda, and other chlorine and sodium derived products.
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others) was the largest market for ion exchange membrane. Some of the factors driving the Asia Pacific ion exchange membrane market included the favorable government policies, increasing geriatric population, and thriving medical device industry. In addition to this, the rising demand for ion exchange membranes to treat various kidney related diseases among individuals is bolstering the growth of the market in the region.
Please note that this only represents a partial list of companies, and the complete list has been provided in the report.