市场调查报告书
商品编码
1577153
到 2030 年硫酸铁和聚合硫酸铁市场预测:按产品类型、製程、应用、最终用户和地区进行的全球分析Ferric Sulfate and Polyferric Sulfate Market Forecasts to 2030 - Global Analysis By Product Type (Ferric Sulfate and Polyferric Sulfate), Process (Pickling Process, Sulphate Process and Oxidation), Application, End User and by Geography |
根据Stratistics MRC的数据,2024年全球硫酸铁和聚合硫酸铁市场规模为4.8212亿美元,预计2030年将达到6.9952亿美元,复合年增长率为6.4%。
硫酸铁是一种多功能无机化合物,主要用作水处理过程中的凝聚剂。硫酸铁透过促进悬浮颗粒的累积来帮助去除水中的杂质和污染物,使其更容易过滤。硫酸铁降低水 pH 值的能力也有助于增加各种污染物的沉淀。然而,与传统的硫酸铁相比,聚合硫酸铁(PFS)是一种更先进的凝聚剂,具有许多优点。 PFS 由聚合硫酸铁组成,可改善絮凝并提高沉降和过滤效率。
据美国环保署 (EPA) 称,硫酸铁主要用于水处理应用,占国内总消费量的 50% 以上。
对纯净水的需求不断增长
随着世界人口的增加,对安全清洁饮用水的需求不断增加。世界卫生组织 (WHO) 估计,目前有 20 亿人无法获得安全管理的饮用水。由于迫切需要,企业和市政当局正在投资高效的水处理系统,硫酸铁和聚合硫酸铁已成为必不可少的凝聚剂。此外,经过这些化学品处理的水可去除悬浮固体和杂质,适合饮用和其他用途。政府优先考虑改善基础设施以改善水质,这可能会显着增加对这些凝聚剂的需求。
水处理基础设施成本过高
水处理设施需要大量的初始投资,这往往是公司和市政当局的主要障碍,特别是在开发中国家。高效水处理所需的多级设施和设备的成本可能难以承受。根据联合国水综合监测倡议,估计全球整体44% 的生活废水没有妥善处理,特别是在最不开发中国家。此外,缺乏足够的处理是由于缺乏必要的基础设施投资,这反过来又减少了对硫酸铁和聚合硫酸铁等凝聚剂的需求。
加大水处理基础建设投资
为了遵守严格的环境法规并改善公共卫生结果,世界各国政府正大力投资水处理设施的现代化和扩建。该领域的引人注目的投资包括订单中信环境科技价值 8600 万美元的合同,在中国建造四座水处理厂。此外,这些努力使得引入硫酸铁和聚合硫酸铁作为市政和工业污水处理过程中所需的凝聚剂成为可能。
替代水处理技术的威胁
逆渗透(RO)过滤、紫外线(UV)消毒等先进水处理技术的发展对硫酸铁和聚合硫酸铁的传统应用构成严重威胁。这些技术具有很高的净化效率,除了空气中的颗粒之外,还可以去除有害细菌和病原体,使其成为工业和市政当局有吸引力的替代方案。此外,增加使用逆渗透过滤系统和紫外线技术可能会减少对硫酸铁等化学凝聚剂的需求。由于向更高效的技术过渡,传统凝聚剂的市场占有率可能会下降。
硫酸铁和聚合硫酸铁市场受到COVID-19大流行的严重影响,导致供应链和生产中断。由于劳动力短缺和停工,许多公司被迫暂停生产业务。结果,使用这些化学品的各个部门的产量下降,包括农业、电子和纺织。此外,运输限制也使得生产硫酸铁所需的原料运输更加困难,进一步加剧了供不应求。
预计硫酸铁业务在预测期内将是最大的业务
在硫酸铁和聚合硫酸铁市场中,硫酸铁细分市场占有最大份额。该领域占据主导地位的主要原因是其在水处理过程中广泛用作凝聚剂,以有效去除水中的颗粒物和污染物。硫酸铁能够抑制胶体体系的ZETA电位并改善颗粒聚集和沈降,这是其相对于氯化铁等替代品的优势之一。此外,硫酸铁在纺织、农业、医药等各产业的应用也促进了需求的增加。
水处理化学品产业预计在预测期内复合年增长率最高
在硫酸铁/聚合硫酸铁市场中,水处理化学品领域预计将以最高的复合年增长率成长。硫酸铁和聚合硫酸铁以其去除污水中污染物的优异性能而闻名,这导致市政和工业水处理过程中对高效凝聚剂的需求不断增长,这是这一增长的主要因素。此外,水处理化学品领域专注于投资和创新,由于这些化学品在改善水质和提高水安全意识方面的有效性,被定位为市场成长的关键驱动力。
硫酸铁和聚合硫酸铁市场以亚太地区为主。这是因为中国和印度等国家正在快速工业化和都市化,对高效水处理系统的需求很高。硫酸铁被广泛用污水水处理中的凝聚剂,这主要是由于该地区强大的製造业,特别是造纸和纺织生产。
由于对高效水处理解决方案的需求不断增加,特别是在美国和加拿大,北美地区的铁和聚合硫酸铁市场预计在预测期内将以最高的复合年增长率成长。美国环保署 (EPA) 制定了严格的水质法规,要求废水在排放前进行处理,这是造成这种成长的主要原因。此外,老化基础设施的现代化程度不断提高以及公众获得清洁水的意识不断提高,也支持了该行业的市场成长。
According to Stratistics MRC, the Global Ferric Sulfate and Polyferric Sulfate Market is accounted for $482.12 million in 2024 and is expected to reach $699.52 million by 2030 growing at a CAGR of 6.4% during the forecast period. Ferric sulfate is a versatile inorganic compound that is mainly used as a coagulant in water treatment processes. It works to rid water of impurities and pollutants by encouraging the accumulation of suspended particles, which are then easily filtered out. The ability of ferric sulfate to reduce water's pH also helps to increase the precipitation of different pollutants. However, compared to conventional ferric sulfate, polyferric sulfate (PFS) is a more sophisticated coagulant that has a number of benefits. PFS, which is made of polymeric ferric sulfate, improves flocculation, which enhances sedimentation and filtration efficiency.
According to the U.S. Environmental Protection Agency (EPA), ferric sulfate is primarily used in water treatment applications, accounting for over 50% of its total domestic consumption.
Growing need for pure water
The demand for safe and clean drinking water is rising as the world's population continues to rise. The World Health Organization (WHO) estimates that 2 billion people do not currently have access to drinking water services that are safely managed. Due to the pressing need, businesses and municipalities are investing in efficient water treatment systems, in which ferric and polyferric sulfates are essential coagulants. Moreover, water treated with these chemicals becomes fit for drinking and other uses by removing suspended solids and impurities. Governments prioritizing infrastructure development to enhance water quality are likely to drive a large increase in demand for these coagulants.
Exorbitant infrastructure costs for water treatment
Water treatment facilities demand a large initial investment, which frequently presents a major obstacle for businesses and municipalities, particularly in developing nations. The cost of the multistage facilities and equipment required for efficient water treatment may be unaffordable. The UN Water Integrated Monitoring Initiative estimates that 44% of domestic wastewater globally-and especially in the least developed nations-is not properly treated. Additionally, this lack of sufficiency results from the failure to make the required infrastructural investments, which in turn restricts the need for coagulants such as ferric and polyferric sulfate.
Increasing infrastructure investment in water treatment
In order to comply with strict environmental regulations and enhance public health outcomes, governments across the globe are making significant investments in modernizing and expanding water treatment facilities. Notable investments in this field include the USD 86 million orders that CITIC Envirotech received to build four water treatment plants in China. Furthermore, the implementation of ferric sulfate and polyferric sulfate as necessary coagulants in municipal and industrial wastewater treatment processes is made possible by such initiatives.
Threat from alternative technologies for water treatment
The development of sophisticated water treatment technologies, such as reverse osmosis (RO) filtration and ultraviolet (UV) disinfection, poses a serious threat to the conventional application of ferric and polyferric sulfate. These technologies are attractive alternatives for industries and municipalities because they offer higher purification efficiency and can remove harmful bacteria and pathogens in addition to suspended particles. Moreover, the growing use of RO filtration systems and UV technologies may reduce the need for chemical coagulants such as ferric sulfate. Traditional coagulants may see a decline in market share as a result of this move towards more efficient technologies.
The market for ferric and polyferric sulfates has been severely impacted by the COVID-19 pandemic, causing supply chain and production disruptions. Many companies were forced to stop production as a result of labor shortages and lockdowns, which led to manufacturing operations being shut down. This resulted in a decline in output across various sectors that use these chemicals, such as agriculture, electronics, and textiles. Additionally, transportation limitations also made it more difficult for raw materials needed to produce ferric sulfate to be moved, which made the shortage of supply worse.
The Ferric Sulfate segment is expected to be the largest during the forecast period
The ferric sulfate segment has the largest share in the market for ferric and polyferric sulfates. Its widespread use as a coagulant in water treatment procedures, where it efficiently eliminates fine particles and contaminants from water, is principally responsible for its dominance. The capacity of ferric sulfate to suppress the zeta potential of colloidal systems, improving particle aggregation and sedimentation, is one of its advantages over substitutes, such as ferric chloride. Furthermore, ferric sulfate's applications in a variety of industries, such as textiles, agriculture, and pharmaceuticals, are contributing to its rising demand.
The Water Treatment Chemical segment is expected to have the highest CAGR during the forecast period
In the ferric sulfate and polyferric sulfate market, the segment for water treatment chemicals is anticipated to grow at the highest CAGR. Because ferric and polyferric sulfates are known for their superior performance in eliminating pollutants from wastewater, there is a growing need for efficient coagulants in municipal and industrial water treatment processes, which is the primary driver of this growth. Moreover, a focus for investment and innovation, the Water Treatment Chemical segment is positioned as a critical driver of market growth due to the efficacy of these chemicals in improving water quality and growing awareness of water safety.
The market for ferric and polyferric sulfates is dominated by the Asia-Pacific region. This dominance is mostly due to the fast industrialization and urbanization of nations like China and India, where there is a high demand for efficient water treatment systems. Ferric sulfate is used extensively as a coagulant for wastewater treatment, largely due to the region's thriving manufacturing sectors, especially in the production of paper and textiles.
The market for ferric and polyferric sulfates is anticipated to grow at the highest CAGR in the North America region over the course of the forecast period due to the growing need for efficient water treatment solutions, particularly in the United States and Canada. The Environmental Protection Agency (EPA) enforces strict water quality regulations that require wastewater to be treated before being released, which is largely responsible for this growth. Furthermore, the market's growth in this area is also supported by the ongoing modernization of aging infrastructure and growing public awareness of access to clean water.
Key players in the market
Some of the key players in Ferric Sulfate and Polyferric Sulfate market include Thermo Fisher Scientific Inc., Airedale Chemical, Hunan Yide Chemical Co., Ltd., Lubon Industry Co., Ltd., BAUMINAS Group, Cosmo Chemical Co. Ltd, Pencco, Inc., Chemtrade Logistics Inc., Altivia Chemicals, LLC, Chemifloc Limited, Kemira Oyj and Clinty Chemicals.
In July 2024, Kemira has entered into a definitive agreement to acquire Norit's UK reactivation business from Purton Carbons Limited. This strategic move marks Kemira's inaugural foray into the activated carbon market, specifically targeting the removal of micropollutants.
In April 2024, Thermo Fisher Scientific Inc. entered into a definitive agreement to acquire CorEvitas, a provider of regulatory-grade, real-world evidence for approved medical treatments and therapies, from Audax Private Equity, for $912.5 million in cash. CorEvitas will become part of Thermo Fisher's Laboratory Products and Biopharma Services segment. The transaction is expected to be completed by the end of 2023.
In October 2023, Cosmo Energy Holdings Co., Ltd. and Toshiba Energy Systems & Solutions Corporation concluded a basic agreement concerning a joint study toward the realization of carbon capture and utilization (CCU) that converts CO2 into a valuable resource by utilizing CO2 electrolysis. In this joint study, Toshiba ESS will provide a CO2 electrolysis technology that electrolyzes CO2 to produce carbon monoxide (CO) at a high conversion rate.