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市场调查报告书
商品编码
1308608
2030 年吸附剂市场预测:按产品类型、应用和地区划分的全球分析Adsorbents Market Forecasts to 2030 - Global Analysis By Product Type, Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球吸附剂市场规模将达到 44.6 亿美元,预测期内復合年增长率为 8.9%,到 2030 年将达到 74.5 亿美元,预计将达到美元。
吸附剂是能够从固体、液体和气体中去除特定成分,同时保留其物理性质的化合物。 它们通常用作棒、整体件、模製品等,并通过粘合工艺分层。 该吸附剂具有耐磨性强、表面容量高、热稳定性高等多种特点,使其适用于石油化工、空分干燥行业、水处理行业等众多行业。
吸附剂在石油精炼工艺、石化工业、水处理、其他气体工业、飞机军事设备、食品领域等领域的使用不断增加,正在推动整体市场的扩张。 市场领先的公司提高了其色谱吸附剂的效率,例如氧化铝色谱吸附剂、快速色谱吸附剂和硅胶柱色谱吸附剂。 这些吸附剂由于其在抗生素纯化、□纯化、糖甘分离等方面的应用而在市场上获得了发展势头。
用于製造吸附剂的基本原材料是煤、铝土矿、硅酸盐、沸石和粘土。 由于所有这些矿产资源都是天然可用的,因此过度开采或开采这些原材料不适合保护它们。 矿产资源是有限的,因此指数增长和不断增加的消耗是难以控制的。 此类矿产资源供应的减少可能对吸附剂市场构成重大威胁。
制氧机是需求量最大的氧疗设备之一,特别是对于在家中和医院接受氧疗的患者来说,这是由于COVID-19 患者数量不断增加以及印度某些邦缺乏氧气瓶。缺氧。 称为製氧机的医疗设备可浓缩外部空气中的氧气。 大气中大约78%是氮气,21%是氧气,剩下的1%是由各种气体组成。 这些空气被吸入氧气浓缩器,通过筛子过滤,剩余的氧气驱动氧气浓缩器,将氮气返回到大气中。
吸附剂具有将分子吸引到其表面的能力,但这种能力是有限的。 当吸附能力达到极限时,即使继续纯化精製,也会出现平衡,发生解吸。 吸附剂用于精炼和纯化过程中,以吸附各种污染物和杂质,包括(二氧化碳和硫化氢)、硫醇、製造化学品和水合抑製剂。 此时,当前污染物与吸附剂发生反应,导致吸附剂更新。 这些污染物取代或去除吸附剂。 吸附剂的使用寿命取决于材料的再生能力,这可能是整个吸附剂市场的限制。
COVID-19 病毒的爆发对全球吸附剂市场产生了积极影响。 这与吸附剂在药物和药物製剂中的使用不断增加有关。 此外,在製药行业的除湿过程和设备空气干燥中使用吸附剂在这场危机期间为市场扩张做出了巨大贡献。
对研发(R&D) 活动的高投资以及对能够生产超稳定分子筛的技术的需求,这些分子筛在承受数千次热再生循环的同时表现出缓慢的衰减和出色的容量保持能力。由于分子筛的上升,筛分部门占据最大的收入份额,预计将在整个预测期内主导市场。 然而,分子筛吸附剂通常是优选的,因为它们独特的结构允许排出结晶水并产生多孔晶体结构。
由于炼油厂硫保护床应用中使用的高性能吸附剂的需求不断增加,石油炼製领域在整个预测期内实现了最高的复合年增长率。 通过扩大使用吸附剂以确保下游催化剂□□的保护,可以实现废水中超低总硫浓度。 此外,它满足环境要求,并提供了一种简单且经济实惠的方法来去除液体和气流中的痕量硫化合物。
由于石油和天然气、製药和食品加工行业对高性能吸附剂的需求不断增长,预计亚太地区将在主导时期占据最大的市场份额。 该地区迅速采用高科技、低成本方法来生产高质量液体燃料也推动了吸附剂的需求。 此外,中国污水处理厂越来越多地使用吸附剂,使该国占据了最大的区域市场份额。
认识到吸附可以极大地帮助有效去除污染物,特别是工业废水中的污染物,并能够解决与水污染不利影响相关的问题,这将使亚太地区在整个预测期内实现良好的增长。预计能够实现。 使用活性炭等固体材料吸附是中国工业领域较流行且易于使用的方法之一。 然而,中国对湖泊、河流和其他水体污染的严格规定预计将导致活性炭的使用增加,从而推动预测期内的市场收入增长。
2021 年 9 月,壳牌和巴斯夫宣布合作计划,加速向零排放世界的过渡。 作为合作的一部分,两家公司探索、降低了风险并部署了巴斯夫的 Sorbead 吸附技术,用于碳捕获和储存的燃烧前和燃烧后应用。 壳牌采用 Sorbead 吸附技术对通过壳牌碳捕获技术(例如 ADIP Ultra 和 CANSOLV)捕获的二氧化碳气体进行脱水。
According to Stratistics MRC, the Global Adsorbents Market is accounted for $4.46 billion in 2023 and is expected to reach $7.45 billion by 2030 growing at a CAGR of 8.9% during the forecast period. Adsorbents are compounds that have the ability to remove particular components from solids, liquids, and gases while preserving their physical characteristics. They are typically utilized as rods, monoliths, and molding, among other things, and produce layers through the adhesion process. Adsorbents are suited for use in a number of petrochemical industries, air separation and drying industries, water treatment industries, and other industries because they have a variety of features, such as strong abrasion resistance, high surface capacity, high thermal stability, and others.
Mounting utilization of adsorbents in oil refining process, petrochemical industry, water treatment, and others such as in gas industry, aircraft military equipment, and food sector have encouraged the expansion of the entire market. Leading market companies have increased the efficiency of chromatography adsorbents such as aluminum oxide chromatography adsorbents, flash chromatography adsorbents, and silica gel column chromatography adsorbents. These adsorbents have received significant momentum in the market, owing to their application in purification of antibiotics, enzyme purification, and isolation of glycosides.
The basic raw materials that are utilized in the manufacturing of adsorbents are coal, bauxite, silicate, zeolite, and clay. All these mineral resources are naturally available, thus to protect them, the excess exploitation and mining of these raw materials are not suitable. Since there are finite mineral resources, the exponential growth and expanding consumption are unmanageable. These diminishing mineral supplies can be a major threat to the adsorbents market.
Oxygen concentrators are among the most in-demand oxygen therapy equipment, particularly among patients receiving oxygen therapy at home and in hospitals that are running low on oxygen due to the rise in COVID-19 cases and the lack of oxygen cylinders in certain Indian states. A medical gadget termed an oxygen concentrator concentrates oxygen from outside air. About 78% of the air in the atmosphere is nitrogen, 21% is oxygen, and the remaining 1% is made up of various gases. This air is drawn into the oxygen concentrator, which operates on the remaining oxygen after filtering it through a sieve and releasing the nitrogen back into the atmosphere.
Adsorbent materials have the ability to attract molecules on their surfaces, however this ability is restricted. Once the capacity is surpassed, further continuation with the refining and purifying will generate an equilibrium leading to desorption. Adsorbents are used for refining and purifying procedures, for adsorption of various pollutants and impurities such as (carbon dioxide or hydrogen sulfide), mercaptans, manufacturing chemicals, and hydrate inhibitors. At this moment, the current contaminants react with adsorbents, resulting in the renewal of the adsorbent. These pollutants either replace the adsorbent or eliminate it. The service life of adsorbents is reliant on the regeneration capability of the material, and this can be a limitation for the overall adsorbents market.
The outbreak of the COVID-19 virus has positively assisted the worldwide adsorbents market. This is related to rise in application of adsorbents in pharmaceuticals and pharmaceutical formulations. Moreover, the utilization of adsorbents for dehumidification process and instrumental air drying in pharmaceutical industry has considerably contributed toward the expansion of market during this crisis.
Due to significant investments in Research & Development (R&D) activities and growing demand for technologies that enable production of ultra-stable molecular sieves that can endure thousands of thermal regenerations while exhibiting delayed decay and excellent capacity retention, the molecular sieves segment accounted for the largest revenue share and is expected to dominate the market throughout the forecast period. However, due to their unique structure, molecular sieve adsorbents are typically favored because it enables the evacuation of crystallization water and produces a porous crystalline structure.
Owing to the increased demand for high-performance adsorbents for use in sulfur guard bed applications in petroleum refineries, the petroleum refining segment experienced the highest compound annual growth rate throughout the projected period. The provision of ultra-low total sulfur concentration in the effluent is made possible by increased application of adsorbents, assuring the protection of downstream catalysts. Additionally, it complies with environmental requirements and offers a simple, affordable approach for removing trace amounts of sulfur compounds from liquid and gas streams.
Asia Pacific region is projected to witness largest market share over the domination period, due to growing demand for high-performance adsorbents in the oil & gas, pharmaceutical, and food processing industries. Demand for adsorbents is also being driven by the fast adoption of high-tech, low-cost methods to produce high-quality liquid fuel in this region. Furthermore, owing to the expanding use of adsorbents in wastewater treatment facilities in China, this country held the largest regional share of the market.
Due to the recognition that adsorption significantly helps in the efficient removal of contaminants, particularly in industrial wastewater, and enables the resolution of issues linked to the negative effects of water pollution, the Asia Pacific region is poised to have lucrative growth throughout the extrapolated period. Adsorption using solid materials, such as activated carbon, is one of the accessible methods that is gaining popularity in China's industrial sector. However, china's severe regulations on lake, river, and other water body contamination are projected to lead to an increase in the use of active carbons, which will boost market revenue growth over the course of the projection period.
Some of the key players in Adsorbents market include Adsorbents Carbons, AGC Group, Arkema Group, Ashapura Group, Axens S.A, BASF SE, Bee Chems, Cabot Corporation , Clariant AG, Global Absorbents Pvt. Ltd., Honeywell International Inc, Raj Carbon, Siddhartha Industries, Sorbead India, Sunneta Carbons, Universal Carbons, W. R. Grace & Co.-Conn., Zeochem AG, Zeolyst International and Zeotec Adsorbents Private Limited.
In September 2021, Shell and BASF announced plans to collaborate to accelerate the transition to a zero-emissions world. The two companies investigated, de-risked, and deployed BASF's Sorbead Adsorption Technology for pre- and post-combustion applications in Carbon Capture & Storage as part of their collaboration. Shell employs Sorbead Adsorption Technology to dehydrate CO2 gas captured by one of Shell's carbon capture technologies, such as ADIP Ultra or CANSOLV.