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市场调查报告书
商品编码
1351037
2030 年生物丙烯酸市场预测:按类型、用途和地区分類的全球分析Bio-Acrylic Acid Market Forecasts to 2030 - Global Analysis By Type (2-Ethylhexy Acrylate, Butyl Acrylate, Methyl Acrylate, Ethyl Acrylate, Super Absorbent Polymer, Elastomers and Other Types), Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球生物丙烯酸市场规模为 71 亿美元,预计到 2030 年将达到 128 亿美元,预测期内年复合成长率为 8.7%。
生物丙烯酸具有紫外线、吸收剂、填料、有机溶剂、黏剂等多种性能,因此被广泛应用于外墙涂料中,并越来越多地被应用于油漆和涂料的生产中。丙烯酸的主要用途是生产丙烯酸酯和树脂,这些酯和树脂主要用于油漆和黏剂。此外,它还用于水处理化学品、清洁剂中间体、油处理化学品和吸水性聚丙烯酸聚合物。
根据经济产业省统计,2021年日本合成树脂涂料的产量约为101万吨,这是一个庞大的数量。整体而言,涂料产量从2020年的150万吨增加到2021年的近153万吨。
由于最终用途和新用途的需求,丙烯酸酯和高吸水性聚合物的市场正在迅速扩大。超吸收性聚合物是即使在压力下也能承受体液(包括尿液和盐)重量的塑胶。它作为颗粒状白色粉末用于农业覆盖物和新生儿尿布。策略扩张主要是由最终用途和新兴用途需求的增加所推动的。
对生物基丙烯酸生产中使用的有害毒物和化学品的担忧预计将阻碍市场的收入成长。儘管这种化学物质是由可再生资源製成的,但在其生产过程中使用了有毒化合物和毒物。此外,直接接触化学物质时使用防护装备可能会导致眼睛、鼻子和肺部发炎和烧伤。这些要素可能会减缓市场收入的成长。
由于对确保生物相容性并限制特异性吸收的聚合物涂层的需求不断增加,这种化学物质的使用越来越频繁。生物基丙烯酸涂料由于其高密度的羧基而经常用于生物医学用途。细胞质培养基是此类化合物在生物医学工业的另一个用途。因此,生物丙烯酸在化学和生物医药行业的使用预计将增加,推动全球收入成长。
生产生物丙烯酸是一项相对较新的技术,需要大量的研究和开发。这项研发成本可能会增加生物丙烯酸的生产价格。生物丙烯酸生产的原料可能比传统丙烯酸生产所需的石化产品更昂贵。由于生物丙烯酸生产的产率仍然较低,因此生产与常规丙烯酸相同量的生物丙烯酸需要更多的原料。
COVID-19 大流行为建设产业带来了物流挑战和原材料衍生品类型的短缺。由于金融市场大幅下滑,全球建筑投资预计将下降。因此,对丙烯酸的需求正在减少。为对抗病毒影响而实施的政府法规可能会导致原材料、人员和资源短缺以及供应链中断,从而使我们难以履行合约义务。
由于弹性体在丙烯酸油漆和涂料中的使用不断增加,预计弹性体细分市场在预测期内将成为最大的细分市场。弹性体通常与丙烯酸一起使用,以赋予其弹性并改善质感。由于其高热稳定性和耐油性,它也被用于许多工业用途。预计这些将推动该领域的扩张。
预计卫生用品领域在预测期内年复合成长率最高。由于对卫生棉、月经杯、卫生棉条和阴道护理产品等女性卫生产品的需求不断增加,生物丙烯酸的使用越来越频繁。生物丙烯酸经常用于婴幼儿和成人尿布,因为它具有高吸水性,并且能够舒缓因潮湿引起的皮肤瘙痒。预计这些因素将推动该部门的收入发展。
由于洗涤清洁剂和液体清洗剂中生物丙烯酸的需求不断增长,预计北美在预测期内将占据最大的市场份额。此外,人们对使用可再生和生物基产品的环境效益的了解不断增加,以及对以环境永续方式使用此类产品的必要性的认识不断提高,也正在推动市场收入,这是预计有助于成长的要素之一。
预计亚太地区在预测期内将维持最高的年复合成长率。随着工业活动的扩大,对生物丙烯酸的需求也不断扩大。由于国家经济活动的变化,油漆和涂料、介面活性剂、黏剂和密封剂以及其他用途中对生物丙烯酸的需求不断增长。随着新设施的建成和现有工厂产能的扩大,预计这一趋势未来将持续下去。
According to Stratistics MRC, the Global Bio-Acrylic Acid Market is accounted for $7.1 billion in 2023 and is expected to reach $12.8 billion by 2030 growing at a CAGR of 8.7% during the forecast period. Bio-acrylic acid is widely used in external wall paints due to its many features such as UV, absorbent, filler, organic solvent, and adhesives, which has increased its adoption for making paints and coatings. The manufacturing of acrylic esters and resins, which are largely utilized in coatings and adhesives, is the main usage of acrylic acid. Additionally, it is utilized in water treatment chemicals, detergent intermediates, oil treatment chemicals, and polyacrylic acid polymers that absorb water.
According to the Ministry of Economy, Trade, and Industry (Japan), the production volume of synthetic resin paints in Japan amounted to approximately 1.01 million metric tons in 2021, making up an enormous production volume of paints. Overall, paints' production volume increased to nearly 1.53 million metric tons in 2021, compared to 1.50 million metric tons in 2020.
The demand from both established and new end-use applications is driving a rapid expansion of the market for acrylates and superabsorbent polymers. Superabsorbent polymers are plastics that can hold up the weight of urine and other salty bodily fluids even under pressure. They are utilized in agricultural mulching and newborn diapers as a grainy, white powder. The main reasons behind strategic expansions include rising demand from end-use applications and emerging applications.
It is anticipated that worries about dangerous toxins and chemicals utilized in the manufacture of bio-based acrylic will impede market revenue growth. Although this chemical is made from renewable resources, some toxic compounds and poisons are still employed in its manufacturing. In addition, it causes irritation of the eyes, nose, lungs, and burns when protective equipment is used while coming into direct contact with chemicals. These are a few things that could slow the increase in market revenue.
This chemical is being used more frequently as a result of rising demand for polymer coatings that ensure biocompatibility and limit non-specific absorption. Because they contain high and dense carboxylic groups, bio-based acrylic coatings are frequently used in biomedical applications. Cell cultured substrates are another use for such compounds in the biomedical industry. This is projected to increase the use of bio-acrylic acid in the chemical and biomedical industries and boost global revenue growth.
As a relatively new technique, bio-acrylic acid production needs a lot of research and development. The cost of this research and development may increase the price of producing bio-acrylic acid. Feedstocks for bio-acrylic acid production may be more expensive than the petrochemicals needed to make conventional acrylic acid. Due to the still-relatively low yield of bio-acrylic acid manufacturing, more raw materials are needed to create the same amount of bio-acrylic acid as conventional acrylic acid.
The COVID-19 pandemic has caused logistical challenges and a lack of raw derivative type for the construction industry. Global construction investments are predicted to have decreased as a result of the sharp decline in financial markets. As a result, there is less demand for acrylic acid. Governmental restrictions put in place to battle the virus's effects may lead to a shortage of raw materials, people, and resources, as well as interrupted supply chains, which will make it harder to fulfill contractual obligations.
The elastomers segment is expected to be the largest during the forecast period, owing to the rising usage of elastomers in acrylic paints and coatings. These are frequently employed in acrylic acid to give stretchability and enhance the texture of items, which is driving up demand for it. They are also employed in numerous industrial applications due to their strong thermal stability and oil resistance. These are a few things that are predicted to fuel the segment's expansion.
The sanitary products segment is expected to have the highest CAGR during the forecast period. Bio-acrylic is being used more frequently as a result of rising demand for feminine hygiene products such sanitary pads, menstrual cups, tampons, and vaginal wellness items. Due to their very absorbent qualities and ability to heal itchy skin brought on by moisture, these acids are also frequently employed in infant and adult diapers. It is anticipated that these elements would fuel segment revenue development.
North America is projected to hold the largest market share during the forecast period, owing to the rising demand for bio-acrylic acid in detergents powders and liquid cleaning agents. Additional factors that are anticipated to contribute to market revenue growth include growing knowledge of the environmental advantages of using renewable and bio-based products as well as rising awareness of the need to use such products in a way that is sustainable for the environment.
Asia Pacific is projected to hold the highest CAGR over the forecast period. The need for bio-acrylic acid has expanded as a result of expanding industrial operations. Growing demand for bio-acrylic acid in paints and coatings, surfactants, adhesives and sealants, and other uses is a result of changes in the nation's economic activity. With the construction of new facilities and the expansion of capacity at existing plants, this trend is anticipated to last into the future.
Some of the key players in Bio-Acrylic Acid market include: China Petroleum & Chemical Corporation, The Lubrizol Corporation, Arkema S.A., Mitsubishi Chemical Holdings Corporation, The Dow Chemical Company, PTTGC Innovation America Corporation, Evonik Industries AG, Formosa Plastics Corporation, SIBUR International GmbH, Saudi Acrylic Monomer Company Limited, Archer-Daniels-Midland Company, Polysciences, Inc., Cargill, Incorporated, Nippon Shokubai co., Ltd, Sasol Limited and The Lubrizol Corporation.
In April 2023, Sasol Chemicals, a business unit of Sasol Ltd. and Mission Possible Partnership (MPP) announced a collaboration to evaluate potential projects for Sasol's sustainability hub at its Lake Charles, La. location.
In May 2023, Dow and New Energy Blue announced a long-term supply agreement in North America in which New Energy Blue will create bio-based ethylene from renewable agricultural residues. Dow expects to purchase this bio-based ethylene, reducing carbon emissions from plastic production, and using it in recyclable applications across transportation, footwear, and packaging.
In January 2023, Holiferm Limited and Sasol Chemicals announced collaboration to produce and market rhamnolipids and mannosylerythritol lipids (MELs). This collaboration expands the partnership announced in March 2022 between the two companies to develop and commercialise another biosurfactant product, sophorolipids.