![]() |
市場調査レポート
商品コード
1736841
ポリアクリルアミドの市場規模:タイプ別、用途別、地域別、範囲および予測Polyacrylamide Market Size By Type (Cationic, Anionic, Non-ionic), By Application (Enhanced Oil Recovery, Water Treatment, Mineral Processing, Pulp And Paper), By Geographic Scope And Forecast |
||||||
|
ポリアクリルアミドの市場規模:タイプ別、用途別、地域別、範囲および予測 |
出版日: 2025年05月07日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
|
ポリアクリルアミド市場規模は、2024年に62億6,000万米ドルと評価され、2026年から2032年にかけてCAGR 6.49%で成長し、2032年には98億8,000万米ドルに達すると予測されています。
ポリアクリルアミド(PAM)は、アクリルアミドモノマーから作られる合成ポリマーです。高い水溶性と親水性ゲルを生成する能力で知られています。ゲル電気泳動では、タンパク質や核酸をサイズや電荷によって分離する媒体として使用されます。
さらに、PAMは水処理分野で凝集剤として使用され、廃水から浮遊物を除去するのに役立っています。また、水の粘度を高めて石油の抽出を助ける石油増進回収や、保水性を高めて土壌浸食を抑制する農業にも応用されています。また、繊維分野では増粘剤として、製紙工程では保水助剤として使用されます。
ポリアクリルアミド市場を形成している主な市場力学は以下の通り:
主な市場促進要因
水処理用途での需要の増加:清潔な水へのニーズの高まりと厳しい水質基準が、ポリアクリルアミド市場を牽引しています。世界保健機関(WHO)によると、2020年現在、4人に1人が家庭で安全な飲料水を利用できていないです。世界の水問題が、水処理技術におけるポリアクリルアミドの使用を押し上げています。
石油・ガス産業の拡大:ポリアクリルアミドは、容易に利用できる石油貯留層が減少するにつれて重要性を増している石油増進回収法(EOR)で一般的に使用されています。米国エネルギー情報局(EIA)によると、2019年に米国で生産された石油の約60%はEOR技術を使用した油井によるもので、その多くにポリアクリルアミドベースの溶液が使用されています。
農業分野の成長:ポリアクリルアミドは農業において、保水性を高め浸食を最小限に抑える土壌改良剤として使用されています。国連食糧農業機関(FAO)は、2050年までに、増加する世界人口を支えるために60%以上の食糧を生産する必要があると予測しています。農業生産への欲求の高まりは、農業技術におけるポリアクリルアミドの使用を増加させると予測されています。
主な課題
高い生産コスト:ポリアクリルアミドの生産コストが高いことが、市場拡大の大きな障壁となっています。ポリアクリルアミドの合成には複雑な化学が必要であり、高価な原料を必要とするため、最終製品の価格が高くなります。このため、コストに敏感な産業での使用は制限され、生産者はより安価な代替品と競争することが難しくなります。その結果、高い製造コストが市場全体の成長を妨げ、多くの用途でポリアクリルアミドの使用が制限されます。
健康と安全への懸念:ポリアクリルアミドの取り扱いと廃棄は、健康と安全の面で障害となります。労働者は、有害で発がん性の可能性があることが知られているアクリルアミドモノマーにさらされる危険にさらされています。このため、厳しい安全基準が必要となり、生産者の操業コストが上昇します。このような健康上の懸念は、潜在的な消費者にポリアクリルアミド製品の採用を思いとどまらせるため、市場の成長と多くの産業での採用を制限しています。
主要動向:
水処理ソリューションに対する需要の増加:汚染と水不足が世界の緊急課題となっている中、凝集剤としてのポリアクリルアミドの効率は広く認知されつつあります。特にアジア太平洋と北米の政府は、厳しい環境基準を満たすために廃水処理インフラへの投資を進めています。この動向は、浄水用途におけるポリアクリルアミドの需要を今後数年間で大幅に増加させると予測されます。
持続可能なバイオベースの代替品:標準的なポリアクリルアミド製品の代替品として、持続可能でバイオベースのものが重視されるようになっています。環境問題への関心が高まるにつれ、生産者はより優れた生分解性と環境への影響の少ないバイオベースのポリアクリルアミドに注目しています。合成技術の革新は、生産コストを削減しながらポリマー性能を向上させる。この動向は世界の持続可能性目標に合致しており、農業から医薬品に至るまで、より環境に優しい解決策を求める分野から投資と関心が寄せられると予想されます。
Polyacrylamide Market size was valued at USD 6.26 Billion in 2024 and is projected to reach USD 9.88 Billion by 2032, growing at a CAGR of 6.49% from 2026 to 2032.
Polyacrylamide (PAM) is a synthetic polymer made from acrylamide monomers. It is known for its high water solubility and ability to generate hydrophilic gels. It is widely employed in a variety of industries due to its unusual features, including gel electrophoresis, which uses it as a medium to separate proteins and nucleic acids depending on size and charge.
Furthermore, PAM is used as a flocculant in the water treatment sector, helping to remove suspended solids from wastewater. It also has applications in enhanced oil recovery, where it increases the viscosity of water to aid oil extraction, and in agriculture, where it controls soil erosion by increasing water retention. It can also be used as a thickening agent in the textile sector and as a retention aid in the papermaking process.
The key market dynamics that are shaping the Polyacrylamide Market include:
Key Market Drivers:
Increasing Demand in Water Treatment Applications: The growing need for clean water, combined with severe water quality standards, is driving the Polyacrylamide Market. According to the World Health Organization (WHO), as of 2020, one in every four individuals lacks access to safe drinking water at home. The global water issue is driving up the use of polyacrylamide in water treatment technologies.
Expanding Oil and Gas Industry: Polyacrylamide is commonly employed in enhanced oil recovery (EOR) procedures, which are becoming more significant as readily available oil reservoirs diminish. According to the United States Energy Information Administration (EIA), around 60% of oil output in the United States in 2019 came from wells that used EOR techniques, many of which involved polyacrylamide-based solutions.
Growth in the Agricultural Sector: Polyacrylamide is used in agriculture as a soil conditioner to increase water retention and minimize erosion. The Food and Agriculture Organization (FAO) of the United Nations forecasts that by 2050, we will need to produce 60% more food to support a growing global population. The growing desire for agricultural production is projected to increase the use of polyacrylamide in farming techniques.
Key Challenges:
High Production Costs: The high production costs of polyacrylamide create a considerable barrier to market expansion. The complex chemistry needed in its synthesis, combined with the expensive raw ingredients required, results in higher end-product prices. This limits its use in cost-sensitive industries, making it difficult for producers to compete with less expensive alternatives. As a result, high production costs impede overall market growth and limit the usage of polyacrylamide in many applications.
Health and Safety Concerns: The handling and disposal of polyacrylamide is an obstacle in terms of health and safety. Workers are in danger from exposure to acrylamide monomers, which are known to be hazardous and potentially carcinogenic. This needs tight safety standards and raises operating costs for producers. Such health concerns dissuade potential consumers from adopting polyacrylamide products, therefore limiting market growth and adoption across numerous industries.
Key Trends:
Increased Demand for Water Treatment Solutions: The efficiency of polyacrylamide as a flocculating agent is becoming widely acknowledged as pollution and water shortage become urgent global concerns. Governments, particularly in Asia-Pacific and North America, are investing in wastewater treatment infrastructure to meet rigorous environmental standards. This trend is projected to greatly increase the demand for polyacrylamide in water purification applications in the future years.
Sustainable and Bio-based Alternatives: There is an increased emphasis on sustainable and bio-based alternatives to standard polyacrylamide products. As environmental concerns gain traction, producers are looking toward bio-based polyacrylamides that have better biodegradability and a lower environmental impact. Innovations in synthesis technologies improve polymer performance while cutting production costs. This trend is consistent with global sustainability goals and is anticipated to draw investment and interest from sectors seeking greener solutions in areas ranging from agriculture to pharmaceuticals.
Here is a more detailed regional analysis of the Polyacrylamide Market:
Asia Pacific:
The Asia Pacific region is estimated to dominate the market during the forecast period. The Asia Pacific region is witnessing rapid industrialization and urbanization, which is driving up demand for water treatment solutions containing polyacrylamide. According to the United Nations Economic and Social Commission for Asia and the Pacific (UNESCAP), Asia and the Pacific's urban population is projected to increase from 2.3 billion in 2019 to 3.5 billion by 2050. This urbanization is driving the demand for effective water treatment technologies, which is boosting the regional Polyacrylamide Market.
Furthermore, several Asia Pacific countries are major players in the oil and gas industry, and polyacrylamide is utilized in enhanced oil recovery (EOR) procedures. According to the International Energy Agency (IEA), the Asia-Pacific region accounted for 35% of world oil demand in 2020, and that number is predicted to climb to 37% by 2026. This rising demand is projected to fuel increased exploration and production efforts, including the utilization of EOR techniques that use polyacrylamide-based solutions.
North America:
North America is estimated to exhibit substantial growth within the market during the forecast period. North America is putting more emphasis on water treatment and conservation, increasing demand for polyacrylamide in water purification procedures. The United States Environmental Protection Agency (EPA) estimates that water infrastructure improvements in the United States will cost USD 743 Billion over the next 20 years. This large investment in water treatment facilities is expected to increase demand for polyacrylamide in the region.
Furthermore, the shale gas boom in North America has raised the demand for polyacrylamide in hydraulic fracturing operations. According to the Energy Information Administration (EIA), shale gas production in the United States has surged from roughly 1.0 trillion cubic feet in 2006 to nearly 26.3 trillion cubic feet in 2020, accounting for 79% of total natural gas production. The rapid increase in shale gas production is increasing the use of polyacrylamide in fracking fluids.
The Global Polyacrylamide Market is segmented on the basis of Type and Application.
Based on Type, The market is segmented into Cationic, Anionic, and Non-ionic. The anionic polyacrylamide is estimated to dominate the market during the forecast period due to its extensive use in a variety of industries, including wastewater treatment, pulp and paper manufacture, and enhanced oil recovery. Because of its efficacy in flocculation procedures, anionic polyacrylamide is a popular choice for treating municipal and industrial wastewater, resulting in widespread adoption across numerous industries and contributing to its market dominance.
Based on Application, The market is segmented into Enhanced Oil Recovery, Water Treatment, Mineral Processing, Pulp & Paper, and Others. The water treatment segment is estimated to dominate the market during the forecast period. This dominance is driven by an increasing need for effective wastewater management solutions in the face of escalating environmental concerns and severe regulatory constraints. Polyacrylamide's use as a flocculating agent in municipal and industrial wastewater treatment procedures increases its attractiveness, making it critical for improving water quality and supporting sustainable practices in a variety of industries.
The "Global Polyacrylamide Market" study report will provide valuable insight with an emphasis on the global market. The major players in the market are BASF SE, SNF Group, Ashland, Inc., Kemira Oyj, Solenis, Solvay, Anhui Jucheng Fine Chemicals Co., Ltd., Xitao Polymer Co. Ltd., China National Petroleum Corporation (CNPC), and Wuxi Tianxin Chemicals Co. Ltd.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis.