In Q1 2025, US Polyalphaolefin Prices increased by 1.91%, rising to $2,511/MT, signalling a modest recovery after the price decline in the previous quarters. The slight uptick in price reflects a small market rebound driven by a potential rise in demand. Belgian PAO Prices decreased by 1.58%, dropping to $2,365/MT, indicating a slight correction following the steady price increases in the previous quarter. The market showed signs of stabilizing with minimal changes in demand.
In Q4 2024, US Polyalphaolefin Prices saw a decrease of 5.08%, falling to $2,464/MT, reflecting a continuation of the downward trend due to sluggish demand and potential oversupply concerns. The market remained under pressure as it moved into the end of the year. Belgian PAO Prices rose by 2.26%, reaching $2,403/MT, driven by continued stability in demand and market recovery, coupled with tighter supply conditions towards the end of the year.
In Q3 2024, US PAO prices decreased by 3.28%, reaching $2,596/MT. The decrease was driven by continued weaker demand and ongoing softness in the market, as customers hesitated in making large purchases. Belgian PAO Prices increased by 1.03%, reaching $2,350/MT, as market conditions remained stable with moderate demand.
In Q2 2024, US Polyalphaolefin Prices slightly fell by 0.45%, reaching $2,684/MT, reflecting minimal changes in market conditions as demand remained relatively stable, and production levels continued adjusting to lower consumption rates. Belgian PAO Prices rose by 5.87%, reaching $2,326/MT, reflecting a recovery in demand and market conditions. This increase was driven by stronger purchasing activity and a rebound from the low levels seen in Q1 2024.
In Q1 2024, US Polyalphaolefin Prices decreased by 16.06%, dropping to $2,696/MT. This sharp decline was driven by reduced demand and a softer market, following a higher price trend in Q4 2023. Belgian PAO Prices decreased by 13.13%, falling to $2,197/MT, driven by weaker demand and market uncertainty. The sharp drop in prices followed the higher prices observed in Q4 2023.
Q1 2025: Prices rose by 1.99%, reaching $2,615/MT, signaling a modest recovery following the sharp decline in the previous quarter. The slight uptick indicates that market demand is beginning to stabilize after the correction, with some signs of resilience in the market moving into the new year.
Q4 2024: Prices fell by 4.72%, dropping to $2,564/MT, as market conditions remained soft. The decline was likely due to continued weakened demand and potential oversupply in the market during the year-end period. The decrease also reflects the broader trend of softer economic conditions affecting market sentiment.
Q3 2024: Prices decreased by 2.61%, reaching $2,691/MT, as demand remained subdued. While there was some attempt at market recovery, the pace was slow, and the market showed signs of hesitancy, with less aggressive purchasing behavior from buyers compared to earlier periods.
Q2 2024: Prices increased by 0.40%, rising to $2,763/MT, signaling a slight improvement in market conditions. This modest increase suggests that demand was beginning to stabilize, but there was still a lack of strong upward momentum. The market showed some signs of recovery, but it remained cautious with limited volume increases.
Q1 2024: Prices dropped by 15.35%, falling to $2,752/MT, after the sharp surge in Q4 2023. This significant price correction reflected a natural market adjustment after an unsustainable spike. Weaker demand in early 2024 and softer overall market conditions contributed to the price decline, as buyers adopted a more cautious approach.
Molecular Weight[g/mol]
CAS No
HS Code
Molecular Formula
Polyalphaolefin (PAO) is a high-performance synthetic lubricant base oil known for its excellent thermal stability, low volatility, and superior oxidative resistance. Ideal for automotive, industrial, and marine applications, PAO offers enhanced wear protection, reduced friction, and improved fuel efficiency. Its high viscosity index ensures consistent performance across a wide range of temperatures. PAO is compatible with a variety of additives, making it versatile for creating premium lubricants and greases. Trusted by industries worldwide, Polyalphaolefin helps extend equipment life and optimize operational efficiency.
Packaging Type
Grades Covered
Incoterms Used
Synonym
PriceWatch Quotation Terms:
Ex-Location: This incoterm refers to a shipping agreement where the seller makes the goods available at their premises, and the buyer is responsible for all transportation costs, including shipping, insurance, and any other fees.
CIF: CIF refers to the Cost, Insurance, and Freight (CIF) terms for goods. Under CIF terms, the seller is responsible for the cost of goods, insurance, and freight charges until the goods reach the port of destination.
FD: FD stands for Free Delivered where the seller takes full responsibility for delivering goods to the location/port. This ensures the buyer receives the goods at the designated port with all necessary costs, except import duties, covered.
FOB: FOB refers to the Free On-Board shipping term, where the seller is responsible for the cost and risk of delivering the goods to the port. Once the goods are on board the vessel, the responsibility shifts to the buyer for all costs, including shipping and insurance.
Property Table:
Property | Values | Unit |
Appearance | Clear and Bright | |
Color | 0 | |
Viscosity @ 100℃ | 7.8 | cSt |
Specific Gravity@15.6℃ | 0.8326 | |
Total Acid Number | <0.03 | Mg KOH/g |
Property | Values | Unit |
Appearance | Clear and Bright | |
Color | 0 | |
Viscosity @ 100℃ | 5.86 | cSt |
Specific Gravity@15.6℃ | 0.8280 | |
Total Acid Number | <0.03 | Mg KOH/g |
Applications
Polyalphaolefin (PAO) is a versatile compound with a wide range of applications across various industries. It serves as a key raw material in the production of polyurethanes, which are essential for manufacturing insulation materials, flexible foams, and automotive components. Its unique properties make PAO invaluable in personal care products, including cosmetics and skin care formulations, where it enhances texture and performance. In the construction industry, PAO is incorporated into adhesives, sealants, and coatings, improving flexibility and durability. Its use in construction materials enhances product longevity, making them more resilient to environmental factors. The automotive sector leverages PAO in lightweight composite materials, contributing to improved fuel efficiency and reduced emissions, thereby supporting the industry’s sustainability goals. PAO plays a crucial role in the production of surfactants for water treatment processes, aiding in the formulation of effective flocculants that remove impurities. The textile industry benefits from PAO in finishes that enhance fabric performance and appearance. With the growing demand for sustainable products, PAO is increasingly utilized in developing bio-based materials and environmentally friendly alternatives, underscoring its importance in both industrial and consumer markets.
These events underscore the Polyalphaolefin market’s vulnerability to global disruptions and highlight the need for continuous monitoring of supply-demand dynamics.
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PriceWatch is your trusted resource for tracking global polyalphaolefin price trends. Our platform delivers real-time data and expert analysis, offering deep insights into the key factors driving price fluctuations in the polyalphaolefin market. By monitoring critical events such as geopolitical tensions, supply chain disruptions, and economic shifts, PriceWatch keeps you fully informed of market dynamics.
In addition, PriceWatch provides detailed forecasts and updates on production capacities, enabling you to anticipate market changes and make well-informed decisions. With PriceWatch, you gain a competitive edge in understanding all the elements that influence polyalphaolefin prices worldwide. Stay ahead of the curve with PriceWatch’s reliable, accurate, and timely polyalphaolefin market data.
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This research methodology ensures that PriceWatch delivers the most accurate, timely, and actionable Polyalphaolefin pricing assessments, helping our clients stay ahead of market trends and make informed business decisions.
Molecular Weight[g/mol]
CAS No
HS Code
Molecular Formula
Polyalphaolefin (PAO) is a high-performance synthetic lubricant base oil known for its excellent thermal stability, low volatility, and superior oxidative resistance. Ideal for automotive, industrial, and marine applications, PAO offers enhanced wear protection, reduced friction, and improved fuel efficiency. Its high viscosity index ensures consistent performance across a wide range of temperatures. PAO is compatible with a variety of additives, making it versatile for creating premium lubricants and greases. Trusted by industries worldwide, Polyalphaolefin helps extend equipment life and optimize operational efficiency.
Packaging Type
Grades Covered
Incoterms Used
Synonym
PriceWatch Quotation Terms:
Ex-Location: This incoterm refers to a shipping agreement where the seller makes the goods available at their premises, and the buyer is responsible for all transportation costs, including shipping, insurance, and any other fees.
CIF: CIF refers to the Cost, Insurance, and Freight (CIF) terms for goods. Under CIF terms, the seller is responsible for the cost of goods, insurance, and freight charges until the goods reach the port of destination.
FD: FD stands for Free Delivered where the seller takes full responsibility for delivering goods to the location/port. This ensures the buyer receives the goods at the designated port with all necessary costs, except import duties, covered.
FOB: FOB refers to the Free On-Board shipping term, where the seller is responsible for the cost and risk of delivering the goods to the port. Once the goods are on board the vessel, the responsibility shifts to the buyer for all costs, including shipping and insurance.
Property Table:
Property | Values | Unit |
Appearance | Clear and Bright | |
Color | 0 | |
Viscosity @ 100℃ | 7.8 | cSt |
Specific Gravity@15.6℃ | 0.8326 | |
Total Acid Number | <0.03 | Mg KOH/g |
Property | Values | Unit |
Appearance | Clear and Bright | |
Color | 0 | |
Viscosity @ 100℃ | 5.86 | cSt |
Specific Gravity@15.6℃ | 0.8280 | |
Total Acid Number | <0.03 | Mg KOH/g |
Applications
Polyalphaolefin (PAO) is a versatile compound with a wide range of applications across various industries. It serves as a key raw material in the production of polyurethanes, which are essential for manufacturing insulation materials, flexible foams, and automotive components. Its unique properties make PAO invaluable in personal care products, including cosmetics and skin care formulations, where it enhances texture and performance. In the construction industry, PAO is incorporated into adhesives, sealants, and coatings, improving flexibility and durability. Its use in construction materials enhances product longevity, making them more resilient to environmental factors. The automotive sector leverages PAO in lightweight composite materials, contributing to improved fuel efficiency and reduced emissions, thereby supporting the industry’s sustainability goals. PAO plays a crucial role in the production of surfactants for water treatment processes, aiding in the formulation of effective flocculants that remove impurities. The textile industry benefits from PAO in finishes that enhance fabric performance and appearance. With the growing demand for sustainable products, PAO is increasingly utilized in developing bio-based materials and environmentally friendly alternatives, underscoring its importance in both industrial and consumer markets.
The pricing of Polyalphaolefins (PAOs) is influenced by several key factors, including fluctuations in crude oil prices, feedstock availability, and production costs. Additionally, market demand from sectors such as automotive lubricants and industrial applications can lead to price volatility. Understanding these factors is crucial for procurement heads to effectively manage budgets and secure competitive pricing for PAOs.
Market trends significantly influence the availability and pricing of PAOs through changes in demand, production capacity, and technological advancements. For example, increased demand for high-performance lubricants can drive up prices and affect supply. Procurement teams should continuously monitor these trends to ensure a reliable supply chain and anticipate potential disruptions that could impact sourcing strategies.
Sustainability is becoming increasingly important in the procurement of PAOs. When sourcing, procurement heads should assess suppliers based on their environmental practices, adherence to safety regulations, and the use of renewable feedstocks. Prioritizing suppliers with sustainable production methods not only aligns with corporate responsibility goals but also helps mitigate risks associated with changing regulations and consumer preferences for eco-friendly products.
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