Triformaldehyde Recent Market Intelligence, Analysis, and Forecast
I. Market Intelligence
1. Price Information
- Shandong Qiangsen Chemical Co., Ltd. Quotation: As of May 26, 2026, Shandong Qiangsen Chemical Co., Ltd. quoted RMB 18,000 per metric ton (tax-inclusive) for triformaldehyde, delivered to Zibo City, Shandong Province. The product purity is 99.9%, packaged in bags, with the quotation valid for seven days. The company sells over 5,000 metric tons of triformaldehyde annually and ranks among China’s leading suppliers.
- Market Average Price Fluctuation: The market average price stood at RMB 17,500 per metric ton on April 2, 2026—up RMB 500 per metric ton from the prior period. Recently, Shandong Qiangsen’s quotation has remained stable at RMB 18,000 per metric ton, showing no significant volatility.
2. Supply-Demand Dynamics
- Supply Side: Domestic triformaldehyde production capacity is concentrated among a few enterprises—including Zhonglan Chen Guang and Yuntianhua. High-end products (purity ≥99.9%) have historically relied on imports; however, domestic manufacturers are progressively overcoming this technological dependence. Enterprises such as Shandong Qiangsen Chemical achieve economies of scale, with annual production capacity reaching 50,000 metric tons, adequately meeting market demand.
- Demand Side: Triformaldehyde is primarily used in the production of polyoxymethylene (POM), chemical intermediates, and daily chemical industries. In 2026, POM demand surged significantly, driven by lightweighting and precision trends in new-energy vehicles and electronic/electrical sectors. Demand for high-end POM grades increased year-on-year by over 25%, indirectly boosting triformaldehyde demand.
3. Raw Material Costs
- Formaldehyde Price Trend: From April to May 2026, formaldehyde prices rose continuously, peaking at RMB 1,386.25 per metric ton on April 27—a 60-day increase of 34.91%. By May 22, the price had eased slightly to RMB 1,340 per metric ton; nevertheless, it remained over 20% higher than the beginning-of-year level. As the primary raw material for triformaldehyde, rising formaldehyde costs provide strong support for triformaldehyde pricing.
4. Industry Policies and Competition
- Anti-Dumping Measures: In May 2025, China’s Ministry of Commerce imposed anti-dumping duties on imported copolymer polyoxymethylene for a five-year term, accelerating the import substitution of domestic POM and thereby benefiting domestic triformaldehyde producers.
- Competitive Landscape: The domestic triformaldehyde market exhibits relatively high concentration. Leading enterprises consolidate their advantages through technological upgrading and scale expansion, while small- and medium-sized enterprises face increasing pressure from environmental regulations and technical barriers—rendering them vulnerable to market exit.
II. Analysis and Assessment
1. Price Support Factors
- Raw Material Cost Pass-Through: Sustained high formaldehyde prices, coupled with rising energy and environmental compliance costs, exert upward pressure on triformaldehyde production costs—limiting downward price flexibility.
- Demand-Side Pull: Robust growth in POM demand—especially for premium-grade POM requiring high-purity triformaldehyde—tightens overall market supply-demand balance.
- Policy Benefits: Implementation of anti-dumping measures enhances competitiveness of domestic POM, stimulating upstream triformaldehyde demand—creating dual impetus from both policy and market forces.
2. Price Constraint Factors
- Overcapacity Risk: Planned domestic POM capacity totals 1.51 million metric tons per year—far exceeding 2025’s actual demand of 950,000 metric tons per year. Such overcapacity may cascade upstream to the triformaldehyde sector, triggering intensified price competition.
- Technological Substitution Potential: If domestic enterprises successfully commercialize advanced triformaldehyde production technologies (e.g., catalytic distillation), reducing reliance on imports, supply constraints could ease—curbing further price increases.
III. Future Outlook
1. Short Term (1–3 Months)
- Price Trend: Triformaldehyde prices are expected to remain range-bound at elevated levels. Supported by formaldehyde cost pressures and sustained POM demand, mainstream quotations—such as Shandong Qiangsen’s—will likely hold near RMB 18,000 per metric ton, with fluctuations not exceeding ±5%.
- Key Market Watchpoints: Monitor the ramp-up timing of major producers’ new capacities and formaldehyde price movements. Should formaldehyde prices rise further, triformaldehyde prices may follow suit.
2. Medium Term (6–12 Months)
- Supply-Demand Adjustment: As domestic high-end triformaldehyde production technologies mature (e.g., Zhonglan Chen Guang’s application of domestically developed catalysts), supply tightness is expected to ease, narrowing potential price gains.
- Policy Impact: Continued enforcement of anti-dumping measures will accelerate import substitution of domestic POM, sustaining triformaldehyde demand growth—though overcapacity risks warrant continued vigilance.
3. Long Term (1–3 Years)
- Price Trend: Triformaldehyde prices are projected to gradually revert toward rational equilibrium levels. Driven by technological progress and economies of scale, declining production costs may lead to moderate price softening—though high-purity products (≥99.9%) will retain pricing resilience.
- Industry Structure Evolution: Market concentration will further increase. Leading players will strengthen competitive advantage via integrated upstream-to-downstream operations—from methanol → formaldehyde → POM—reducing costs, while SMEs accelerate consolidation or exit, fostering a more rational and sustainable competitive environment.
1,3,5-Trioxane is used in organic chemical processes such as aldol condensation of amides and syntheses of chloromethyl esters or other plastics.
Trioxane is a most unusual chemical. It is an excellent solvent for many classes of materials. Concentrated aqueous solutions of trioxane have solvent properties which are not possessed by trioxane itself. Molten trioxane dissolves numerous organic compounds, such as naphthalene, urea, camphor, dichlorobenzene, etc. It is stable in alkaline or neutral solutions, yet it is depolymerized to formaldehyde by small amounts of strong acid or acid-forming materials, and the rate of depolymerization can be readily controlled.
This chemical is included in Fine Chemicals. See more about what is 1,3,5-Trioxane and 1,3,5-Trioxane SDS information.
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