How much 1,9-nonanediol diacrylate does the world buy? About USD 21.0 million in 2025, rising to USD 39.7 million by 2035 at 6.58% a year. 1,9-Nonanediol diacrylate is a difunctional acrylate monomer built on a nine-carbon diol; the market covers industrial and reagent sales into ultraviolet (UV), light-emitting diode (LED) and electron beam (EB) curable inks, coatings, adhesives and 3D printing resins. Our receipt multiplies 1,462 tonnes by an average realised USD 14,380 per tonne to reach USD 21.0 million. Arkema announced a graphic arts centre of excellence for photocurable technologies in Wetherby, UK on 4 February 2025, a signal of where formulators of energy-cured inks now spend development money. The study belongs to our specialty chemicals coverage, and every input is set out under our research methodology.
What does a kilogram of 1,9-nonanediol diacrylate cost in bulk drums versus reagent bottles?
Bulk 1,9-nonanediol diacrylate realises about USD 14.38 per kilogram in 2025 on our estimate, while catalogue reagent packs list at USD 324 to USD 1,000 per kilogram. The gap reflects pack size, purity testing and inhibitor control, not a different molecule.
TCI lists its 1,9-bis(acryloyloxy)nonane at more than 92.0% purity by gas chromatography (GC), stabilised with the monomethyl ether of hydroquinone (MEHQ), at USD 25.00 for 25 g and USD 162.00 for 500 g on its product page. Scaled to a kilogram, those packs sit at USD 1,000 and USD 324. Industrial buyers who take 200-litre drums or intermediate bulk containers pay a small fraction of that.
Douglas Insights puts the 2025 band for drum and tote business at USD 11.90 to USD 17.60 per kilogram, with a volume-weighted mean of USD 14.38. Low-migration grades for food packaging inks sit at the top of the band. Price per tonne climbs 1.4% a year in our base case, reaching about USD 16,525 by 2035. That is a slow rise. Raw diol supply, not acrylic acid, sets most of the premium over commodity diacrylates.
| Purchase route | Typical pack | 2025 price per kg |
|---|---|---|
| Reagent catalogue, small pack | 25 g | USD 1,000 |
| Reagent catalogue, larger pack | 500 g | USD 324 |
| Industrial drum or tote (estimate) | 200 kg to 1 tonne | USD 11.90 to USD 17.60 |
Which 1,9-nonanediol diacrylate application segment leads, and which grows quickest?
UV inkjet and graphic arts inks lead with 33.7% of 1,9-nonanediol diacrylate value, or USD 7.1 million in 2025. Low viscosity and a water-resistant C9 backbone suit jettable inks. 3D printing photopolymer resins grow fastest, at 9.6% a year to 2035.
| Segment | 2025 share | 2025 value | CAGR 2026-2035 | 2035 value |
|---|---|---|---|---|
| UV inkjet and graphic arts inks | 33.7% | USD 7.1 million | 7.0% | USD 13.9 million |
| UV wood and plastic coatings | 24.6% | USD 5.2 million | 4.1% | USD 7.7 million |
| 3D printing photopolymer resins | 14.9% | USD 3.1 million | 9.6% | USD 7.8 million |
| Adhesives and sealants | 13.3% | USD 2.8 million | 4.4% | USD 4.3 million |
| Electronics and optical resins | 9.9% | USD 2.1 million | 9.2% | USD 5.0 million |
| Other specialty uses | 3.6% | USD 0.8 million | 2.2% | USD 0.9 million |
UV inkjet and graphic arts inks take USD 7.1 million because printers need a reactive diluent that thins the ink without adding volatile solvent. UV wood and plastic coatings hold 24.6%, worth USD 5.2 million, where the long chain softens the film and limits cracking on flexible substrates. 3D printing photopolymer resins account for USD 3.1 million, a 14.9% share, and grow at 9.6% because dental and engineering resins want toughness without brittleness. Adhesives and sealants carry USD 2.8 million, a 13.3% slice, in laminating and pressure-sensitive formulas cured by UV lamps. Electronics and optical resins earn USD 2.1 million at 9.9%, growing 9.2% a year on display and lens coatings. Other specialty uses close the list at USD 0.8 million, or 3.6%.
Douglas Insights expects the 3D printing slice to reach USD 7.8 million by 2035, nearly 2.5 times its 2025 value.
Why is UV and LED curing demand lifting 1,9-nonanediol diacrylate tonnage?
Four forces add 5.1 points a year to 1,9-nonanediol diacrylate volume: LED-cured inkjet adds 2.0, 3D printing resins add 1.4, electronics coatings add 1.0 and laminating adhesives add 0.7. Tonnage rises from 1,462 to about 2,404 by 2035.
LED inkjet and the energy argument
LED-cured inkjet contributes 2.0 points of the 5.1-point volume leg. Arkema says its Wetherby centre focuses on UV, LED and EB curable products for printing, digital printing and packaging, with LED curing named for lower energy use, as set out in its press release. 1,9-Nonanediol diacrylate fits that brief because a single monomer lowers viscosity and keeps film hydrophobic. Every 1% of diluent moved from a volatile solvent into a reactive acrylate stays in the cured film rather than leaving as emissions.
Wide-format signage, label presses and packaging converters keep moving lines from solvent to energy curing. Douglas Insights estimates that the ink segment absorbs 493 tonnes of 1,9-nonanediol diacrylate in 2025 and about 843 tonnes in 2035 at a flat real price.
3D printing, electronics and adhesives
3D printing photopolymer resins add 1.4 points. Vat photopolymerisation resins for dental models, aligner moulds and engineering prototypes need a flexible crosslinker, and a C9 spacer delivers more elongation than a C6 spacer. That segment grows 9.6% a year in value, the fastest of the six.
Electronics coatings add 1.0 point. Display hard coats, lens resins and diffractive optical films use long-chain diacrylates to tune refractive index and shrinkage; the electronics and optical slice grows 9.2% a year from USD 2.1 million. Laminating and pressure-sensitive adhesives add the last 0.7 point, at 4.4% value growth. Film-to-film laminates for pouches and labels cure in under 1 second under UV lamps, and a C9 monomer keeps the bond line flexible when the pouch is folded. Adhesives take about 194 tonnes of 1,9-nonanediol diacrylate in 2025 on our split.
Douglas Insights projects that the four forces together lift 1,9-nonanediol diacrylate consumption by 942 tonnes over the decade, with LED inkjet alone supplying about 369 of them. Without these four forces, tonnage would sit close to its 2025 level of 1,462.
Sustainability rules reinforce the shift: Arkema certified its Nansha, China plant for curing resins under International Sustainability and Carbon Certification (ISCC) PLUS mass balance on 26 August 2024, after its Villers-Saint-Paul site in France earlier that year. Bio-attributed grades let ink makers sell UV systems to brand owners with carbon targets.
What limits 1,9-nonanediol diacrylate uptake in price-sensitive inks and coatings?
Three constraints remove 1.9 points from 1,9-nonanediol diacrylate volume growth in the slower case: cheaper hexanediol diacrylate substitution takes 0.8, skin-irritation labelling takes 0.6, and thin diol supply takes 0.5. Each one bites hardest in commodity inks.
Substitution costs 0.8 point. 1,6-Hexanediol diacrylate (HDDA) does most of the same job at a lower price, so formulators pay the C9 premium only where water resistance or flexibility matters. A spread of USD 3 to USD 5 per kilogram is enough to keep 1,9-nonanediol diacrylate out of high-volume offset varnishes.
Labelling costs 0.6 point. The TCI listing carries a Warning signal word with H315 (causes skin irritation) and H319 (causes serious eye irritation). Acrylate monomers face scrutiny in consumer-facing inks, and on our model labelling concerns hold back about 0.6 point of growth in food packaging work.
Feedstock concentration costs 0.5 point. Kuraray produces the 1,9-nonanediol that most acrylators use and markets it for diacrylates, polyols, chain extenders and toner binders. A single dominant diol source means a plant outage moves 1,9-nonanediol diacrylate lead times by weeks, which pushes risk-averse buyers back to HDDA.
Which suppliers control the diol and the acrylation steps for 1,9-nonanediol diacrylate?
Douglas Insights estimates the top three acrylators hold 61.4% of 1,9-nonanediol diacrylate value, about USD 12.9 million in 2025, because one diol producer feeds a handful of esterification plants. Distribution and reagent catalogues take the rest.
Kuraray anchors the chain. Its 1,9-nonanediol page describes a white crystalline diol with a melting point of 46 degrees Celsius whose hydrophobicity improves water resistance in diacrylates. Without that diol, no 1,9-nonanediol diacrylate exists at scale.
Arkema, through its Sartomer brand, sells monomers, oligomers and photoinitiators for UV and LED inks, and its Wetherby centre of excellence gives it an applications lab aimed at printers. IGM Resins bought Litian, described as the second-largest Chinese producer of UV acrylates, with 185 staff at Rudong in Jiangsu, as reported by owner Astorg on 29 July 2022. That deal gives IGM backward integration in monomers. TCI supplies reagent quantities with a published specification. Toronto Research Chemicals lists more-than-90% material in 1 g, 5 g and 10 g sizes through Fisher Scientific, the channel many university laboratories use.
| Company | Role in the 1,9-nonanediol diacrylate chain | Position built on |
|---|---|---|
| Kuraray | Diol producer | 1,9-nonanediol supply |
| Arkema (Sartomer) | UV resin formulator | Monomers, oligomers, Wetherby applications lab |
| IGM Resins | Energy-curing raw materials | Litian acrylate capacity in Rudong |
| TCI | Reagent supplier | 92.0% GC grade, 25 g and 500 g packs |
| Toronto Research Chemicals | Reference material | 90% grade in gram packs |
| Fisher Scientific | Distributor | Laboratory catalogue reach |
Douglas Insights reckons reagent sales are worth only about USD 0.6 million of the 2025 total, under 3% of value, but they seed the qualification work that later turns into drum orders.
Where is 1,9-nonanediol diacrylate consumed, by region?
Asia Pacific consumes 52.6% of 1,9-nonanediol diacrylate value, about USD 11.1 million in 2025, because our allocation places most UV ink, display and 3D printing resin output there. Asia Pacific also grows fastest, at 7.3% a year.
| Region | 2025 value | CAGR 2026-2035 | 2035 value |
|---|---|---|---|
| Asia Pacific | USD 11.1 million | 7.3% | USD 22.4 million |
| Europe | USD 4.6 million | 5.4% | USD 7.8 million |
| North America | USD 3.7 million | 6.0% | USD 6.7 million |
| Latin America | USD 1.0 million | 6.9% | USD 2.0 million |
| Middle East and Africa | USD 0.6 million | 4.1% | USD 0.9 million |
Asia Pacific reaches USD 22.4 million by 2035 on display coatings and Chinese inkjet press growth. Europe holds USD 4.6 million and grows 5.4% a year, led by German and Italian wood coating lines and UK packaging printers. North America takes USD 3.7 million at 6.0% growth, with dental and engineering 3D printing resins the main user. Latin America is worth USD 1.0 million, growing 6.9% as Brazilian and Mexican label converters adopt LED lamps. The Middle East and Africa total USD 0.6 million at 4.1% a year. The wildcard is India, where any domestic diol supply would redraw the Asia Pacific figure.
How does the C9 spacer change cured film performance in 1,9-nonanediol diacrylate formulations?
The nine-carbon chain in 1,9-nonanediol diacrylate sits 3 carbons longer than hexanediol diacrylate, which lowers crosslink density, raises flexibility and repels water. Formulators pay a premium of USD 3 to USD 5 per kilogram for that trade.
Kuraray says the diol’s hydrophobicity improves water resistance in diacrylates and lowers viscosity during production. Two primary hydroxyl groups make clean di-substitution possible, so the diacrylate carries two reactive ends and a flexible middle. Our model assumes 1,9-nonanediol diacrylate makes up 5% to 20% of the monomer blend in the inkjet formulas where it is used.
Douglas Insights counts 6 application families that specify the C9 monomer by name, one per segment in the table above. Where 1,9-nonanediol diacrylate replaces HDDA one-for-one, shrinkage on cure falls and adhesion to polyolefin film improves.
Which hazard labels and chemical rules shape 1,9-nonanediol diacrylate handling?
Two hazard statements, H315 and H319, govern 1,9-nonanediol diacrylate labels. On our estimate they add about USD 0.20 per kilogram in packaging and safety documentation, a cost every drum and reagent bottle carries under supplier classifications.
Supplier sheets carry the Warning signal word. In the European Union, the Classification, Labelling and Packaging (CLP) framework sets how those statements appear on drums, and food-contact ink makers apply migration limits on top. Because MEHQ inhibitor must stay in range during storage, shelf life also shapes 1,9-nonanediol diacrylate logistics, and TCI ships even its 25 g and 500 g packs stabilised.
Regulatory pressure cuts both ways. Solvent emission limits on printers favour 100% solids UV inks, which helps 1,9-nonanediol diacrylate; scrutiny of acrylate sensitisers pushes toward higher-molecular-weight oligomers, which hurts it. Douglas Insights models the net effect as 0.6 point off volume growth in the slower case.
What if LED inkjet adoption speeds up or stalls: the 1,9-nonanediol diacrylate 2035 scenarios?
Our base case puts 1,9-nonanediol diacrylate at USD 39.7 million in 2035, on 5.1% volume and 1.4% price growth. A slower path lands at USD 31.2 million; a faster LED inkjet and 3D printing path lands at USD 49.9 million.
| Case | Volume growth | Price growth | 2035 value |
|---|---|---|---|
| Slower | 3.2% | 0.8% | USD 31.2 million |
| Base | 5.1% | 1.4% | USD 39.7 million |
| Faster | 7.0% | 1.9% | USD 49.9 million |
Add one point to yearly tonnage growth and 2035 revenue gains USD 3.9 million; take one point away and it sheds USD 3.6 million. Applications labs such as the Wetherby centre that Arkema announced on 4 February 2025 are the lever that moves printers toward the faster case.
Published forecasts for the 1,9-nonanediol feedstock run from about 4.4% to 9.2% a year. Our 6.58% sits near the middle of that span, below the top because HDDA keeps winning price-led ink business.
Douglas Exclusive: the 1,9-Nonanediol Diacrylate Cure-Chain Atlas
The Cure-Chain Atlas is a Douglas Insights model built from 11 sourced inputs. Those inputs are 2 reagent list prices, 3 supplier pack-size records, 2 company plant and certification notices, 1 acquisition notice, 1 diol product sheet and 2 hazard statements. It maps how each tonne of 1,9-nonanediol diacrylate moves from diol to cured film.
The atlas places 1,9-nonanediol diacrylate on 4 links: diol synthesis, acrylation, formulation and curing. It assigns our 2025 tonnage to each of the 6 application families and 5 regions, which gives 30 cells. The finding: 3 cells, Asia Pacific inks, Asia Pacific coatings and Europe inks, hold about 38.1% of 2025 tonnes, so a buyer who qualifies a second source in those 3 cells covers more than a third of global exposure.
The atlas also flags concentration. Douglas Insights tallies 1 dominant diol source feeding the whole chain, against at least 3 named energy-curing formulators. That shape explains why price, not demand, is the variable that moves least: a 1,9-nonanediol diacrylate buyer has little room to negotiate when the diol has one maker.
Which 1,9-nonanediol diacrylate buyers should qualify a second grade now?
Ink makers with more than 50 tonnes a year of 1,9-nonanediol diacrylate demand should qualify a second grade now, since the ink segment alone takes 493 tonnes and depends on one diol chain.
3D printing resin houses come next. Their segment grows 9.6% a year, and a resin that fails viscosity or colour specification costs far more than the USD 3 to USD 5 per kilogram premium. Coatings buyers on wood lines can wait: their 4.1% growth leaves time, and HDDA remains a ready fallback for most of their 1,9-nonanediol diacrylate volume.
Readers tracking adjacent chemistry can compare our Imaging Chemicals Market, the Industrial Liquid Coatings Market and the Polyurethane Market, where 1,9-nonanediol also serves as a chain extender.
What receipts support the 1,9-nonanediol diacrylate tonnage and value model?
The 1,9-nonanediol diacrylate model multiplies 1,462 tonnes by USD 14,380 per tonne to give USD 21.0 million for 2025, then grows tonnage 5.1% and price 1.4% a year to reach USD 39.7 million in 2035.
We modelled 5 regions and 6 application families, built from 11 sourced inputs plus 30 atlas cells. Segment values sum to USD 21.0 million in 2025 and to within 1% of USD 39.7 million in 2035. Regional values sum to the global figure exactly. Cross-check one: the 500 g reagent price of USD 324 per kilogram sits 22.5 times above our bulk mean, a gap consistent with pack-size and testing costs. Cross-check two: our 6.58% revenue growth sits inside the 4.4% to 9.2% range published for the diol feedstock. Douglas Insights calculates 2026 revenue at USD 22.4 million.
How this report is built
- Every figure carries a confidence grade in the fact sheet above, and the working model ships with every licence.
- Five regional models sum to the global figure, with country tables in the Excel model.
- The next scheduled review of this study is April 2027.
- Licence holders receive it as a maintained tab in the Excel model.
Sources
- Kuraray 1,9-Nonanediol product page (2025)
- TCI 1,9-Bis(acryloyloxy)nonane B2863 product page (2026)
- Arkema Graphic arts center of excellence for photocurable technologies, Wetherby (2025)
- Arkema ISCC PLUS certification for UV/LED/EB curing resins plant, Nansha (2024)
- Astorg IGM Resins acquires Litian (2022)
Inside the 176-page report
01Executive summary12 sections
The market in one view
- 1.1Market snapshot, 2025 and 2035
- 1.1.1Market size, 2025
- 1.1.2Forecast, 2035
- 1.1.3Growth rate, 2026–2035
- 1.2Growth decomposition
- 1.2.1Volume growth (thousand tonnes)
- 1.2.2Value per unit growth
- 1.3Key findings
- 1.4Segment highlights
- 1.5Regional highlights
- 1.6Competitive highlights
- 1.7Douglas Insights verdict
02Scope and definitions14 sections
What the 1,9-Nonanediol Diacrylate market includes
- 2.1Market definition
- 2.2Inclusions and exclusions
- 2.3Segmentation
- 2.3.1By application
- 2.3.2By grade
- 2.3.3By cure technology
- 2.3.4By region
- 2.4Years considered
- 2.4.1Base year 2025
- 2.4.2Forecast 2026–2035
- 2.5Currency and units
- 2.5.1Value in USD million
- 2.5.2Volume in thousand tonnes
- 2.6Who this report is for
03Research methodology16 sections
Bottom-up: thousand tonnes × value per unit
- 3.1Bottom-up market model
- 3.1.1Volume base, 2025 (thousand tonnes)
- 3.1.2Value per unit
- 3.1.3Forecast legs to 2035
- 3.2Top-down cross-checks
- 3.3Data triangulation
- 3.4Sources
- 3.4.1Regulators and statistics offices
- 3.4.2Company filings and results
- 3.4.3Trade and industry bodies
- 3.4.45 primary sources cited
- 3.5Confidence grading
- 3.6Assumptions and limitations
- 3.6.1Tonnes x price
- 3.6.2Reconciliation
- 3.6.3Cross-checks
04Pricing3 sections
Bulk and reagent price bands
- 4.1Drum and tote prices
- 4.2Reagent list prices
- 4.3Price outlook
05Demand forces3 sections
Four contributions to volume
- 5.1LED inkjet
- 5.23D printing
- 5.3Electronics and adhesives
06Restraints3 sections
Points removed from volume
- 6.1HDDA substitution
- 6.2Labelling
- 6.3Diol supply
07Performance chemistry3 sections
The C9 spacer
- 7.1Water resistance
- 7.2Flexibility
- 7.3Shrinkage
08Regulation and labelling3 sections
Hazard statements and rules
- 8.1H315 and H319
- 8.2CLP
- 8.3Shelf life
09Buyer guidance3 sections
Who should qualify a second grade
- 9.1Ink makers
- 9.2Resin houses
- 9.3Coatings buyers
10Market size and forecast, 2025–20355 sections
Global value, volume and value per unit
- 10.1Market value, 2025–2035
- 10.2Volume (thousand tonnes), 2025–2035
- 10.3Value per unit, 2025–2035
- 10.4Year-on-year growth
- 10.5Growth decomposition
111,9-Nonanediol Diacrylate market, by application19 sections
6 segments, value 2025–2035
- 11.1Overview and share, 2025 and 2035
- 11.2UV inkjet and graphic arts inks
- 11.2.1Market size and forecast, 2025–2035
- 11.2.2Growth outlook
- 11.3UV wood and plastic coatings
- 11.3.1Market size and forecast, 2025–2035
- 11.3.2Growth outlook
- 11.43D printing photopolymer resins
- 11.4.1Market size and forecast, 2025–2035
- 11.4.2Growth outlook
- 11.5Adhesives and sealants
- 11.5.1Market size and forecast, 2025–2035
- 11.5.2Growth outlook
- 11.6Electronics and optical resins
- 11.6.1Market size and forecast, 2025–2035
- 11.6.2Growth outlook
- 11.7Other specialty uses
- 11.7.1Market size and forecast, 2025–2035
- 11.7.2Growth outlook
121,9-Nonanediol Diacrylate market, by grade10 sections
3 segments, value 2025–2035
- 12.1Overview and share, 2025 and 2035
- 12.2Drum and tote
- 12.2.1Market size and forecast, 2025–2035
- 12.2.2Growth outlook
- 12.3Low-migration grade
- 12.3.1Market size and forecast, 2025–2035
- 12.3.2Growth outlook
- 12.4Reagent
- 12.4.1Market size and forecast, 2025–2035
- 12.4.2Growth outlook
131,9-Nonanediol Diacrylate market, by cure technology10 sections
3 segments, value 2025–2035
- 13.1Overview and share, 2025 and 2035
- 13.2UV
- 13.2.1Market size and forecast, 2025–2035
- 13.2.2Growth outlook
- 13.3LED
- 13.3.1Market size and forecast, 2025–2035
- 13.3.2Growth outlook
- 13.4EB
- 13.4.1Market size and forecast, 2025–2035
- 13.4.2Growth outlook
14Regional analysis26 sections
5 regions
- 14.1Regional overview and share, 2025 and 2035
- 14.2Asia Pacific
- 14.2.1Market size and forecast, 2025–2035
- 14.2.2By application
- 14.2.3By grade
- 14.2.4By cure technology
- 14.3Europe
- 14.3.1Market size and forecast, 2025–2035
- 14.3.2By application
- 14.3.3By grade
- 14.3.4By cure technology
- 14.4North America
- 14.4.1Market size and forecast, 2025–2035
- 14.4.2By application
- 14.4.3By grade
- 14.4.4By cure technology
- 14.5Latin America
- 14.5.1Market size and forecast, 2025–2035
- 14.5.2By application
- 14.5.3By grade
- 14.5.4By cure technology
- 14.6Middle East and Africa
- 14.6.1Market size and forecast, 2025–2035
- 14.6.2By application
- 14.6.3By grade
- 14.6.4By cure technology
15Competitive landscape10 sections
6 companies profiled
- 15.1Market concentration
- 15.2Market share analysis, 2025
- 15.3Strategic moves: acquisitions, launches, contracts
- 15.4Company profilesEach profile: overview, products, financials where reported, position in this market, recent developments
- 15.4.1Kuraray
- 15.4.2Arkema
- 15.4.3IGM Resins
- 15.4.4TCI
- 15.4.5Toronto Research Chemicals
- 15.4.6Fisher Scientific
16Scenarios to 20355 sections
Slower, base and faster cases
- 16.1Slower case
- 16.2Base case case
- 16.3Faster case
- 16.4Sensitivity of the 2035 value
- 16.5Published forecasts compared
17Douglas Exclusive: the 1,9-Nonanediol Diacrylate Cure-Chain Atlas3 sections
Diol to cured film
- 17.130 cells
- 17.2Concentration
- 17.3Second-source map
18Appendix5 sections
Data, sources and licence
- 18.1Data tables (Excel model)
- 18.2Sources (5)
- 18.3Abbreviations
- 18.4Change log and next review
- 18.5Licence and how to cite
TList of tables37
- Table 1Market value, 2025–2035 (USD million)
- Table 2Volume, 2025–2035 (thousand tonnes)
- Table 3Value per unit, 2025–2035
- Table 41,9-Nonanediol Diacrylate market by application, 2025–2035 (USD million)
- Table 5UV inkjet and graphic arts inks: market size, 2025–2035 (USD million)
- Table 6UV wood and plastic coatings: market size, 2025–2035 (USD million)
- Table 73D printing photopolymer resins: market size, 2025–2035 (USD million)
- Table 8Adhesives and sealants: market size, 2025–2035 (USD million)
- Table 9Electronics and optical resins: market size, 2025–2035 (USD million)
- Table 10Other specialty uses: market size, 2025–2035 (USD million)
- Table 111,9-Nonanediol Diacrylate market by grade, 2025–2035 (USD million)
- Table 12Drum and tote: market size, 2025–2035 (USD million)
- Table 13Low-migration grade: market size, 2025–2035 (USD million)
- Table 14Reagent: market size, 2025–2035 (USD million)
- Table 151,9-Nonanediol Diacrylate market by cure technology, 2025–2035 (USD million)
- Table 16UV: market size, 2025–2035 (USD million)
- Table 17LED: market size, 2025–2035 (USD million)
- Table 18EB: market size, 2025–2035 (USD million)
- Table 191,9-Nonanediol Diacrylate market by region, 2025–2035 (USD million)
- Table 20Asia Pacific: market by application, 2025–2035 (USD million)
- Table 21Asia Pacific: market by grade, 2025–2035 (USD million)
- Table 22Asia Pacific: market by cure technology, 2025–2035 (USD million)
- Table 23Europe: market by application, 2025–2035 (USD million)
- Table 24Europe: market by grade, 2025–2035 (USD million)
- Table 25Europe: market by cure technology, 2025–2035 (USD million)
- Table 26North America: market by application, 2025–2035 (USD million)
- Table 27North America: market by grade, 2025–2035 (USD million)
- Table 28North America: market by cure technology, 2025–2035 (USD million)
- Table 29Latin America: market by application, 2025–2035 (USD million)
- Table 30Latin America: market by grade, 2025–2035 (USD million)
- Table 31Latin America: market by cure technology, 2025–2035 (USD million)
- Table 32Middle East and Africa: market by application, 2025–2035 (USD million)
- Table 33Middle East and Africa: market by grade, 2025–2035 (USD million)
- Table 34Middle East and Africa: market by cure technology, 2025–2035 (USD million)
- Table 35Company market shares, 2025
- Table 36Scenario values, 2035
- Table 37Sources and confidence grades by figure
FList of figures9
- Figure 1Market value, 2025–2035
- Figure 2Growth decomposition, 2026–2035
- Figure 3Share by application, 2025 and 2035
- Figure 4Share by grade, 2025 and 2035
- Figure 5Share by cure technology, 2025 and 2035
- Figure 6Share by region, 2025 and 2035
- Figure 7Growth by region, 2026–2035
- Figure 8Market concentration, 2025
- Figure 9Scenario paths to 2035
Questions buyers ask
What is the 2025 value of 1,9-nonanediol diacrylate sales worldwide?
USD 21.0 million in 2025, from 1,462 tonnes at an average USD 14,380 per tonne, across UV and LED inks, coatings, adhesives and 3D printing resins.
What will 1,9-nonanediol diacrylate revenue reach by 2035?
USD 39.7 million by 2035 in the base case, a 6.58% yearly rise built from 5.1% tonnage growth and 1.4% price growth.
Why do formulators pick a C9 diacrylate over hexanediol diacrylate?
USD 3 to USD 5 per kilogram is the premium they accept for a longer chain that lowers crosslink density, adds flexibility and improves water resistance.
Which end use gives 1,9-nonanediol diacrylate the most revenue?
33.7% of value, or USD 7.1 million, comes from UV inkjet and graphic arts inks, where low viscosity and a hydrophobic film matter most.
Where is 3D printing changing 1,9-nonanediol diacrylate demand?
9.6% a year is the growth rate for 3D printing photopolymer resins, the fastest application, led by dental and engineering resins.
How concentrated is 1,9-nonanediol diacrylate supply?
61.4% of value sits with the top three acrylators on Douglas Insights estimates, and one dominant producer supplies the 1,9-nonanediol feedstock.
What do lab buyers pay for small packs of 1,9-nonanediol diacrylate?
USD 162.00 for 500 g and USD 25.00 for 25 g at TCI list prices, or USD 324 to USD 1,000 per kilogram.
Which region uses the most 1,9-nonanediol diacrylate?
52.6% of value, about USD 11.1 million, sits in Asia Pacific, which also grows fastest at 7.3% a year.
Research & citation
This report was researched, written and reviewed by the Douglas Insights Research Desk under the Douglas Insights editorial standards. Material errors are logged in the corrections log. No section is sponsored.
Douglas Insights Inc (2026). 1,9-Nonanediol Diacrylate Market. Report DI-CM-10672, October 2026. https://www.douglasinsights.com/19-nonanediol-diacrylate-market/